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ENvue Medical, Inc.Health Care · Orthopedic, Prosthetic & Surgical Appliances & Supplies · CIK 1326706 · FY ends Dec 31
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FEED · 10-K · period ended 2020-12-31

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filed 2021-04-15 · EDGAR original ↗

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10-K

1

form10-k.htm

UNITED

STATES

SECURITIES

AND EXCHANGE COMMISSION

Washington,

D.C. 20549

FORM

10-K

[X]

ANNUAL REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the fiscal year ended December 31, 2020

OR

[ ]

TRANSITION REPORT PURSUANT TO SECTION 13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the transition period from to

Commission

File Number: 001-36445

NanoVibronix,

Inc.

(Exact

name of registrant as specified in its charter)

525 Executive Blvd. Elmsford, New York 10523

(Address of principal executive office) (Zip Code)

Registrant’s

telephone number, including area code: (914) 233-3004

Securities

registered pursuant to Section 12(b) of the Act:

Title of each class Trading Symbol Name of each exchange on which registered

Common stock, par value $0.001 per share NOAV NASDAQ Capital Market

Securities

registered pursuant to Section 12(g) of the Act: None

Indicate

by check mark if the registrant is a well-known seasoned issuer, as defined in Rule 405 of the Securities Act. Yes [ ] No

[X]

Indicate

by check mark if the registrant is not required to file reports pursuant to Section 13 or Section 15(d) of the Act. Yes [ ]

No [X]

Indicate

by check mark whether the registrant (1) has filed all reports required to be filed by Section 13 or 15(d) of the Securities Exchange

Act of 1934 during the preceding 12 months (or for such shorter period that the registrant was required to file such reports) and (2)

has been subject to such filing requirements for the past 90 days. Yes [X] No [ ]

Indicate

by check mark whether the registrant has submitted electronically every Interactive Data File required to be submitted pursuant to Rule

405 of Regulation S-T (§ 232.405 of this chapter) during the preceding 12 months (or for such shorter period that the registrant

was required to submit such files). Yes [X] No [ ]

Indicate

by check mark whether the registrant is a large accelerated filer, an accelerated filer, a non-accelerated filer, a smaller reporting

company or an emerging growth company. See the definitions of “large accelerated filer,” “accelerated filer,”

“smaller reporting company,” and “emerging growth company” in Rule 12b-2 of the Exchange Act.

Large accelerated filer [ ] Accelerated filer [ ]

Non-accelerated filer [X] Smaller reporting company [X]

Emerging growth company [ ]

If

an emerging growth company, indicate by check mark if the registrant has elected not to use the extended transition period for complying

with any new or revised financial accounting standards provided pursuant to Section 13(a) of the Exchange Act. [ ]

Indicate

by check mark whether the registrant has filed a report on and attestation to its management’s assessment of the effectiveness

of its internal control over financial reporting under Section 404(b) of the Sarbanes-Oxley Act (15 U.S.C 7262(b)) by the registered

public accounting firm that prepared or issued its audit report. [ ]

Indicate

by check mark whether the registrant is a shell company (as defined in Rule 12b-2 of the Exchange Act). Yes [ ] No [X]

The

aggregate market value of our common stock held by non-affiliates as of June 30, 2020, was approximately $9,447,579.

The

number of shares outstanding of the registrant’s Common Stock as of March 23, 2021 was 24,109,635 shares.

DOCUMENTS

INCORPORATED BY REFERENCE

The

information required by Part III of this Form 10-K, to the extent not set forth herein, is incorporated by reference from the registrant’s

definitive proxy statement for its 2021 Annual Meeting of Stockholders. Such proxy statement shall be filed with the Securities and Exchange

Commission within 120 days after the end of the fiscal year to which this report relates.

PART

I

ITEM

1. BUSINESS

Cautionary

Note Regarding Forward-Looking Statements; Risk Factor Summary

This Annual Report on

Form 10-K contains “forward-looking statements,” which include information relating to future events, future financial

performance, financial projections, strategies, expectations, competitive environment and regulation. Words such as “may,”

“should,” “could,” “would,” “predicts,” “potential,” “continue,”

“expects,” “anticipates,” “future,” “intends,” “plans,” “believes,”

“estimates,” and similar expressions, as well as statements in future tense, identify forward-looking statements.

Forward-looking statements should not be read as a guarantee of future performance or results and may not be accurate indications

of when such performance or results will be achieved. Forward-looking statements are based on information we have when those statements

are made or management’s good faith belief as of that time with respect to future events, and are subject to a number

of risks, and uncertainties and assumptions that could cause actual performance or results to differ materially from

those expressed in or suggested by the forward-looking statements. These risk are more fully described in the “Risk Factors”

section of this Annual Report on Form 10-K. The following is a summary of such risks:

● Our history of losses and expectation of continued losses.

● Market acceptance of existing and new products.

● Risks of product liability claims and the availability of insurance.

● Our ability to successfully develop and commercialize our products.

● Our ability to generate internal growth.

● Risks related to computer system failures and cyber-attacks.

● Our ability to obtain regulatory approval in foreign jurisdictions.

● The price of our securities is volatile with limited trading volume

● The adoption of health policy changes and health care reform.

● Lack of financial resources to adequately support our operations.

● Our ability to generate internal growth.

● Changes in our relationship with key collaborators.

● Our failure to comply with regulatory guidelines.

● Uncertainty in industry demand and patient wellness behavior.

● Risks related to our operations in Israel.

● Depth of the trading market in our common stock.

The

foregoing does not represent an exhaustive list of matters that may be covered by the forward-looking statements contained herein or

risk factors that we are faced with that may cause our actual results to differ from those anticipated in our forward-looking statements.

Please see “Item 1A. Risk Factors” for additional risks which could adversely impact our business and financial performance.

Moreover, new risks regularly emerge, and it is not possible for us to predict or articulate all risks we face, nor can we assess the

impact of all risks on our business or the extent to which any risk, or combination of risks, may cause actual results to differ from

those contained in any forward-looking statements. All forward-looking statements included in this Form 10-K are based on information

available to us on the date hereof. Except to the extent required by applicable laws or rules, we undertake no obligation to publicly

update or revise any forward-looking statement, whether as a result of new information, future events or otherwise.

Unless

the context otherwise indicates or requires, the terms “we,” “our,” “us,” “NanoVibronix,”

and the “Company,” as used in this Annual Report on Form 10-K, refer to NanoVibronix, Inc. and its subsidiaries as a combined

entity, except where otherwise stated or where it is clear that the terms mean only NanoVibronix, Inc. exclusive of its subsidiaries.

Overview

We

were organized as a Delaware corporation in October 2003. Through our wholly-owned subsidiary, NanoVibronix Ltd., a private company incorporated

under the laws of the State of Israel, we focus on noninvasive biological response-activating devices that target biofilm prevention,

pain therapy , and wound healing and can be administered at home, without the assistance of medical professionals. Our primary products,

which are in various stages of clinical and market development, currently consist of:

Each

of our UroShield, PainShield, and WoundShield products employs a small, disposable transducer that transmits low frequency, low intensity

ultrasound acoustic waves that seek to repair and regenerate tissue, musculoskeletal and vascular structures, and decrease biofilm formation

on urinary catheters and associated urinary tract infections. Through their size, effectiveness and ease of use, these products are intended

to eliminate the need for technicians and medical personnel to manually administer ultrasound treatment through large transducers, thereby

promoting patient independence and enabling more cost-effective home-based care.

PainShield

is currently cleared for marketing in the United States by the U.S. Food and Drug Administration. In September 2020, the U.S. Food and

Drug Administration exercised its Enforcement Discretion to allow distribution of the UroShield device in the U.S. during the COVID-19

pandemic. While the permitted use is currently temporary, it does permit the import of the UroShield to the U.S. during the COVID-19

pandemic. All three of our products have CE Mark approval in the European Union, and a certificate allowing us to sell PainShield, UroShield

and WoundShield in Israel. We are able to sell PainShield, UroShield and WoundShield in India and Ecuador based on our CE Mark. We have

consummated sales of PainShield and UroShield in the relevant markets, although to date sales have been minimal; WoundShield has not

generated significant revenue to date. Outside of the United States we generally apply, through our distributor, for approval in a particular

country for a particular product only when we have a distributor in place with respect to such product.

In

the United States, PainShield and UroShield requires a prescription from a licensed healthcare practitioner. If U.S. Food and Drug Administration

clearance is obtained, we anticipate that WoundShield will require a prescription from a licensed healthcare practitioner in the United

States. UroShield has been approved through the U.S. Food and Drug Administration under Enforcement Discretion for the duration of the

Covid-19 health emergency and is intended to be sold directly to health care facilities and therefore will not require a prescription

for these venues. However, in other countries in which we sell PainShield, UroShield, and WoundShield, such products are eligible for

sale without a prescription.

In

addition to the need to obtain regulatory approvals, we anticipate that sales volumes and prices of our UroShield, PainShield, and WoundShield

products will depend in large part on the availability of insurance coverage and reimbursement from third party payers. Third party payers

include governmental programs such as Medicare and Medicaid in the United States, private insurance plans and workers’ compensation

plans. We do not currently have reimbursement codes for use of WoundShield in any of the markets in which we have regulatory authority

to sell WoundShield. Of the markets in which we have regulatory authority to sell PainShield, prior to January 2020, we only had reimbursement

codes in the United States (i.e., CPT codes) for clinical use only. Effective as of January 2020, the U.S. Centers for Medicare and Medicaid

Services (CMS) approved our PainShieldTM for reimbursement for Medicare beneficiaries on a national basis. We were notified on March

30, 2020 that our Medicare Enrollment Application was approved, and we are now an approved Medicare Supplier for Durable Medical Equipment,

or DME, through the National Supplier Clearinghouse, Palmetto-GBA as well as Noridian Administrative Services, LLC, the two Medicare

Administrative Contractors that handle DME reimbursement nationwide. PainShield is currently available for Medicare reimbursement on

a national level under new HCPCS (Healthcare Common Procedure Coding System) code K1004. With respect to UroShield, which may be used

in a clinical and home setting, we do not currently have reimbursement codes in any of the markets in which we have regulatory authority

to sell UroShield. We are seeking reimbursement codes for use of our products in the markets in which we have regulatory authority, including

the United States, to sell such products. Our current ongoing research and planned research may facilitate our ability to obtain reimbursement

codes and there is no guarantee that we will be successful in obtaining such codes quickly, or at all. We have engaged two reimbursement

experts, Redemption Revenue Cycle Solutions, LLC, and McGuire Woods, to help facilitate insurance reimbursement.

We

have completed six separate clinical studies with UroShield that together evaluated approximately 194 patients with urinary catheters.

In patients where the UroShield product was used there were no serious adverse events reported, while a variety of clinical beneficial

observations were seen including: catheter biofilm reduction, reduction in catheter associated pain, reduction in urinary tract infections,

and a significant decrease in bacteriuria rates. We completed a double blind clinical trial for UroShield in the United States in October

2018. The results of the study, entitled “The Effect of Surface Acoustic Waves on Bacterial Load and Preventing Catheter-Associated

Urinary Tract Infections (CAUTI) in Long Term Indwelling Catheters,” were published in the December 2018 issue of Medical &

Surgical Urology, a peer-reviewed journal in the field of urology. In the study, 55 patients in a skilled nursing facility chain treated

with long term indwelling catheters were evaluated. There was a significant difference between the treated group and the placebo group

in the number of colony forming units (“CFU”) present upon evaluation, as well as on the number of treated urinary tract

infections (“UTI”), and the effect lasted beyond the time of active treatment. The study concluded that the UroShieldTM

device was shown to be effective in significantly reducing the number of CFUs in patients with indwelling catheters. The study also concluded

that the UroShieldTM device was shown to be effective in reducing the number of treated UTIs in this patient population, and surface

acoustic waves in the form of the UroShieldTM device is an effective tool in the prevention of catheter-associated UTI and while

further evaluation is encouraged, can be safely utilized with a high likelihood of success. In July 2017, we engaged Idonea Solutions,

Inc., an FDA consultant, to assist in our efforts to obtain clearance under the FDA’s Enforcement Discretion, and obtain 510(K)

clearance which is still ongoing. If we are successful, we intend to pursue obtaining reimbursement codes and to target completion of

partnerships with leading catheter product companies for sales and marketing efforts in the United States. The Company has entered into

recent distribution partnerships for UroShield in the United States, U.K., Switzerland, Israel, India, and New Zealand.

In

addition, we continue to expand our clinical development and marketing efforts in North America with respect to PainShield. In February

2018, we completed a clinical trial to evaluate the effect of PainShield in patients with trigeminal neuralgia. The double blinded, crossover

trial was conducted across the United States and included 59 patients with a diagnosis of unilateral trigeminal neuralgia. Among the

59 patients, 30 were in the active treatment group and 29 were in the control group. The values which were assessed include Visual Analog

Scale (“VAS”) pain score, both baseline prior to trial and VAS pain score at the end of the study. The study also assessed

breakthrough medications per week at the start of the trial and breakthrough medications per week at the end of the trial, with a particular

focus on the use of opioids. Breakthrough medications are used for chronic pain directly related to the pre-existing trigeminal neuralgia

condition. There was a significant difference in the outcomes of the two groups relative to pain, quality of life, and breakthrough medications

taken, which was directly correlated to pain experienced during treatment. Specifically, the control group saw an improvement in baseline

scores of 2.3% versus the treatment group, which saw a 55.2% improvement in baseline scores. Additionally, the control group saw a reduction

in breakthrough pain medication of 1.5% versus the treatment group, which saw a 46.4% reduction in breakthrough pain medication.

In

2019, the Company has completed a study which was intended to assess the PainShield’s ability to effectively treat Lateral Epicondylitis

(Tennis Elbow). This is a double blinded, randomized control trial. The study has been completed and awaiting submission to an appropriate

journal. The interim results were reported as follows:

The

Company has entered into distribution partnerships for PainShield in the United States, Israel, India, Italy, United Kingdom, and Switzerland.

WoundShield

has been evaluated in two published clinical studies done to-date that suggest improved localized blood flow and oxygenation, and improved

topical oxygen saturation (Morykwas M, “Oxygen Therapy with Surface Acoustic Waveform Sonication,” European Wound Management

Association 2011; Covington S, “Ultrasound-Mediated Oxygen Delivery to Lower Extremity Wounds,” Wounds 2012; 24(8)). We supplied

devices for these studies but had no further involvement with them. We are pursuing licensing opportunities to develop commercial markets

for the WoundShield product.

Recent

Developments

Effective

as of January 2020, the U.S. CMS approved our PainShieldTM for reimbursement for Medicare beneficiaries on a national basis. We

were notified on March 30, 2020 that our Medicare Enrollment Application was approved, and we are now an approved Medicare Supplier for

DME through the National Supplier Clearinghouse, Palmetto-GBA as well as Noridian Administrative Services, LLC, the two Medicare Administrative

Contractors that handle DME reimbursement nationwide. PainShield is currently available for Medicare reimbursement on a national level

under new HCPCS (Healthcare Common Procedure Coding System) code K1004, as discussed above.

In

March 2020, we signed a license agreement with Sanuwave Health, Inc. (“Sanuwave”) for the manufacture and delivery of our

WoundShield technology. Under the terms of the agreement, we will receive warrants to purchase 127,000 shares of Sanuwave stock, a $250,000

milestone payment based on receipt of U.S. Food and Drug Administration approval, and 10% royalty on Sanuwave’s gross revenues

from sales or rentals of WoundShield. In return, Sanuwave has received the worldwide, exclusive rights to our WoundShield product and

technology. In addition, Sanuwave will bear the costs and clinical validation responsibilities associated with obtaining approval for

WoundShield from the U.S. Food and Drug Administration and other regulatory agencies around the world, as discussed above.

Business

Model

All

of our products consist of a reusable controller device and a disposable component, or transducer. The controllers have a life expectancy

of up to three years, while the disposable transducer has a life expectancy of up to a month and must be replaced to provide the intended

therapy. The components are purchased by either the distributor or end user for use in any of the intended applications. Once the controller

is purchased by the end user, recurring revenue will be realized by purchases of replacement transducers to the extent that the end user

continues treatment with our product.

Our

products are intended to be distributed both by independent distributors as well as by potential licensees. Distributor cost is discounted

to account for their intended margins, based upon purchase volumes and/or periodic purchase commitments, with the disposable transducer

sold and distributed in the same fashion. We currently have an established distributor network and are implementing certain criteria

within such network to ensure the appropriate assignment of a distributor or licensee. We also intend to add additional distributors

to our network.

In

August 2019, we established our first license agreement with Medisana, Inc. (“Medisana”) with a total of 1,500 devices that

was shipped to Medisana directly from China, in April 2020. The devices were designed to carry the product labeling specific to the Medisana

brand, with the product name of PT100. The product labeling includes the words, “PAINSHIELD Ultrasonic therapy, Medisana”.

All instructions for use and packaging are specific to Medisana.

In

December 2020, we amended and restated our original distribution agreement with Ultra Pain Products,

Inc. (“UPPI”). Under the terms of the new agreement, which extend the term and increase minimum purchase requirements, UPPI

will be the exclusive distributor of privately labeled PainShield® and PainShield® PlusTM devices to the Durable Medical

Equipment (DME) distribution sector of the healthcare market in the United States.By this

new private label agreement, we have expanded our revenue opportunity with UPPI, effectively increasing what was an initial revenue target

of $1.1 million over two years to $7.8 million over three years.

Our

business plan continues to focus on these types of transactions/agreements. We continue to focus on the foundational aspects of each

respective product, including the design and performance of each, the reimbursement, regulatory status, and quality control, in order

to strengthen our position with prospective partners.

Ultrasound

Technology and Our Products

As

noted above, our primary products are based on the use of low frequency ultrasound, which delivers energy through mechanical vibrations

in the form of sound waves. Ultrasound has long been used in physical therapy, physical medicine, rehabilitation and sports medicine.

Our

proprietary technology consists of a small, thin (1 millimeter) transducer that is capable of transmitting ultrasonic acoustic waves

onto treatment surfaces with a radius of up to 10 centimeters beyond the transducer. This technology allows us to treat wounds by implanting

our transducers into a small, portable self-adhering acoustic patch, thereby eliminating the need for technicians and medical personnel

to manually administer ultrasound therapy, which should reduce the cost of therapy. Moreover, we believe that, based upon the body of

evidence, the delivery of ultrasound through our portable devices is equal to or more effective than existing competitive products, as

our technology is better positioned to target the affected areas of the body.

While

there are currently a number of products on the market that treat pain through ultrasound therapy, we believe that our products differentiate

themselves because they are portable, without the requirement to be plugged into an outlet and they have a frequency of 100kHz (in contrast

to other devices, which have a frequency of 1MHz), which means our products do not produce heat that can damage tissue. Our products

can therefore (i) be self-administered by the patient without the need to be moved about the treated area by the patient or a clinician,

(ii) be applied for a significantly longer period without the risk of tissue damage and (iii) do not require the use of gel. We are aware

of one competitive product with similar ultrasound technology, the SAM® Sport4 by a company called Zetroz Systems LLC, aka ZetrOz,

Inc. However, it is our belief that this product does not generate surface acoustic waves as our products do, the treatment area is generally

limited to that of the transducer’s diameter, the use of transmission gel is still required and the transducer thickness is significantly

greater than ours (approximately 1.5cm). To our knowledge, the device only provides a battery life of 4 hours and is continuous therapy

versus intermittent therapy.

There

has been an article published in 2019 on SAM® Sport4 regarding clinical evidence demonstrating that ultrasound dose timing (i.e.

daily treatment) and duration significantly impact benefits and treatment results, we are aware of a prospective randomized, double-blinded,

placebo-controlled study on the effects of the long-duration low-intensity ultrasound treatment using SAM® Sport4 suggesting that

ultrasound may be used as a conservative non-pharmaceutical and non-invasive treatment option for patients with knee osteoarthritis.

In

general, ultrasound offers the benefits by increasing local blood circulation, increasing vascular wall permeability, promoting protein

secretion, promoting enzymatic reactions, accelerating nitric oxide production, promoting angiogenesis (the formation of new blood vessels

from pre-existing vessels) and promoting fibroblast proliferation (fibroblasts are a type of cell that play a critical role in wound

healing). We believe that the body of evidence, and the positive therapeutic effect that ultrasound has for various indications, potentially

provides for future product development opportunities for us.

Our

proprietary technology consists of a small, thin (1 millimeter) transducer that is capable of transmitting ultrasonic acoustic waves

onto treatment surfaces with a radius of up to 10 centimeters beyond the transducer. This technology allows us to treat wounds by implanting

our transducers into a small, portable self-adhering acoustic patch, thereby eliminating the need for technicians and medical personnel

to manually administer ultrasound therapy, which should reduce the cost of therapy. Moreover, we believe that, based upon the body of

evidence, the delivery of ultrasound through our portable devices is equal to or more effective than existing competitive products, as

our technology is better positioned to target the affected areas of the body.

Traditional

ultrasound device and our portable ultrasound patch-based device and a comparison of their energy distribution, where the X-axis represents

treatment surface and the Y-axis represents ultrasound energy penetration depth within tissue.

In

a comparison of a traditional ultrasound device and our portable ultrasound patch-based device, the bulk wave conventional ultrasound

machines with handheld transducers distribute the energy deeply into the body, as shown above in diagram (A) on the left. In comparison,

our device distributes the energy on the surface, as shown in diagram (B), thereby meaningfully increasing the treatment area. Our transducers

may also be incorporated into treatment patches, including patches that are designed to deliver medicine and other compounds through

the skin. The generation and delivery of low frequency ultrasound over a period of time to a specific area has been termed “targeted

slow-release ultrasound”. We believe that this delivery method of ultrasound may be comparable to that of slow release medication

in the pharmaceutical industry. This “targeted slow-release” capability is intended to allow for more frequent targeting

of the intended treatment area and thus may result in a more effective therapeutic response.

Micro

Vibrations Technology and Our Products

It

is well established that increasing blood flow to the wound and peri-wound area helps accelerate the healing of ischemic wounds. Micro-vibrations

applied on the skin tissue increase local blood flow and oxygen delivery to the wound area and stimulate angiogenesis and growth factors

that are helpful for the wound healing process. Vibration therapy has been found to stimulate blood flow due to mechanical stresses of

endothelial cells resulting in increased production of nitric oxide and vasodilation, as well as increase soft tissue and skin circulation.

(Maloney-Hinds et al., “The Role of Nitric Oxide in Skin Blood Flow Increases due to vibration in healthy adults and adults with

type 2 diabetes,” School of Medicine, Loma Linda University. Ca. Diabetes Technology & Therapeutics, 2009 p. 39-43). In addition,

micro vibrations induce skin surface nerve axon reflex and type IIa muscle fibers contraction rates, resulting in vasodilation (Nakagami

et al., “Effect of vibration on skin blood flow in an in vivo microcirculatory model”, The University of Tokyo, Bio-Science

Trends 2007; 1 (3): 161-166). Ten minutes of vibration therapy with laser doppler revealed a consistent increase in water content of

the upper dermis (TJ Ryan et al., “The effect of mechanical forces (vibration or external compression) on the dermal water content

of the upper dermis and epidermis, assessed by high frequency ultrasound”, Oxford Wound Healing Institute, Journal of Tissue Viability,

2001. In another study, mean blood flow increase was higher in the vibration group than the placebo group. Improvements in local blood

flow may be beneficial in the therapeutic alleviation of pain or other symptoms resulting from acute or chronic injuries (C. Button et

al., “The effect of multidirectional mechanical vibration on peripheral circulation of humans”, University of Otago New Zealand,

Clinical Physiology and functional Imaging, 2007 27, p211-216). A study on the effect of whole body vibration on lower extremity skin

blood flow suggests, that short duration vibration alone significantly increases lower extremity skin blood flow, doubling skin blood

for a minimum of 10 minutes following treatment (Lohman et al., “The effect of whole body vibration on lower extremity skin blood

flow in normal subjects”, Department of Physical Therapy, Loma Linda university, USA, Med Sci Monit, 2007; 13(2) 71-76). Vibration

has also been shown to stimulate angiogenesis and growth factors such as vascular endothelial growth factor (Suhr F et al., “Effects

of short-term vibration and hypoxia during high intensity cycling exercise on circulating level of angiogenic regulators in humans”,

J Appl Physiol, 2007, 103:474-483, Yue Z. et al., “On the cardiovascular effects of whole-body vibration I. Longitudinal effects:

hydrodynamic analysis”, Studies Appl Math, 2007, 119:95-109). Of import with respect to diabetic wounds, in which a prolonged inflammatory

phase occurs, vibration vasodilation has generated an indirect anti-inflammatory action, mainly by suppression of nuclear factor-kβ,

the key gene for inflammatory mediators (Sackner, M.A., “Nitric Oxide is released into circulation with whole-body, periodic acceleration”,

Chest 2005;127;30-39).

Urinary

catheter usage is associated with pain and discomfort caused by the friction between the catheter surface and the urethral tissue. Generally,

this friction is treated by applying lubricating gels and low friction catheter coatings. These methods are effective for a short term

during the catheter insertion as the lubricating gel is quickly absorbed into the surrounding tissue and loses its effect and the catheter

coatings lose their lubricity within a few days, as the coating is covered by a thin film of mucous.

Our

UroShield product provides vibrations along the surface of the urinary catheter that is in contact with urethral tissue. We believe that

these vibrations create a continuous acoustic lubrication effect along the surface of the indwelling catheter that is in contact with

the surrounding tissue, thus reducing catheter-tissue contact time, which may lessen trauma from urethra abrasion and adhesion. We have

also shown in animals and in humans that the micro-vibration technology can reduce the level of biofilm formation on urinary catheters.

Our

Products

Product

Design, Packaging, Identity

All

products were redesigned in the fourth quarter 2019, with an updated look and improved performance. These new designs were

coupled with new branding, packaging, instructional manuals, and marketing materials. Beginning in the fourth quarter of 2019,

our manufacturers in China have commenced producing the redesigned products for distribution and delivered their first completed

units in April 2020.

UroShield

UroShield

is intended to prevent bacterial colonization and biofilm formation, increase antibiotic efficacy in the catheter lumen and decrease

pain and discomfort associated with urinary catheter use. It is designed to be used with any type of indwelling urinary catheter regardless

of the material or coating. We believe that UroShield may be the first medical device on the market that attempts to simultaneously address

all of the aforementioned catheter-related issues. UroShield is similar in design to WoundShield and PainShield, in that it uses a driver

unit that produces low frequency, low intensity ultrasound. The driver unit connects to a disposable transducer that is clipped onto

the external portion of the catheter to deliver ultrasound therapy to all catheter surfaces as well as the tissue surrounding the catheter.

Picture

of UroShield with actuator

We

believe the UroShield system has the following advantageous effects:

UroShield

has undergone a number of clinical trials. The Heidelberg 1 trial, conducted in 2005-2006, which we sponsored, was a 22 patient randomized,

double blind, sham-controlled, independent trial that tested UroShield’s safety and ability to prevent biofilm in patients with

an indwelling Foley catheter. The trial demonstrated that UroShield prevented biofilm in all patients with the active device as compared

to biofilm being found in seven of eleven of the control patients. In addition, there was a marked decrease in pain, discomfort and spasm

in the active UroShield patients, as evidenced by a statistically significant decrease in the requirement for the medications required

to treat urinary catheter associated pain and discomfort (Ikinger U, “Biofilm Prevention by Surface Acoustic Nanowaves: A New Approach

to Urinary Tract Infections?,” 25th World Congress of Endourology and SWL, Cancun, Mexico, October 2007).

In

a subsequent physician-sponsored trial, known as Heidelberg 2, conducted in 2007, 40 patients who underwent radical prostatectomies were

divided into two groups, with the active group receiving one intra-operative dose of antibiotics and UroShield and the control group

receiving one intra-operative dose of antibiotics and then five subsequent doses over three days. At the end of the trial, the control

group had four cases of bacteriuria, as compared to one in the active group. In a third trial, a physician-sponsored open label trial,

10 patients who received emergency placement of a urinary catheter due to acute obstruction were given a UroShield device and followed

with regard to their pain, discomfort, spasm and overall well-being. Within 24 hours, all patients showed improvement and increased toleration

of the catheter (Zillich S., Ikinger U, “Biofilmprävention durch akustische Nanowellen: Ein neuer Aspekt bei katheterassoziierten

Harnwegsinfektionen?,” Gesellschaft für Urologie, Heilbronn, Germany, May 2008). We supplied devices for this trial, but had

no further involvement with it.

As

recently announced, the Company submitted to The National

Institute for Health and Care Excellence, for review, the findings from an independent evaluation of

its UroShield® device on patients who had used the device for up to two years. Clinical data from the study conducted by Coventry

University’s Assistant Professor, Ksenija Maravic da Silva, during 2020 reported statistically significant outcomes for the device

including a reduced number of urinary tract infections (UTIs), reduced instances of prescribed antibiotics, reduced catheter blockages,

reduced the need for unplanned catheter changes and reduced pain reported as a result of catheter associated complications. The study

also provided important insights into the lives of those using the device including improvement of overall well-being, relating specifically

to decreased levels of worry and increased ability to socialize. In addition, patient feedback on product improvements was addressed

and has been incorporated in the present commercially available device.

Market

for UroShield

According

to the Centers for Disease Control and Prevention, urinary tract infection (UTI) is an infection involving any part of the urinary system,

including urethra, bladder, ureters, and kidney. UTIs are the most common type of healthcare-associated infection reported to the National

Healthcare Safety Network (NHSN). Among UTIs acquired in the hospital, approximately 75% are associated with a urinary catheter, which

is a tube inserted into the bladder through the urethra to drain urine. Between 15-25% of hospitalized patients receive urinary catheters

during their hospital stay. The most important risk factor for developing a catheter-acquired urinary tract infection (CAUTI) is prolonged

use of the urinary catheter.

This

study was written up in the December 2018 issue of “Medical & Surgical Urology”, a leading peer-reviewed journal in the

field of urology.

Approximately

15-25% of patients who are admitted to a hospital will have an indwelling catheter at some point during their stay and 7% of nursing

home residents are managed by long term catheterization.

CAUTI

is the most common nosocomial infection in hospitals and nursing homes, representing over 40% of all hospital-acquired infections (HAIs)

and 20% of intensive care unit HAIs (Maki, P and Tambyah, D. Engineering Out the Risk for Infection with Urinary Catheters., Emerging

Infectious Diseases., Vol. 7, No. 2, March–April 2001). In addition, CAUTIs are the source for approximately 20% of healthcare

acquired bacteremia in acute care and 50% in long-term care facilities (Nicolle, Lindsay E. “Catheter Associated Urinary Tract

Infections.” Antimicrobial Resistance and Infection Control 3 (2014). The risk of acquiring CAUTI depends on the method and duration

of catheterization and patient susceptibility. Patients requiring a urinary catheter have a daily risk of approximately five percent

of developing bacteriuria and approximately 25% of patients develop nosocomial bacteriuria or candiduria over one week (Maki, P and Tambyah,

D. Engineering Out the Risk for Infection with Urinary Catheters., Emerging Infectious Diseases., Vol. 7, No. 2, March–April 2001).

Virtually all patients requiring indwelling urinary catheters for longer than a month become bacteriuric.

CAUTI

occurs because urethral catheters inoculate organisms into the bladder and promote colonization by providing a surface for bacterial

adhesion and causing mucosal irritation. The presence of a urinary catheter is the most important risk factor for bacteriuria. Once a

catheter is placed, the daily incidence of bacteriuria is 3-10%. Between 10% and 30% of patients who undergo short-term catheterization

(i.e., 2-4 days) develop bacteriuria and are asymptomatic. Between 90% and 100% of patients who undergo long-term catheterization develop

bacteriuria. About 80% of nosocomial UTIs are related to urethral catheterization; only 5-10% are related to genitourinary manipulation.

(John L. Brusch, Catheter-Related Urinary Tract Infection, Medscape, August 18, 2015).

The

global catheter market size was valued at USD 37.3 billion in 2018 and is expected to witness a CAGR of 9.7% through 2026. Rising prevalence

of chronic disorders leading to hospitalization has fueled the growth of this market. Presence of multi-national manufacturers, improving

medical facilities, supportive insurance policies are also some of the key factors propelling the market growth. North America is the

largest regional market due to the presence of multi-national manufacturers and sophisticated healthcare infrastructure along with high

product awareness levels. Asia Pacific is projected to expand at the maximum CAGR of 10.4%, over the study period. According to a Grandview

research report published 2018, there are 25 million Foley catheters sold annually in the United States and 75 million catheters sold

elsewhere yielding a total global Foley catheter market of 100 million units worldwide. The cost to treat a simple CAUTI has been estimated

at $13,793 per case (AHRQ), and the cost of treating bacteremia has been estimated at $8,355 (NIH) per case, yielding a total healthcare

burden of $830 million per year. While there are currently both antibiotic and silver coated catheters in the market, they often sell

for approximately $10 above the non-antimicrobial equivalent.

In

addition, as of October 1, 2008, Medicare stopped authorizing its payment to hospitals in which patients have developed a catheter-associated

urinary tract infection that was not present on admission. This provides hospitals in the United States with a substantial financial

incentive to reduce the occurrence of such infections through the use of products such as UroShield, which help prevent infections hospitals

would otherwise have to treat without reimbursement. In addition, it has been noted that the Centers for Medicare & Medicaid Services

may fine hospitals in the future when their patients develop CAUTI, which will likely increase the incentive of hospitals to invest in

technologies that may prevent this complication (Brown J, et al. “Never Events: Not Every Hospital-Acquired Infection Is Preventable,

Clinical Infectious Diseases, 2009, 49 (5)).

Competition

for UroShield

Several

types of products have been introduced to address the growing problem of catheter-acquired infection and biofilm formation on catheter

surfaces. Manufacturers offer antibiotic-coated and antiseptic-impregnated catheters. In addition, manufacturers have produced silver-coated

catheters, which have been shown in small studies to delay bacteriuria for about two to four days. However, larger studies did not corroborate

this result; on the contrary, silver hydrogel was associated with overgrowth of gram positive bacteria in the urine (Riley DK, Classen

DC, “A large randomized clinical trial of a silver-impregnated urinary catheter: lack of efficacy and staphylococcal superinfection,”

Am. J. Med. 1995 April; 98(4):349-56).

UroShield

has been designed to be added to any type of catheter, including Foley catheters and silver-coated catheters, to improve a catheter’s

infection prevention performance. UroShield is not intended to replace any existing products or technologies, but instead is intended

to assist these existing products or technologies in preventing catheter-acquired urinary injury and catheter associated complications.

While UroShield has been approved by the U.S. Food and Drug Administration (“FDA”) under Enforcement Discretion during the

COVID-19 health emergency, if we do not obtain permanent clearance from the FDA, UroShield may be unable to successfully compete in this

market due to an inability to obtain such permanent clearance from the FDA and failure to be adopted by health care practitioners and

facilities.

Regulatory

Strategy

UroShield

received CE Mark approval in September 2007 and was also approved for sale by the Israeli Ministry of Health in 2008. We are able to

sell UroShield in India and Ecuador based on our CE Mark. UroShield was granted a Canadian medical device license in September 2016,

although, due to a modification of regulatory standards in Canada, we have lost our Canadian license. We are working toward reinstatement

of our Canadian license. To that extent, we passed an audit in November 2020 with a notified body and we are waiting on a certificate.

In

the European Union, UroShield has been marketed for the prevention of biofilm, decreased pain and discomfort associated with urinary

catheters and increased antibiotic efficacy.

In

September 2020, the FDA exercised its Enforcement Discretion to allow distribution of the UroShield device in the United States. According

to the FDA, “UroShield® device can use Intended

Use Code (IUC) 081.006: Enforcement discretion per final guidance, and FDA product code QMK (extracorporeal acoustic wave generating

accessory to urological indwelling catheter for use during the COVID-19 pandemic)”.

Accordingly,

the FDA’s Enforcement Discretion clears the way for import of UroShield to the U.S. during the Covid-19 pandemic, immensely expanding

the company’s addressable market for the device during this time period. The device is designed to aid in the prevention of CAUTI

incidence in patients requiring long-term indwelling catheterization.

After

reviewing the body of scientific evidence that we presented, the FDA took decisive action to clear the way for patient access to UroShield

for the duration of the Covid-19 pandemic. The evidence presented to the FDA on UroShield demonstrated decreases in the risk of catheter-associated

urinary tract infections and related complications in patients using UroShield who required long-term indwelling catheterization. Importantly,

we are unaware of any other commercially available device that can prevent catheter-associated urinary tract infection incidence and

achieve results comparable to UroShield.

We

intend to seek 510K clearance from the U.S. Food and Drug Administration through the de novo classification process for UroShield. We

are currently seeking advice from the FDA prior to submission.

Studies

completed to establish safety of UroShield for human use:

Sales

and Marketing

Since

the FDA exercised its Enforcement Discretion to allow the distribution of the UroShield device in the United States, we have been actively

seeking partnerships for marketing our product in the United States. We believe the business opportunity for UroShield is in the hundreds

of millions in U.S. dollars to the extent that UroShield obtains permanent 510(k) clearance from the FDA, is recognized as effective

and becomes widely adopted for use in catheters. To that end, we are seeking a strategic partnership with various companies which have

an existing “footprint” in the Urology market. Those discussions and negotiations are ongoing at this time. We have appointed

distributors for UroShield in the United Kingdom and, and an outside management organization, Morulaa Health, to assist with regulatory

matters and distribution of UroShield in India. Each of these distributors is paid a small retainer and will be paid a commission between

10 to 20% of sales going forward. Total payments to these distributors totaled under $10,000 in 2020.

We

announced in May 2020, that we had expanded our license agreement with Ideal Medical International Limited to include exclusive rights

to distribute the Company’s UroShield® and PainShield® technologies in Canada and Turkey.

From

time to time we have had interest from strategic companies in the catheter market to partner, license or acquire the UroShield technology.

These strategic partners are active in the urology market and may be interested in integrating UroShield as an accessory, into its range

of products. Discussions with these partners are ongoing.

Clinical

Trials

To

date, we have conducted the clinical trials set forth below:

Purpose Doctor/Location Time, subjects Objectives Results

Purpose Doctor/Location Time, subjects Objectives Results

Purpose Doctor/Location Time, subjects Objectives Results

Purpose Doctor/Location Time, subjects Objectives Results

Recently

Completed, Current, Ongoing and Planned Clinical Trial

In

July 2019, a 23 -patient trial was completed in Norwich, United Kingdom. The trial was initiated to satisfy the requirements for adoption

within the UK National Health Service. Results of the trial have not been published. The hospital that completed the patient trial continues

to use the UroShield device.

In

September 2019, an economic impact study was performed completed by York Health Economic Consortium, United Kingdom to determine the

cost savings related to prevention of urinary tract infection. The study resulted in an economic impact “model” which will

demonstrate cost savings to prevention of patients contracting UTI. The trial was initiated to satisfy the requirements for adoption

within the UK National Health Service.

In

April 2019, an in vitro study was performed at Southampton University, Southampton, United Kingdom, to determine the effect of UroShield

on bacterial colonization in a laboratory setting. The trial was initiated to satisfy the requirements for adoption within the UK National

Health Service. This trial will also be helpful to fulfill a requirement of the FDA. Results revealed positive results to all others

studied in the same laboratory.

UroShield-In

vivo study is being conducted by Dr. Blayne Welk MD MSc and Dr. Jeremy Burton MSc PhD. The study, entitled “Low energy surface

waves to prevent urinary infections and catheter associated symptoms among patients with neurogenic bladder dysfunction”. The intent

is to conduct a pilot study to determine if the UroShield device can reduce catheter symptoms, improve urinary quality of life, and reduce

catheter biofilm formation and bacteriuria among patients with neurogenic bladder dysfunction and an indwelling catheter. The study is

ongoing but the recruitment has slowed due to the Covid-19 pandemic.

This

study is being done without cost to NanoVibronix and is expected to be presented at the American Urologic Association in the fall.

If

we are able to locate a strategic partner or otherwise obtain sufficient funding, we anticipate conducting the following clinical trial:

Trial Place Start Date/Timing Objectives

PainShield®

PainShield

is an ultrasound device, consisting of a reusable driver unit and a disposable patch, which contains our proprietary therapeutic transducer.

It delivers a localized ultrasound effect to treat pain and induce soft tissue healing in a targeted area, while keeping the level of

ultrasound energy at a safe and consistent level of 0.4 watts. We believe that PainShield is the smallest and most portable therapeutic

ultrasound device on the market and the only product in which the ultrasound transducer is integrated in a therapeutic disposable application

patch.

The

existing ultrasound therapy devices being used for pain reduction are primarily large devices used exclusively by clinicians in medical

settings. PainShield is able to deliver ultrasound therapy without being located in a health care facility or clinic because it is portable,

due to it being lightweight and battery operated. Because it is patch based and easy to apply, PainShield does not require medical personnel

to apply ultrasound therapy to the patient. The patient benefits include ease of application and use, faster recovery time, high compliance,

and increased safety and efficacy over existing devices that rely on higher-frequency ultrasound (Adahan M, et al, “A Sound Solution

to Tendonitis: Healing Tendon Tears With a Novel Low-Intensity, Low-Frequency Surface Acoustic Ultrasound Patch,” American Academy

of Physical Medicine and Rehabilitation Vol. 2, 685-687, July 2010). PainShield can be used by patients at home or work or in a clinical

setting and can be used even while the patient is sleeping. Its range of applications includes acute and chronic pain reduction and anti-inflammatory

treatment.

Picture

of PainShield with Patch

PainShield

is used to treat tendon disease and trigeminal neuralgia (a chronic pain condition that affects the trigeminal or 5th cranial nerve,

one of the most widely distributed nerves in the head); previously, the therapeutic options for these disorders have been very limited.

PainShield has also been used to treat pelvic and abdominal pain. To date, to the best of our knowledge, the only treatment options for

these conditions are pain medication and surgery. Several additional causes of pain, and the treatment of that pain with the PainShield

product, can be explored through clinical trials.

Market

for PainShield

Pain-related

complaints are one of the most common reasons patients seek treatment from physicians (Prince V, “Pain Management in Patients with

Substance-Use Disorders,” Pain Management, PSAP-VII, Chronic Illnesses). According to Landro L, “New Ways to Treat Pain:

Tricking the Brain, Blocking the Nerves in Patients When all Else Has Failed,” Wall Street Journal, May 11, 2010, approximately

26% of adult Americans, or approximately 76.5 million people, suffer from chronic pain. The National Center for Health Statistics has

estimated that approximately 54% of the adult population experiences musculoskeletal pain. Studies have shown that low-frequency ultrasound

treatment has yielded positive results for a variety of indications, including tendon injuries and short-term pain relief (Warden SJ,

“A new direction for ultrasound therapy in sports medicine,” Sports Med. 2003; 33 (2):95-107), chronic low back pain (Ansari

NN, Ebadi S, Talebian S, Naghdi S, Mazaheri H, Olyaei G, Jalaie SA, “Randomized, single blind placebo controlled clinical trial

on the effect of continuous ultrasound on low back pain,” Electromyogr Clin Neurophysiol. 2006 Nov; 46(6):329-36) and sinusitis

(Ansari NN, Naghdi S, Farhadi M, Jalaie S, “A preliminary study into the effect of low-intensity pulsed ultrasound on chronic maxillary

and frontal sinusitis,” Physiother Theory Pract. 2007 Jul-Aug; 23(4):211-8). We believe that PainShield’s technology, portability

and ease of use may result in it becoming an attractive product in the pain management and therapy field.

Competition

There

are numerous products and approaches currently utilized to treat chronic pain. The pharmacological approach, which may be the most common,

focuses on drug-related treatments with the over-the-counter internal analgesic market estimated at $19 billion in 2019. Alternatively,

there are a large number of non-pharmacological pain treatment options available, such as ultrasound, transcutaneous electrical nerve

stimulation, or TENS, laser therapy and pulsed electromagnetic treatment. In addition, there are some technologies and devices in the

market that utilize low frequency ultrasound or patch technology. Many patients are initially prescribed anti-pain medication; however,

ongoing use of drugs may cause substantial side effects and lead to addiction. Therefore, patients and clinicians have shown increased

interest in alternative pain therapy using medical devices that do not carry these side effects.

The

currently available ultrasound treatments for chronic pain have generally been accepted by the medical community as standard treatment

for pain management. However, the traditional ultrasound treatments, such as those manufactured or distributed by Mettler Electronics

Corp, Metron USA and Zimmer MedizinSysteme, are stationary devices found only in clinics and other health care facilities that need to

Source: SEC EDGAR (public domain) · 10-K for the period ended 2020-12-31, filed 2021-04-15 · accession 0001493152-21-008951

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