SBIR-STTR Award

Novel Low Temperature Sterilization Method for Flexible Endoscopes
Award last edited on: 9/20/2022

Sponsored Program
SBIR
Awarding Agency
NIH : NIAID
Total Award Amount
$1,190,332
Award Phase
2
Solicitation Topic Code
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Principal Investigator
Joel L Williams

Company Information

Brighton Development (AKA: Genomex)

1306 Walnut Street
Cary, NC 27511
   (919) 467-1473
   pollyman4u@aol.com
   N/A
Location: Single
Congr. District: 04
County: Wake

Phase I

Contract Number: 1R43AI122405-01A1
Start Date: 3/1/2016    Completed: 8/31/2016
Phase I year
2016
Phase I Amount
$198,754
?Healthcare-associated infections (HAI) are the single largest preventable medical cost in terms of both economic and humanitarian cost. The significance of this problem is reflected in the $35-billion annual expenditure made for healthcare associated infections in the medical community. Due to the large number of procedures done each year, endoscopes are associates with more HAI outbreaks and clusters than any other single medical device. The majority of healthcare associated infections from endoscopes result from the failure of personnel to comply with complicated and tedious reprocessing disinfection procedures. This recurring problem to follow proper disinfection procedures has created a need for an endoscope sterilization process that will improve compliance with reprocessing procedures with a fast, inexpensive method to sterilize narrow lumens in medical devices. Recent studies have documented that patient-to-patient HAI transmission could occur even with properly reprocessed and disinfected endoscopes. Sterilization of small diameter conduits in medical devices such as endoscopes, catheters, and tubing has plagued the medical industry for years. Along these lines, there has been an explosion of new minimally invasive surgical techniques in recent years using various endoscopic devices that contain long lumens that are extremely difficult to sterilize using traditional methods. These expensive devices often contain heat sensitive glues, optics, or electronics that will not tolerate autoclave or heat associated with re-sterilization in the medica environment. In Phase I Brighton Development will explore the feasibility of using an innovative sterilant-releasing insert to achieve the rapid sterilization of heat sensitive narrow lumen medica devices such as expensive endoscopes. The sterilizing insert method is economical, simple, and safe and will improve patient care with a higher level of sterility that is verifiable and easy to- use for improved compliance.

Public Health Relevance Statement:


Public Health Relevance:
Narrative The overall national cost of healthcare associated infections (HAI) in the United States is estimated to be between $20 to 45 billion per year. More health care associated infections are attributed to endoscopes than any other single medical device due to the fact that endoscopes and other narrow lumen medical devices are difficult and expensive to sterilize. The current margin of safety associated with reprocessing endoscopes is minimal. It is the ultimate goal of this research to develop an inexpensive low temperature sterilization technique for lumen devices that can help reduce the cost to the US health care system from nosocomial infection, save lives, and improve patient care.

Project Terms:
Accounting; Affect; Area; Biological; Caliber; Capital; carbene; Catheters; Chemicals; cold temperature; Communities; controlled release; cost; Data; delrin; design; Development; Devices; Disease Outbreaks; disease transmission; Disinfection; Duodenoscopes; Economics; Electronics; Elevator; Endoscopes; Environment; Environmental Monitoring; Equipment; Ethylene Oxide; Evaluation; Expenditure; Explosion; Failure (biologic function); Feasibility Studies; flexibility; Formaldehyde; Gases; Germicide; Glues; Goals; Hazardous Chemicals; Health Care Costs; Healthcare; Healthcare Systems; Heating; Hospitals; Hour; Human Resources; improved; Incubators; Industry; Infection; innovation; instrument; Laparoscopes; Liquid substance; Marketing; Medical; Medical Device; Methods; minimally invasive; non-compliance; Nosocomial Infections; novel; Operative Surgical Procedures; Optics; Oxides; Partner in relationship; Patient Care; Patients; Performance; Phase; phase 1 study; Plague; Polymers; pressure; Procedures; Process; programs; prototype; public health relevance; Research; Residual state; Rods (Retina); Safety; Side; statistics; Sterility; Sterilization; success; Surface; Surgical Instruments; System; Techniques; Technology; Temperature; Time; transmission process; United States; Validation; validation studies

Phase II

Contract Number: 2R44AI122405-02A1
Start Date: 3/1/2016    Completed: 12/31/2021
Phase II year
2020
(last award dollars: 2021)
Phase II Amount
$991,578

Healthcare-associated infections (HAI) are the single largest preventable medical cost in terms of both economic and humanitarian cost. The major significance of this problem is reflected in the $35-billion annual expenditure made for healthcare associated infections in the medical community. Due to the large number of procedures done each year, endoscopes are associated with more HAI outbreaks and clusters than any other single medical device. The majority of healthcare associated infections from endoscopes result from the failure of personnel to comply with complicated and tedious reprocessing disinfection procedures. This recurring problem to follow proper disinfection procedures has created a need for an endoscope sterilization process that will improve compliance with reprocessing procedures with a fast, inexpensive method to sterilize narrow lumens in medical devices. Recent studies have documented that patient-to-patient HAI transmission could occur even with properly reprocessed and disinfected endoscopes. Sterilization of small diameter conduits in medical devices such as endoscopes, catheters, and tubing has plagued the medical industry for years. Along these lines, there has been an explosion of new minimally invasive surgical techniques in recent years using various endoscopic devices that contain long lumens that are extremely difficult to sterilize using traditional methods. These expensive devices often contain heat sensitive glues, optics, or electronics that will not tolerate autoclave or heat associated with re-sterilization in the medical environment. Brighton Development successfully met all the feasibility goals of Phase I that resulted in the development of an innovative method for sterilizing endoscopes and other narrow lumen devices. The safe efficient method uses our novel sterilant- releasing insert to achieve quick sterilization of heat sensitive surgical devices such as expensive endoscopes. The sterilizing insert method developed in Phase I is simple, safe, and economical and will improve patient care with a high level of sterility that is verifiable and easy-to-use compared to the cumbersome disinfection cleaning methods currently used in hospitals. In October 2018 we received US Patent # 10,092,667, which covers the core sterilant technology that will be used for the low temperature inside-out sterilization of endoscopes. Under the low temperature conditions, this process will not damage the heat-sensitive materials used to fabricate endoscopes. In Phase II, we will develop the required backup data to meet the FDA requirements to commercialize this inside-out sterilization method for endoscopes using the duodenoscope as the model. The Specific Aims and Commercialization Plan, herein, outline in detail the FDA steps required to achieve the successful introduction of this technology into the marketplace using the simple inside-out sterilization method, which was proven feasible in Phase I.

Public Health Relevance Statement:
Narrative The overall national cost of healthcare associated infections (HAI) in the United States is estimated to be between $20 to 45 billion per year. More health care associated infections are attributed to endoscopes than any other single medical device due to the fact that endoscopes and other narrow lumen medical devices are difficult and expensive to sterilize. The current margin of safety associated with reprocessing endoscopes is minimal. In our Phase I feasibility study we successfully developed a simple inside-out method for sterilizing endoscopes by using our novel sterilant polymer technology. It is the ultimate goal of this Phase II research, to generate the required supporting data to commercialize this development for endoscopes by continuing our interaction with the FDA to achieve FDA approval for this development. Upon FDA approval, this inside-out method of sterilization will provide an inexpensive low temperature sterilization technique that can be used safely with plastic endoscopic devices that cannot be currently autoclaved due to melting of the plastic components used to fabricate the endoscope. The novel inside-out sterilization method will, also reduce the cost to the US health care system from nosocomial infection, save lives, and improve patient care.

Project Terms:
Achievement; Affect; Area; Biological; Caliber; carbene; Catheters; cold temperature; commercialization; Communities; Consumption; controlled release; cost; Data; delrin; design; Development; Devices; Disease Outbreaks; disease transmission; Disinfection; Documentation; Duodenoscopes; Economics; Electronics; Elevator; Endoscopes; Environment; Equipment; Expenditure; Explosion; Failure; Feasibility Studies; flexibility; Formaldehyde; Gases; Germicide; Glues; Goals; Hazardous Chemicals; Health Care Costs; Healthcare Systems; healthcare-associated infections; Hospitals; Hour; Human Resources; improved; Incubators; Industry; innovation; instrument; Laparoscopes; Legal patent; Liquid substance; Medical; Medical Care Costs; Medical Device; meetings; melting; Methods; minimally invasive; Modeling; non-compliance; Nosocomial Infections; novel; Operative Surgical Procedures; Optics; Oxides; Partner in relationship; Patient Care; Patients; Performance; Phase; phase 1 study; Polymers; procedure safety; Procedures; Process; Product Approvals; programs; Research; Rod; Safety; Side; statistics; Sterility; Sterilization; success; Surface; Surgical Instruments; System; Techniques; Technology; Temperature; Time; transmission process; United States; United States National Institutes of Health; Validation; validation studies; Work