Project Grant R43AI177051
- This Project Grant, awarded by the National Heart Lung and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837), aims to develop a unique antimicrobial vascular catheter to prevent catheter-related bloodstream infections (CRBSI). The $272,702 award, effective September 1, 2023, with a completion date of February 29, 2024, will support research and development efforts to create an intravascular catheter with inherent long-lasting antiseptic properties. The...
- Acatechol, Inc. was awarded a $274,982 National Science Foundation (NSF) Small Business Innovation Research (SBIR) Phase I grant to develop an innovative anti-infective coating for Foley catheters. The project aims to create a hybrid coating that combines biofilm-repellent and antimicrobial properties to provide prolonged resistance against pathogen colonization and catheter-associated urinary tract infections (CAUTIs). This work is being conducted under the NSF Technology, Innovation, and...
- This SBIR Phase I project, awarded by the National Science Foundation (NSF) under the Technology, Innovation, and Partnerships (CFDA 47.084) program, is focused on the development of a novel mammalian cell-based nano-biological coating for implantable medical devices. The goal is to address the critical health and economic burden associated with implant-related infections by reducing or eliminating them through the use of this biocompatible and antimicrobial nano-biological coating. The $305,000...
- This Project Grant award from the National Science Foundation (NSF) under the NSF Technology, Innovation, and Partnerships (CFDA 47.084) program provides funding of $303,242 to Folde Inc. for the development of a novel urinary catheter device. The project aims to address the challenge of difficult urethral catheterizations, a common medical issue that leads to significant medical and financial burdens. The Phase I effort will demonstrate the feasibility of a new catheter design that conforms...
- This $550,000 Project Grant awarded by the National Science Foundation (CFDA 47.084 - NSF Technology, Innovation, and Partnerships) supports the development of a remote monitoring system to reduce peritoneal dialysis (PD) infections. The project aims to create a medical device that can provide real-time, continuous monitoring of biomarkers in dialysate fluid to enable earlier detection and treatment of PD-associated infections. The key products and services to be delivered include: (1)...
- This $256,000 National Science Foundation project grant supports the development of an automated chest tube to prevent clotting. Circulatech LLC will design and prototype a novel chest tube that proactively manages fluid flow within the catheter lumen to flush and drain the tube, reducing blood clot formation. Through a process called "dilutional coagulopathy," the tube will use sterile saline or anticoagulants to reduce thrombosis in the drainage space rather than relying on...
- This Project Grant award from the National Heart Lung and Blood Institute, under the Cardiovascular Diseases Research federal grant program (CFDA 93.837), provides $464,229 to Limax Biosciences Inc. to advance the development of their HEMOMAX biodegradable hydrogel sealant for use in vascular surgery. The key objectives are to: (1) conduct comprehensive bench performance testing, including sterilization validation and endotoxin assessment, and (2) evaluate the safety and efficacy of HEMOMAX in a...
- This Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB) under the "Discovery and Applied Research for Technological Innovations to Improve Human Health" program (CFDA 93.286) provides $418,284 to the Georgia TECH Research Corp to evaluate the performance of a new ion sensor-integrated central venous catheter (CVC) and an automated system for real-time correction of electrolyte imbalances. The research project aims to replace traditional...
- This Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286), is supporting the development of novel minimally invasive catheter-based devices for endovascular filtration. The goal is to remove chemotherapy drugs from the blood in order to reduce systemic toxicity during locoregional infusion therapy. The $670,440 award, granted on May 21,...
- Corveus Medical, Inc. was awarded a $255,841 Project Grant from the National Science Foundation under the NSF Technology, Innovation, and Partnerships program (CFDA 47.084) to develop an extravascular bipolar catheter for targeted nerve ablation with minimal collateral damage to surrounding tissues. The grant aims to support the design and prototyping of a minimally invasive, catheter-delivered venous procedure for performing extravascular greater splanchnic nerve ablation. The proposed catheter...
HYBRID REPELLANT-ANTIMICROBIAL GEMINI COATINGS FOR PREVENTION OF CATHETER-ASSOCIATED BLOODSTREAM INFECTIONS - PROJECT SUMMARY/ABSTRACT OVER 20% OF THE HEMODIALYSIS PATIENTS DEVELOP LIFE-THREATENING CENTRAL LINE-ASSOCIATED BLOODSTREAM INFECTIONS (CLABSIS). ACCORDING TO THE CDC, >250,000 CLABSIS, HAVING MORTALITY RATES OF 14-40%, OCCUR IN THE US ANNUALLY, AND AMONG THEM >100,000 CASES ARE DIRECTLY RELATED TO HEMODIALYSIS CENTRAL VENOUS CATHETER (CVC). ONE OF THE TOOLS CURRENTLY USED TO REDUCE CLABSIS IS THE USE OF ANTIMICROBIAL CVCS. HOWEVER, THE CURRENT ANTIMICROBIAL CVCS REMAIN SUSCEPTIBLE TO BIOFOULING (I.E., BIOFILM FORMATION) AS THEY DO NOT DISPLAY REPELLENCY TO BIOFOULANTS. IN OTHER WORDS, HOST BIOMOLECULES AND CELLULAR DEBRIS FROM DEAD MICROORGANISMS CAN ACCUMULATE UPON THEIR SURFACE, THEREBY FACILITATING ADHERENCE OF LIVING MICROBIA AND THEIR ASSOCIATED BIOFILMS. IN ADDITION, MOST ANTIMICROBIAL CVCS FUNCTION BY GRADUALLY RELEASING EMBEDDED BIOCIDES/ANTIBIOTICS WITH RISK OF DEVELOPING ANTIMICROBIAL RESISTANCE. TO ADDRESS THE PROBLEMS, WE HYPOTHESIZED THAT INCORPORATING BIOFILM-REPELLENT ZWITTERIONIC MOIETIES TOGETHER WITH ANTIMICROBIAL GEMINI DICATIONIC MOIETIES INTO CVC SURFACES, A SYNERGISTIC EFFECT COULD BE REALIZED. OUR PRELIMINARY STUDY CONFIRMED THE SYNERGETIC EFFECT. TECHNOLOGY INNOVATION IS 1) THE NEW CVC SURFACE COVALENTLY IMMOBILIZED WITH GEMINI DICATIONIC MOIETIES TO PROVIDE BEST-IN-CLASS ANTIMICROBIAL PROPERTIES WITHOUT CONCERNS OF DEVELOPMENT OF ANTIMICROBIAL RESISTANCE; AND 2) THE NEW CVC SURFACE CONTAINING BOTH BIOFILM-REPELLANT AND ANTIMICROBIAL MOIETIES TO OVERCOME THE DEFICIENCIES OF EACH ALONE TO PREVENT THE ROOT CAUSE OF CLABSIS. TO DEMONSTRATE THE FEASIBILITY OF OUR TECHNOLOGY, IN AIM 1, WE WILL MAXIMIZE THE SYNERGETIC EFFECT BY ITERATIVELY OPTIMIZING THE RATIO BETWEEN THE ANTIMICROBIAL AND REPELLENT MOIETIES WITH RESPECT TO ANTIMICROBIAL EFFICACY, BIOFILM REPELLENCY, COATING ANTI-INFECTIVE DURABILITY, OVER VARYING TIMEFRAMES. IN AIM 2, WE WILL PRODUCE PROTOTYPE HYBRID CVCS, AND COMPARE THEIR INFECTION RISKS RELATIVE TO COMMERCIAL ANTIMICROBIAL CVCS AGAINST PATHOGENS RESPONSIBLE FOR >90% OF CLABSIS. IN AIM 3, WE WILL EVALUATE BIO- AND HEMO-COMPATIBILITY OF THE PROTOTYPES USING ASSAYS SPECIFIED IN ISO 10993-4 FOR HEMOLYSIS, COAGULATION, COMPLEMENT-ACTIVATION, AND INFLAMMATION AS WELL AS LEACHATE TOXICITY. EXPECTED OUTCOMES IN THIS PHASE I INCLUDE >20% REDUCTIONS IN PROLIFERATION, ANTIMICROBIAL, AND BIOFILM ASSAYS WITH A SIMILAR/BETTER BLOOD COMPATIBILITY COMPARED TO CURRENT ANTIMICROBIAL CVCS. >20% REDUCTION IN THE NATIONAL INFECTION RATE WITH OUR CVC PRODUCT WOULD PREVENT >50,000 CLABSIS, SAVING >16,000 LIVES AND >$500 MILLION DIRECT HEALTHCARE COSTS EACH YEAR. PHASE II WILL INCLUDE IN-VIVO STUDIES TO ENSURE ACCURATE TRANSLATION OF IN-VITRO AND EX-VIVO PROPERTIES. IN PHASE II, WE WILL ALSO INITIATE PRODUCTION OF OUR PROTOTYPE CVCS AT A FDA CGMP COMPLIANT MANUFACTURING FACILITY, SUBSEQUENTLY APPLY FOR 510(K) CLEARANCE FOR SUBSEQUENT CLINICAL EVALUATION. OUR SERVICEABLE OBTAINABLE MARKET (SOM) IS THE US CVC MARKET, ESTIMATED TO GROW $1.3 BILLION IN 2026. AS OUR HYBRID-COATING CAN BE APPLIED TO NEARLY ALL TYPES OF CATHETERS INCLUDING IV AND URINARY TRACT CATHETERS, THE TOTAL AVAILABLE MARKET (TAM) IS THE GLOBAL CATHETER MARKET, EXPECTED TO REACH $74.8 BILLION BY 2028.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 2/14/25 | ||
| Not listed | $0 | 7/2/24 | ||
| Not listed | $0 | 7/2/24 | ||
| Not listed | $55.0k | 4/9/24 | ||
| Not listed | $55.0k | 4/9/24 |