IMBED BIOSCIENCES INC — Department of Health and Human Services SBIR Phase II: NIAMS

IMBED BIOSCIENCES INC — SBIR Phase II award from Department of Health and Human Services.

Amount
$1,499,996
Agency
Department of Health and Human Services · National Institutes of Health
Program / Phase
SBIR · Phase II
Topic
NIAMS
Solicitation
PA13-088
NAICS
Place of performance
WI
Period
2014-07-22 → 2016-06-30

Description

DESCRIPTION provided by applicant Clinical infections in burn trauma and surgical wounds represent a huge economic and health care burden In the U S there is a infection rate in surgical wounds and up to a rate in burn wounds The current standard of care is intensive and expensive involving frequent topical application of antimicrobials twice daily with painful dressing changes Expensive advanced dressings with antimicrobials impair wound healing by depositing toxic concentrations of antimicrobials typically andgt g cm of silver day When used with biologic dressings these standards of care still result in up to infection rate There is a critical unmet need for formulations that provide long term release of antimicrobials without toxic build up in wounds support broad therapeutic use of advanced dressings and reduce frequent dressing changes Successful completion of Phase research at Imbed Biosciences has resulted in the invention and development of a unique silver wound dressing product concept based on Imbedandapos s patent pending nanofilm technology dissolvable microfilm wound contact dressing with uniquely stabilized silver nanoparticles A key feature of the microfilm dressing is that it contains a small quantity of silver that provides more intimate contact of active silver with the wound bed which is less toxic to the wound and gentler to use The microfilm dressing conforms to the micro contours of the wound bed to provide andapos localizedandapos and andapos long termandapos release of active silver ions Inexpensive fabrication and low cost of goods makes the microfilm dressing a cost efficient alternative andgt savings to expensive silver dressings for use with moist and biologic wound dressings Results of Phase I research demonstrated that the microfilm silver dressing kills log CFU of several bacterial species including MRSA provides sustained release of bactericidal silver for at least days does not show detectable in vitro cytotoxicity or in vivo systemic toxicity allows normal wound healing by re epithelialization and significantly reduces microbial colonization and expedites wound closure under biosynthetic dressings in contaminated murine wounds Comparison to other silver dressings showed that the microfilm dressing releases up to x less silver than most available dressings provides equivalent or better antibacterial activity an allows normal wound re epithelialization unlike some silver dressings Based on this promising data from Phase research and enthusiastic feedback from clinicians and potential commercial partners Phase II research aims to further develop optimize and validate the Microfilm Silver Dressing product concept for high throughput fabrication Aim broad spectrum antimicrobial activity Aim biocompatibility Aim and porcine wound healing Aim We have assembled a team of material scientists microbiologists and veterinary and medical surgeons with a history of successful collaboration Completion of Phase II research will provide optimized design and data sets for microfilm dressings required for manufacturing scale up and regulatory approval for human clinical trials PUBLIC HEALTH RELEVANCE Wound management presents a huge economic and healthcare burden in the U S The research described in this SBIR application will lead to the realization of a unique microfilm wound dressing that immobilize broad spectrum antibacterial agents on the wound surface and prevent wound infections under primary and secondary wound dressing The new microfilm dressing will reduce frequent application of topical antiseptics and use of antibiotics minimize painful dressing changes and nurse time and lower patient pain medication costs and length of hospital stays