Project Grant R41EB039570
- The National Institute of Biomedical Imaging and Bioengineering, part of the Department of Health and Human Services National Institutes of Health, awarded Massachusetts General Hospital $2,007,744 on September 1, 2026, under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) to develop MSEAL, a supramolecular surgical sealant for hemostasis in burn excision surgery. MSEAL is a spray-on, highly adhesive sealant engineered to address...
- The National Institute of General Medical Sciences awarded Brigham & Womens Hospital Inc. $393,800 on August 1, 2026, under the Biomedical Research and Research Training program (CFDA 93.859) to develop GLYCOPATCH, a multifunctional trauma adhesive for life-threatening visceral organ injuries. The award supports research into a pectin-based hydrogel sealant designed to stabilize traumatic wounds and deliver site-directed bioactives including procoagulants or antibiotics in resource-limited...
- The National Institute of General Medical Sciences (part of the National Institutes of Health, Department of Health and Human Services) awarded $393,800 to the Terasaki Institute for Biomedical Innovation on September 5, 2026, under the Biomedical Research and Research Training program (CFDA 93.859) to develop immunomodulatory nanofibrous modular aerogels for chronic wound healing. The research addresses chronic wounds affecting approximately 6.5 million Americans by combining three engineered...
- The National Institute of Biomedical Imaging and Bioengineering awarded Lehigh University $616,375 on April 14, 2026, under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) to develop protease-responsive hydrogels that create cell-specific microenvironments within tissue-engineering matrices. The research addresses the challenge that different cell types within tissues require distinct matrix properties—endothelial cells optimize in...
- The National Institute of Biomedical Imaging and Bioengineering awarded Louisiana State University Health Sciences Center New Orleans $423,201 on August 14, 2026, under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) to design, synthesize, and validate regenerative, immunorestorative, and antimicrobial skin matrices (RIAMS) for infected hard-to-heal wounds in diabetic patients. The research addresses multidrug-resistant bacterial...
- Arizona State University received a $428,022 Project Grant award from the National Institute of Biomedical Imaging and Bioengineering under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) effective August 1, 2025 through July 31, 2027. The research initiative focuses on the engineering and development of SEROGRAFT, a novel bio-inspired acellular biomaterial designed to prevent postoperative abdominal adhesions. SEROGRAFT is a...
- The National Heart, Lung, and Blood Institute awarded Matregenix Inc. $314,211 on September 1, 2026, under the Cardiovascular Diseases Research program (CFDA 93.837) to develop biodegradable, drug-eluting nanofiber scaffolds for lymphatic regeneration and lymphedema treatment. Matregenix will fabricate flexible, tubular scaffolds composed of amino acid-based poly(ester urea) designed to deliver sustained, localized 9-cis retinoic acid to promote lymphangiogenesis. Phase I objectives include...
- The National Institutes of Health National Institute of Arthritis and Musculoskeletal and Skin Diseases awarded Penderia Technologies Inc. $306,722 on September 19, 2025, under the Arthritis, Musculoskeletal and Skin Diseases Research program (CFDA 93.846) to fabricate and characterize a distal femoral fracture fixation plate featuring an implantable, battery-free wireless sensor for intra- and postoperative monitoring of fixation plate strains. The project targets personalized postoperative...
- The National Institute of Arthritis and Musculoskeletal and Skin Diseases awarded the University of California, Los Angeles $368,156 on June 5, 2026, under the Arthritis, Musculoskeletal and Skin Diseases Research program (CFDA 93.846) to develop UGIGEL, a gelatin-based, self-healing bioadhesive for chronic wound treatment. The award funds research to engineer and optimize UGIGEL through a one-pot Ugi four-component reaction combining gelatin, 4-formylphenylboronic acid, gallic acid, and...
- The National Institutes of Health National Heart Lung and Blood Institute awarded Nimble Surgical Incorporated $314,362 on September 15, 2025, under the Cardiovascular Diseases Research program (CFDA 93.837) to develop FLEXLOCK, a manually operable anchoring guide catheter designed to simplify transradial complex percutaneous coronary interventions. FLEXLOCK delivers simultaneous active and passive support through an anchoring tip to provide stable coronary access during complex PCI...
The National Institute of Biomedical Imaging and Bioengineering awarded Tissuelock LLC $314,362 on September 1, 2026, under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286) to develop an antioxidative fiber mesh adhesive for preventing seroma and hematoma complications following abdominoplasty and large soft tissue surgeries. Seromas and hematomas occur in up to 20–30% of these procedures, leading to infection, delayed healing, repeat interventions, and estimated additional healthcare costs of $5,000–$10,000 per patient. Current prevention strategies—surgical drains and tension sutures—carry significant limitations: drains require weeks of placement with attendant discomfort and infection risk, while tension sutures can cause tissue injury and impaired perfusion. Existing commercial adhesives (cyanoacrylates, fibrin sealants, lysine-derived urethanes) demonstrate limited efficacy due to internal-use toxicity, inadequate bonding strength, or lack of bioactivity, and none address oxidative stress, a key driver of post-surgical inflammation, impaired angiogenesis, and fibrosis. Tissuelock's mesh combines co-polymers functionalized with N-hydroxysuccinimide esters for rapid covalent tissue bonding, α-lipoic acid-derived thioether and disulfide bonds for sustained reactive oxygen species scavenging and anti-inflammatory activity, and amine-modified hyaluronic acid to promote angiogenesis and tissue integration. The porous mesh conforms to complex tissue geometries, provides mechanical stability, and facilitates host cell infiltration while promoting macrophage polarization toward a pro-regenerative phenotype. Performance occurs in Wildwood, Missouri, with a period of performance from September 1, 2026 through August 31, 2027.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $314.4k | 8/21/26 |