Project Grant R41HL162242
- This Project Grant award of $944,676 from the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837) supports the development of a novel platelet-inspired nanotechnology called Synthoplate (SP) by Haima Therapeutics LLC. The goal is to restore hemostasis, or normal blood clotting function, in patients on antiplatelet agents like clopidogrel and ticagrelor who suffer from traumatic brain injuries. This is a critical unmet need, as...
- This Project Grant award of $375,306 from the National Heart, Lung, and Blood Institute (CFDA 93.837 Cardiovascular Diseases Research) aims to advance personalized transfusion medicine by identifying optimal procedures to yield platelet products with maximum hemostatic capacity. The key products or services to be delivered include: Identifying the thiol redox status of cold-stored platelets compared to room temperature-stored platelets, and the specific redox switches associated with improved...
- This Project Grant award of $234,000.00 was provided by the National Heart Lung and Blood Institute (CFDA 93.837 Cardiovascular Diseases Research) to the University of Colorado-Denver to develop "hemostatic red blood cells" (T-RBCs) that can bind to collagen and fibrin to enhance clot formation and stability. The goal is to create a novel technology to address severe, non-compressible bleeding, which is a major cause of mortality worldwide, especially in low-resource settings. The...
- This $306,656 Project Grant award was provided by the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837) to support research on approaches to enable large-scale biomanufacturing of heparin, a critical anticoagulant medication. The award was granted to Bioparin, LLC on February 1, 2025, with a planned completion date of January 31, 2026. The project aims to develop alternative, reliable modern drug production processes for heparin,...
- The National Heart, Lung, and Blood Institute (NHLBI) awarded a $295,963 Project Grant (CFDA 93.837 - Cardiovascular Diseases Research) to New Health Sciences, Inc. (Hemanext Inc.) to evaluate the hemostatic function of platelets stored under hypoxic conditions for whole blood (WB) transfusion. The project aims to develop an improved WB storage platform that maintains an oxygen-managed environment to provide higher quality red blood cells for oxygen delivery and shock reversal, while...
- This $568,264 Project Grant (R41HL178144) was awarded by the National Heart, Lung, and Blood Institute (NHLBI) under the Cardiovascular Diseases Research program (CFDA 93.837) to SAFI Biotherapeutics Inc., a pre-clinical blood cell therapy company based in Cambridge, MA. The goal of this Phase I STTR project is to develop a scalable bioprocess for manufacturing designer red blood cells (RBCs) derived from induced pluripotent stem cells (iPSCs). These designer RBCs will serve as reagents to...
- This Project Grant award from the National Heart, Lung, and Blood Institute (CFDA 93.837 - Cardiovascular Diseases Research) aims to investigate the role of platelet ABO(H) blood group antigens in hemostasis and thrombosis. The $445,708 award to Brigham & Women's Hospital, a subsidiary of Partners Healthcare System, will fund a 3-year research project to: 1) define the impact of ABO(H) glycans on platelet binding to von Willebrand factor, and 2) identify ABO(H) antigen-carrying glycoproteins...
- This Project Grant award for $314,363, provided by the National Heart, Lung, and Blood Institute under the Cardiovascular Diseases Research program (CFDA 93.837), aims to develop a novel gene therapy technology called STITCHR to enable full gene replacement for Hemophilia A. The proposed research will engineer robust adeno-associated virus (AAV) constructs to deliver and express the full-length Factor VIII gene, addressing the limitations of current truncated versions. The project will...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training federal grant program (CFDA 93.859), provides $504,644 to Bloodworks, a non-profit organization in Seattle, to investigate the relationship between platelets and CD8+ T cells in sepsis. The goals of the 5-year research program are to: 1) determine if platelet-CD8+ T cell aggregates are present in sepsis patients and associated with adverse outcomes, 2)...
- This Project Grant award from the National Heart, Lung, and Blood Institute (CFDA 93.837 Cardiovascular Diseases Research) provides $693,423 to Baylor College of Medicine to develop and validate a novel microfluidic device capable of purifying platelets for pediatric and neonatal transfusions. The goal is to create a simple, disposable device that can effectively remove contaminants from platelet suspensions while preserving high-functioning platelets. The project will optimize the efficiency of...
INCREASING EFFICIENCY OF SDFV PRODUCTION IN A TOBACCO-BASED SYSTEM FOR SYNTHETIC PLATELET DESIGN - PROJECT SUMMARY UNCONTROLLED BLEEDING IS A SIGNIFICANT CLINICAL PROBLEM IN BOTH CIVILIAN AND MILITARY TRAUMATIC INJURIES; IN BOTH CASES, EXSANGUINATION PRIOR TO HOSPITALIZATION IS THE PRIMARY CAUSE OF DEATH FOR BOTH MEN AND WOMEN. FURTHERMORE, HEALING FOLLOWING TRAUMA CAN BE COMPLICATED BY INFECTION, KELOID FORMATION, INSUFFICIENT BLOOD FLOW, OR CONDITIONS SUCH AS DIABETES AND OBESITY. CLOT FORMATION IS CRITICAL TO THE CESSATION OF BLEEDING AFTER TRAUMA AND INVOLVES THE ACTIVATION OF CIRCULATING PLATELETS THAT HONE TO THE SITE OF INJURY AND AGGREGATE TO FORM A PLATELET PLUG, STEMMING BLEEDING. ACTIVATED PLATELETS ALSO BIND FIBRIN FIBERS FORMING AT A SITE OF INJURY TO FORM A PLATELET- FIBRIN MESH. PLATELETS THEN UTILIZE ACTIN-MYOSIN MACHINERY TO APPLY FORCES TO THE CLOT NETWORK, CONTRACTING AND STABILIZING THE CLOT AND FACILITATING ITS ROLE AS A PROVISIONAL MATRIX TO SUPPORT SUBSEQUENT CELLULAR INFILTRATION OF THE WOUND ENVIRONMENT. IN CASES OF TRAUMATIC INJURY, EXSANGUINATION CAN CAUSE PLATELETS TO BECOME DEPLETED, IMPAIRING THEIR ABILITY TO STOP BLEEDING AND PROMOTE HEALING. PLATELET TRANSFUSION IS THE CURRENT STANDARD OF CARE; HOWEVER, ISOLATED PLATELETS HAVE A SHORT SHELF-LIFE, CONTRIBUTING TO MAJOR SUPPLY CHAIN ISSUES. ADDITIONALLY, POTENTIAL IMMUNOLOGIC CONCERNS ASSOCIATED WITH TRANSFUSION OF BLOOD PRODUCTS HIGHLIGHTS THE CRITICAL UNMET NEED TO DEVELOP PLATELET ALTERNATIVES TO TREAT BLEEDING AFTER TRAUMA. WE HAVE RECENTLY DEVELOPED SYNTHETIC PLATELET-LIKE PARTICLES (PLPS) CREATED FROM HIGHLY DEFORMABLE MICROPARTICLES COUPLED TO FIBRIN-TARGETING ANTIBODY FRAGMENTS THAT ARE CAPABLE OF HONING TO INJURIES THROUGH HIGH AFFINITY BINDING TO FIBRIN FORMING AT THE SITES OF INJURY. OUR INITIAL STUDIES DEMONSTRATE THAT PLPS ARE ABLE TO RECAPITULATE SEVERAL FUNCTIONS OF NATIVE PLATELETS, INCLUDING CLOT AUGMENTATION IN VITRO, DECREASING BLEEDING TIMES AND OVERALL BLOOD LOSS IN IN VIVO RODENT MODELS OF TRAUMA, AND IMPROVED HEALING RESPONSES IN VIVO FOLLOWING INJURY; HOWEVER, THE FIBRIN-TARGETING ANTIBODY FRAGMENTS THAT CONFER THESE ABILITIES TO PLPS ARE THUS FAR PRODUCED IN BACTERIAL EXPRESSION SYSTEMS IN SMALL BATCHES, LIMITING SCALE UP AND TRANSLATIONAL POTENTIAL. THE LONG-TERM GOAL OF THIS PROJECT IS TO DEVELOP LARGE BATCH PRODUCTION TECHNIQUES FOR THESE FIBRIN-SPECIFIC ANTIBODY FRAGMENTS TO FACILITATE THE TRANSLATION OF HEMOSTATIC PLPS FOR USE IN EMERGENCY MEDICINE APPLICATIONS TO AUGMENT CLOTTING AND DECREASE BLOOD LOSS AND ASSOCIATED DEATHS DUE TO EXSANGUINATION. THE OBJECTIVE OF THIS APPLICATION IS TO OPTIMIZE LARGE BATCH PRODUCTION OF FIBRIN-SPECIFIC ANTIBODY FRAGMENTS IN A NICOTIANA BENTHAMIANA PLANT EXPRESSION SYSTEM AND VALIDATE THE EFFICACY OF THE RESULTANT PLPS FOR AUGMENTING CLOTTING. OUR CENTRAL HYPOTHESIS IS THAT PLPS CREATED USING ANTIBODY FRAGMENTS PRODUCED IN THE N. BENTHAMIANA EXPRESSION SYSTEM WILL HAVE COMPARABLE STABILITY AND EFFICACY AS PREVIOUSLY DESIGNED PLPS CREATED USING ANTIBODY FRAGMENTS PRODUCED IN E. COLI, AND THAT THE N. BENTHAMIANA EXPRESSION SYSTEM WILL PROVIDE LARGER ANTIBODY FRAGMENT YIELD AT COMPARABLE STABILITY AND HOMOGENEITY AS THOSE ACHIEVE IN E. COLI EXPRESSION SYSTEMS, THEREBY SUPPORTING MOVING THIS TECHNOLOGY FORWARD INTO FURTHER PRECLINICAL DEVELOPMENT IN LARGE ANIMAL MODELS. THE SPECIFIC AIMS OF THIS PROJECT ARE: 1) OPTIMIZE AND EVALUATE YIELD, STABILITY, AND HOMOGENEITY FOR ANTIBODY FRAGMENTS PRODUCED IN AN N. BENTHAMIANA PLANT EXPRESSION SYSTEM AND 2) DETERMINE FIBRIN-BINDING AND CLOT AUGMENTATION EFFICACY OF THE RESULTANT PLPS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 4/17/24 | ||
| Not listed | $0 | 9/24/22 | ||
| Not listed | $0 | 9/24/22 | ||
| Not listed | $258.5k | 3/5/22 |