Project Grant R44DE031195
- This National Science Foundation (NSF) Cooperative Agreement award, provided through the NSF Technology, Innovation, and Partnerships (CFDA #47.084) program, funds the development of a novel, fully implantable craniofacial distraction system by Ostiio LLC, a medical device company based in Philadelphia, PA. The $1,000,000 award aims to produce a magnetic, subcutaneous distraction device capable of gradually correcting skeletal abnormalities affecting craniomaxillofacial functions such as...
- Ostiio LLC received a $256,000 Project Grant award from the National Science Foundation on June 15, 2021 to support research and development activities concluding on May 31, 2022. The grant was awarded under the NSF's Engineering program (CFDA #47.041), which aims to improve quality of life and economic strength through engineering innovation and excellence. Specifically, the funding will support Ostiio's efforts to miniaturize a magnetic craniofacial distraction system. The company is located...
- This $672,394.58 project grant from the National Institutes of Health's National Institute of Dental and Craniofacial Research Oral Diseases and Disorders Research program (CFDA 93.121) supports the development of a crosslinkable tissue particle implant for regenerating craniofacial bone. Led by Leefa Biotech LLC, the one-year award aims to demonstrate improved bone regeneration in critical-size cranial bone defects using the implant compared to the current standard of care. If successful, the...
- 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), will support research to establish new tools and protocols for optimizing the design of airway stents used to treat tracheobronchomalacia, a rare disease involving airway collapse. The $445,000 award to The Children's Hospital Corporation, doing business as Boston Children's...
- This $453,750 Project Grant award from the National Institute of Dental and Craniofacial Research (NIDCR), under the Oral Diseases and Disorders Research program (CFDA 93.121), will support research to investigate the genetic and cellular mechanisms underlying craniosynostosis, a common craniofacial birth defect. The research team at Boston University Medical Campus will use a zebrafish model to study the role of the ERF transcription factor in normal skull development and how its reduction...
- The National Science Foundation (NSF) awarded a $295,000 SBIR Phase I Project Grant under the Technology, Innovation, and Partnerships (CFDA 47.084) program to Biodynamik, a small business located in Lake Forest, CA. The grant supports the development and testing of a novel implantable system that leverages distraction osteogenesis as a treatment for diabetic foot ulcers (DFUs). The project aims to design and develop a low-profile, transverse tibial transport device with an active mechanical...
- The National Institute of Dental and Craniofacial Research (NIDCR), part of the U.S. Department of Health and Human Services, awarded a $305,320 Project Grant to Mobius Biotech LLC on July 7, 2025 under the Oral Diseases and Disorders Research federal grant program (CFDA 93.121). The grant funds the development and evaluation of a novel 3D printed polycaprolactone (PCL) nasal graft, the Resorb3D Spreader Graft (RSG), for complex nasal reconstruction. The RSG is designed to mimic the mechanical...
- The National Institute of Child Health and Human Development (NICHD) awarded a $295,907 Project Grant (CFDA 93.865 - Child Health and Human Development Extramural Research) to Liberating Technologies Inc. (LTI) to develop a prototype "Unintrusive Pediatric Logging Orthosis Analytic Device (UPLOAD)." The goal is to create a commercially viable, unobtrusive remote monitoring system for pediatric orthotics that can improve compliance tracking. Key features include long battery life, low...
- This Project Grant award of $447,009.00 from the National Institute of Dental and Craniofacial Research (NIDCR), under the Oral Diseases and Disorders Research program (CFDA 93.121), is focused on developing a biomaterial-based delivery platform to facilitate the transfer of exogenous mitochondria to osteoprogenitor cells. The goal is to promote bone regeneration in craniofacial bone defects resulting from trauma or congenital deformities. The research aims to evaluate the effect of...
- This STTR Phase I Project Grant, awarded by the National Science Foundation (CFDA 47.084 - NSF Technology, Innovation, and Partnerships program), provides $305,000 to Magsorbeo Biomedical Corp to develop a bioabsorbable magnesium alloy for maxillofacial fixation implants. The goal is to create a magnesium-based implant that can temporarily support healing, then gradually be absorbed by the body, eliminating the need for secondary removal surgeries. This innovation aims to improve healthcare...
A SMART, FULLY SUBCUTANEOUS DISTRACTION SYSTEM TO IMPROVE OUTCOMES IN PATIENTS WITH CONGENITAL OR ACQUIRED CRANIOFACIAL DIFFERENCES - SUMMARY / ABSTRACT EACH YEAR, ~200,000 NEWBORNS WORLDWIDE, 80-85% OF WHOM REQUIRE SURGICAL INTERVENTION, ARE AFFLICTED WITH CONGENITAL CONDITIONS THAT CAUSE IMPAIRED GROWTH OF THE SKULL OR MANDIBLE, LEADING TO ABNORMALITIES THAT AFFECT BREATHING, HEARING, SPEECH, VISUAL FUNCTION, NEUROLOGIC DEVELOPMENT, AND MASTICATION. UNFORTUNATELY, CURRENT SURGICAL TREATMENTS, INCLUDING ENDOSCOPIC SURGERY, OPEN RECONSTRUCTION, AND DISTRACTION OSTEOGENESIS (DO), SUFFER INHERENT DRAWBACKS, IMPACTING OUTCOMES. A BETTER SOLUTION IS NEEDED FOR THIS VULNERABLE PATIENT POPULATION. DO IS A WIDELY RECOGNIZED TREATMENT MODALITY THAT HARNESSES THE BODY'S NATURAL ABILITY TO REGENERATE BONE IN ORDER TO CORRECT SKELETAL DEFICIENCIES AND DEFECTS. WHILE STILL EMERGING FOR CRANIOMAXILLOFACIAL (CMF) APPLICATIONS, SURGEONS HAVE SHOWN THE UTILITY OF DO FOR RESTORING FUNCTIONAL DISCREPANCIES IN PATIENTS WITH CRANIOFACIAL DIFFERENCES. THE TECHNIQUE OF DO INVOLVES SURGICAL PLACEMENT OF ONE OR MORE DISTRACTORS, WHICH ARE DEVICES USED TO SLOWLY SEPARATE TWO OPPOSING BONY FRAGMENTS AT AN OSTEOTOMY SITE, TO GRADUALLY LENGTHEN AND RESHAPE THE AFFECTED BONE AND STIMULATE NEW BONE GROWTH. HOWEVER, DO IS NOT WITHOUT SHORTCOMINGS. FIRST, ALL CURRENT DISTRACTORS HAVE AN EXTERNAL COMPONENT FOR MANUAL EXPANSION. THE EXTERNAL COMPONENT SIGNIFICANTLY INCREASES PATIENT RISK FOR COMPLICATIONS SUCH AS INFECTION (35%), DEVICE DISLODGEMENT (3.0%), INCREASED ANALGESIC USE, AND SCARRING (15.6%). SECOND, SINCE THE BURDENSOME RESPONSIBILITY FOR MANUAL EXPANSION LIES WITH THE CAREGIVER, TREATMENT NONCOMPLIANCE (4.7%) IS A SERIOUS ISSUE, INTRODUCING VULNERABILITIES RANGING FROM INCONSISTENT DEVICE EXPANSION TO COMPLETE TREATMENT FAILURE. THEREFORE, DO NECESSITATES EXTENSIVE PHYSICIAN CLINIC TIME AND PATIENT RADIATION EXPOSURE TO MONITOR THERAPEUTIC PROGRESS AND THUS HAS NOT BEEN WIDELY ADOPTED IN THE CMF SKELETON DESPITE RECOGNITION OF POTENTIAL ADVANTAGES OVER ENDOSCOPIC SURGERY (NARROWER INDICATION FOR USE) AND OPEN RECONSTRUCTION (MORE INVASIVE, LONGER ANESTHESIA TIME, HIGHER BLOOD TRANSFUSION RATE, LONGER HOSPITAL STAY). THE OSTIIO DISTRACTION SYSTEM ADDRESSES MANY OF THE ISSUES ASSOCIATED WITH DO TREATMENT AS THE FIRST FULLY SUBCUTANEOUS, PROGRAMMABLE DO SYSTEM FOR THE CMF SKELETON. AT A HIGH LEVEL, THE OSTIIO DISTRACTION SYSTEM LEVERAGES MAGNETIC COUPLING TO TRANSFER TORQUE FROM THE HAND-HELD DRIVER (HHD) TO THE IMPLANT, THEREBY EXPANDING THE IMPLANT IN A CONTACTLESS FASHION. THIS NOVEL APPROACH WILL MARKEDLY REDUCE INFECTION, SCARRING, AND MANIPULATION NONCOMPLIANCE. IN ADDITION, BECAUSE THE DESIGN UNIQUELY PERMITS WIRELESS COMMUNICATION BETWEEN THE IMPLANT AND HHD, IT WILL ENABLE PHYSICIANS TO BETTER CONTROL AND MONITOR TREATMENT PROGRESS. THIS PHASE II PROPOSAL AIMS TO A) ACHIEVE DESIGN FREEZE OF THE INTEGRATED OSTIIO DISTRACTION SYSTEM, INCORPORATING DESIGN IMPROVEMENTS TO ENSURE DEVICE BIOCOMPATIBILITY AND FUNCTIONALITY THROUGHOUT ACTIVE DISTRACTION, AND B) DEMONSTRATE THE SYSTEM CAN BE USED SAFELY AND EFFECTIVELY TO PERFORM A COMPLETE DISTRACTION PROTOCOL IN VIVO IN STANDARD ANIMAL MODEL. SUCCESSFUL DEMONSTRATION OF THIS OUTCOME WILL SATISFY KEY VALIDATION PERFORMANCE TESTING REQUIREMENTS FOR FDA SUBMISSION AND 510(K) CLEARANCE AND OPEN A PATH TO WIDESPREAD CLINICAL ADOPTION.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $850.0k | 7/25/24 | ||
| Not listed | $892.5k | 9/14/23 |