Project Grant R41AR080620
- This Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), under the Drug Abuse and Addiction Research Programs (CFDA 93.279), provides $2,505,537 to The Leland Stanford Junior University to develop a focused ultrasound (FUS) device for noninvasive, peripheral nerve blockade to manage acute pain. The goal is to provide an alternative to opioids and current peripheral nerve block techniques, which have significant limitations in acute pain management. The...
- The University of Miami is conducting a research project under a $1,109,446 Cooperative Agreement awarded by the National Institute of Neurological Disorders and Stroke (NINDS), part of the National Institutes of Health (NIH). The project, funded through the Drug Abuse and Addiction Research Programs (CFDA 93.279), aims to develop a novel non-opioid analgesic based on gene therapy targeting the carbonic anhydrase-8 (CA8) protein to treat chronic pain associated with knee osteoarthritis. The...
- This $2,668,301 Project Grant was awarded by the National Institute of Neurological Disorders and Stroke (NINDS), part of the National Institutes of Health (NIH), under the Drug Use and Addiction Research Programs (CFDA 93.279). The grant funds the development of an implantable, biodegradable drug delivery device for localized, long-duration administration of non-opioid pain medications after surgery. The University of Connecticut will synthesize protein-based film materials conjugated with...
- The Department of the Army Medical Command awarded a $5.23 million cooperative agreement to the University of California, San Diego under the Military Medical Research and Development program (CFDA 12.420) to conduct research eliminating post-mastectomy pain and opioids with percutaneous cryoneurolysis. The four-year project beginning May 15, 2022 will investigate using cryoneurolysis, a single-administration, non-opioid and non-addictive technique, to provide multiple months of analgesic...
- This federal Project Grant award of $413,298.00 from the National Institute of Neurological Disorders and Stroke (NINDS), under the Drug Use and Addiction Research Programs (CFDA 93.279), will support the development of a novel transmucosal local anesthetic cocktail (T-LAC) formulated into adhesive wafers for the treatment of subacute intraoral pain (IOP). The project, conducted by Trekka Therapeutics, LLC, in partnership with researchers at the University of Minnesota, aims to establish the...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS) under the Biomedical Research and Research Training program (CFDA 93.859) supports the development of PAIN VITALS, an AI-powered wearable physiological sensor system for continuous and objective monitoring of post-surgical pain. The $349,855 award to Aventusoft L.L.C., a minority-owned small disadvantaged business in Boca Raton, FL, will fund the design, development, and clinical testing of this innovative...
- This Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), part of the National Institutes of Health (NIH), provides $3,473,616 to the University of Connecticut to develop a novel implantable neuromodulation system called "SmartStim" to treat chronic pain. The goal is to create a combined device and drug treatment that can selectively block sensitized nociceptive (pain-sensing) nerve fibers, especially C-fibers, to reverse the underlying neural...
- This 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 a randomized clinical study led by Dr. Subramanian at Rutgers, The State University of New Jersey. The $168,228 award aims to evaluate the efficacy of a novel local anesthetic injection technique, the Temporo-Masseteric Nerve Block (TMNB), in reducing post-surgical pain and improving mouth opening for patients...
- This $1,559,917 Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS) under the Drug Use and Addiction Research Programs (CFDA 93.279) supports research to develop a topical neurokinin-1 receptor (NK1R) antagonist as a non-addictive analgesic treatment for chronic ocular pain. The key objectives are to assess the analgesic efficacy of the NK1R antagonist and determine its effects on the ocular surface-trigeminal ganglion neurosensory pathway. The project is...
- The National Institute of Neurological Disorders and Stroke (NINDS) awarded a $6,522,833 Project Grant to The Leland Stanford Junior University to conduct a mechanistic randomized clinical trial investigating the central and peripheral nervous system mechanisms of pain relief induced by peripheral nerve stimulation (PNS) for the treatment of refractory chronic neuropathic pain. The 3-year study, funded under the NIH HEAL Initiative's CFDA 93.279 Drug Abuse and Addiction Research Programs, aims...
INJECTABLE ICE SLURRY COOLING TECHNOLOGY FOR TREATMENT OF POSTOPERATIVE PAIN - PROJECT SUMMARY TOTAL KNEE ARTHROPLASTY (TKA) IS ONE OF THE MOST COMMONLY PERFORMED ORTHOPEDIC SURGERIES TO RELIEVE JOINT PAIN IN PATIENTS WITH END-STAGE OSTEOARTHRITIS OR RHEUMATIC ARTHRITIS. IN THE UNITED STATES, OVER 700,000 TKA PROCEDURES ARE PERFORMED EACH YEAR. MOST PATIENTS EXPERIENCE SIGNIFICANT PAIN AFTER TKA. TO MANAGE THIS PAIN, PATIENTS ARE COMMONLY PRESCRIBED OPIOIDS, CONTRIBUTING TO A SPIRALING OPIOID EPIDEMIC. THE MISUSE AND ADDICTION TO OPIOIDS IS A NATIONAL PUBLIC HEALTH CRISIS WITH AN ESTIMATED ECONOMIC BURDEN OF $78.5 BILLION PER YEAR. AS OPIOID ADDICTION HAS BECOME A NATIONAL EMERGENCY, NOVEL NON-OPIOID AND NON-PHARMACOLOGICAL TREATMENTS FOR POSTOPERATIVE PAIN HAVE BECOME A TOP SCIENTIFIC PRIORITY. THERE IS AN URGENT NEED FOR A LONG- LASTING, DRUG-FREE MEANS OF RELIEVING POST-TKA PAIN-WHICH IS THE OVERALL GOAL OF THIS PROJECT. CRYONEUROLYSIS IS AN OPIOID-SPARING, PERIOPERATIVE INTERVENTION USED TO REDUCE POSTOPERATIVE PAIN. CURRENT CRYONEUROLYSIS METHODS APPLY VERY LOW-TEMPERATURE CRYOPROBES TO FREEZE PERIPHERAL NERVES, RESULTING IN REVERSIBLE AND LONG- LASTING PAIN RELIEF. HOWEVER, DUE TO THE USE OF EXTREMELY COLD TEMPERATURES (-60OC AND BELOW) IN DIRECT CONTACT WITH A NERVE AND SURROUNDING TISSUES, THESE METHODS ARE NOT NERVE-SELECTIVE NOR EASY TO ADMINISTER. THEY ALSO ARE NOT INJECTABLE, MAKING THE TREATMENTS TIME-CONSUMING AND CHALLENGING TO ADOPT IN CLINIC. WE AIM TO DEVELOP A NOVEL, INJECTABLE METHOD OF CRYONEUROLYSIS TO REDUCE POSTOPERATIVE PAIN FROM TKA, SIGNIFICANTLY REDUCING OR ELIMINATING THE USE OF OPIOIDS. WE INVENTED AND DEVELOPED A NOVEL INJECTABLE AND NERVE-SELECTIVE METHOD OF CRYONEUROLYSIS THAT OVERCOMES THE LIMITATIONS OF CURRENTLY AVAILABLE TREATMENTS. OUR PROPRIETARY TECHNOLOGY EMPLOYS A FORMULATED, BIOCOMPATIBLE ICE-SLURRY CONSISTING OF SMALL ICE PARTICLES SUSPENDED IN SOLUTION THAT CAN BE INJECTED AROUND SENSORY PERIPHERAL NERVES THAT TRANSMIT PAIN. WE HAVE SHOWN IN A RAT MODEL THAT INJECTION OF OUR FORMULATED ICE- SLURRY EXTRACTS ENOUGH HEAT TO REVERSIBLY DISRUPT NERVE STRUCTURE AND REDUCE PAIN SENSATION FOR UP TO 8 WEEKS WITHOUT DAMAGE TO SURROUNDING TISSUE. THE ADVANTAGES OF THIS INNOVATIVE TECHNOLOGY STEM FROM THE USE OF AN ICE-SLURRY MIXTURE CONTAINING INJECTABLE ICE PARTICLES, WHICH UPON MELTING EXTRACTS LARGE AMOUNTS OF TISSUE HEAT. THE TEMPERATURE ATTAINED WITH THE FORMULATED ICE-SLURRY IS COLD ENOUGH TO CAUSE CRYONEUROLYSIS BUT IS NOT DAMAGING TO SURROUNDING TISSUES. WE PROPOSE TO DEVELOP A COMMERCIAL PROTOTYPE DEVICE THAT CAN PRODUCE PROPRIETARY ON-DEMAND, INJECTABLE, BIOCOMPATIBLE, AND STERILE ICE-SLURRY "COOLANT" AT THE POINT-OF-CARE. PROPOSED PHASE I WILL ESTABLISH THE TECHNICAL MERIT, FEASIBILITY AND PERFORMANCE OF THIS DEVICE. WE WILL ESTABLISH THAT THE DESIGN FOR CUSTOM- MADE SYRINGES CAN GENERATE INJECTABLE ICE-SLURRY AND WILL TEST PERFORMANCE IN REPRODUCIBLY EXTRACTING HEAT. NEXT, WE WILL TEST BOTH THE FEASIBILITY OF CONSISTENT INJECTION THROUGH A STANDARD CLINICAL NEEDLE AND IN-VIVO TISSUE COOLING USING THE RAT SCIATIC NERVE MODEL. THE RESULTS OF THESE STUDIES WILL LAY GROUNDWORK FOR THE DEVELOPMENT OF A NOVEL, LONG-LASTING AND NON-OPIOID TREATMENT FOR PATIENTS WITH POST-TKA PAIN. IF SUCCESSFUL, THIS NEW PAIN MANAGEMENT THERAPY WILL DELIVER ON THE IMPORTANT AND URGENT GOAL OF REDUCING OPIOID USE.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 6/21/24 | ||
| Not listed | $252.1k | 9/27/22 | ||
| Not listed | $252.1k | 9/27/22 |