Project Grant R41CA257845
- The National Cancer Institute (NCI) awarded a $179,403 Project Grant under the Cancer Treatment Research (CFDA 93.395) program to the University of Nebraska Medical Center (UNMC) to develop and screen novel flupirtine analogue compounds as non-opioid analgesics for treating chemotherapy-induced neuropathic pain (CINP). The 2-year project aims to synthesize and evaluate flupirtine analogues that can effectively relieve CINP while mitigating the liver toxicity concerns associated with the parent...
- This federal Project Grant award from the National Cancer Institute (NCI), under the Cancer Treatment Research program (CFDA 93.395), provides $181,448 to Virginia Commonwealth University (VCU) to research the use of the NLRP3 inflammasome inhibitor dapansutrile for treating chemotherapy-induced peripheral neuropathy (CIPN). The project aims to determine if dapansutrile can alleviate and prevent CIPN caused by paclitaxel and cisplatin chemotherapy in mouse models, including both naive and...
- The National Institute of Neurological Disorders and Stroke (NINDS), under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853), awarded a $818,360 Cooperative Agreement to the University of Southern California (USC) to develop new highly potent and safe Angiotensin AT2 receptor (AT2R) antagonists for the treatment of neuropathic pain. This 4-year project aims to optimize a novel lead series of AT2R antagonists that have demonstrated better potency and...
- This federal Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), part of the Drug Use and Addiction Research Programs (CFDA 93.279), provides $816,554 to The University of Texas M.D. Anderson Cancer Center to develop and validate a mouse model of chemotherapy-induced peripheral neuropathy (CIPN) associated with colorectal cancer and oxaliplatin treatment. The project aims to establish the face, construct, and predictive validity of this refined mouse...
- Regulonix LLC was awarded a $1,258,410 Project Grant from the National Institute of Neurological Disorders and Stroke (NINDS), part of the National Institutes of Health (NIH), to support research under the Extramural Research Programs in the Neurosciences and Neurological Disorders program (CFDA 93.853). Through this one-year award ending August 31, 2022, Regulonix will partner with the University of Arizona to characterize inhibitors of the neuropilin-1 (NRP-1) receptor for potential...
- The National Institute of Neurological Disorders and Stroke (NINDS) awarded a $400,000 Project Grant to Navega Therapeutics, Inc., a San Diego-based biotechnology company, under the Drug Abuse and Addiction Research Programs (CFDA 93.279). The funding will support Navega's research and development efforts to advance novel epigenetic gene therapies targeting the voltage-gated sodium channel NAV1.7 for the treatment of chronic pain. This innovative approach aims to transiently repress NAV1.7...
- This $1,511,970 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 the development of selective GPR34 antagonists for the treatment of neuropathic pain. The award aims to identify CNS-active GPR34 hits that can be further developed into novel GPR34 antagonists as potential drug candidates for neuropathic pain. Key products and services include: 1) Synthesis and testing of novel...
- This $3,892,145 federal Project Grant award from the National Institute of Neurological Disorders and Stroke (NINDS), part of the National Institutes of Health (NIH), is funding research under the NIH Drug Use and Addiction Research Programs (CFDA 93.279) to investigate the role of succinate signaling for pain relief in oral cancer. The primary objective is to determine if inhibiting the succinate receptor SUCNR1 can alleviate oral cancer pain by reducing inflammation and nociception (pain...
- The National Institute of Neurological Disorders and Stroke (NINDS) awarded a $650,079 Project Grant to Northeastern University under the Extramural Research Programs in the Neurosciences and Neurological Disorders (CFDA 93.853) program. The grant supports the development and optimization of novel small-molecule probes targeting the alpha9 nicotinic acetylcholine receptor (α9*-nAChR) subunit, with the goal of exploring its potential for pain management. The 5-year project aims to advance...
- This federal Project Grant award, provided by the National Institute of Neurological Disorders and Stroke under the Drug Use and Addiction Research Programs (CFDA 93.279), supports research by Function Therapeutics Inc. to investigate the use of a new class of small molecule compounds called Parmodulins for the treatment of neuropathic pain. The $499,863 award, granted on September 11, 2025, will fund research to synthesize and test various Parmodulins for their ability to modulate the...
INHIBITION OF CAV?-? INTERACTION WITH ORALLY AVAILABLE SMALL ORGANIC MOLECULES FOR CHRONIC PAIN - ABSTRACT REVISIONS NOTED IN BLUE FONT CHEMOTHERAPY-INDUCED PERIPHERAL NEUROPATHY (CIPN) IS A COMMON (PREVALENCE 30-70%) AND POTENTIALLY DOSE- LIMITING SIDE EFFECT OF MANY CANCER CHEMOTHERAPY DRUG TREATMENT REGIMENS. CLINICALLY, CIPN PRESENTS WITH PAIN THAT IS BURNING, SHOOTING OR ELECTRIC-SHOCK-LIKE. THE INCREASE IN PREVALENCE OF CANCER COUPLED WITH AN INCREASE IN THE CANCER SURVIVAL RATES DUE TO CHEMOTHERAPY REGIMENS IS TRANSFORMING CANCER PAIN INTO A LARGE, UNMET MEDICAL PROBLEM. NEUROTOXIC CHEMOTHERAPEUTIC AGENTS (E.G., ANTIMICROTUBULE AGENTS LIKE PACLITAXEL) MAY CAUSE STRUCTURAL DAMAGE TO PERIPHERAL NERVES (SMALL FIBERS), RESULTING IN ABERRANT SOMATOSENSORY PROCESSING IN THE PERIPHERAL AND/OR CENTRAL NERVOUS SYSTEM. DORSAL ROOT GANGLIA (DRG) SENSORY NEURONS AS WELL AS NEURONAL CELLS IN THE SPINAL CORD ARE THE PREFERENTIAL SITES IN WHICH CHEMOTHERAPY INDUCED NEUROTOXICITY OCCURS. PATHOGENESIS IS COMPLEX BUT INCLUDES ALTERATIONS IN ION CHANNELS. FOR EXAMPLE, THE TAXANE PACLITAXEL (TAXOL) INCREASES N-TYPE (CAV2.2) VOLTAGE-GATED CA2+ CURRENTS IN RAT DORSAL ROOT GANGLION (DRG) NEURONS; THESE NEURONS ARE RESPONSIBLE FOR CONVEYING NOXIOUS SENSORY STIMULI, SUGGESTING THESE CHANNELS ARE IMPORTANT MEDIATORS OF SPECIFIC SENSORY ABNORMALITIES ASSOCIATED WITH CIPN. CAV2.2 CHANNELS ARE CRITICAL DETERMINANTS OF INCREASED NEURONAL EXCITABILITY AND NEUROTRANSMISSION ACCOMPANYING PERSISTENT NEUROPATHIC PAIN. THOUGH CAV2.2 HAS BEEN TARGETED CLINICALLY WITH PRIALT AND GABAPENTIN, BOTH DRUGS ARE ENCUMBERED WITH SERIOUS SIDE EFFECTS. THIS PROPOSAL AIMS TO DEVELOP POTENT, ORALLY AVAILABLE, AND SELECTIVE CAV2.2 CHANNEL ANTAGONISTS, BUILDING ON THE SEMINAL DISCOVERY OF A QUINAZOLINE CAV2.2 ANTAGONIST (IPPQ) DEVELOPED IN THE LABORATORY OF DR. RAJESH KHANNA (UNIVERSITY OF ARIZONA (UA)), AS POTENTIAL CANDIDATES FOR THE MANAGEMENT OF CIPN. IPPQ REPRESENTS A NEW CLASS OF COMPOUNDS TARGETING CAV2.2 VIA A COMPLETELY UNIQUE MECHANISM - THAT OF TARGETING THE CAVA-CAVSS INTERFACE. FOR THIS WORK, WE HAVE PARTNERED WITH REGULONIX, LLC FOR CHARACTERIZING SELECT CAV2.2-TARGETED COMPOUNDS AND THEIR ANALOGS IN IN VITRO AND IN VIVO EFFICACY ASSAYS AS WELL AS EARLY ADME PROFILING. THE WORK PROPOSED HERE IS THE FIRST STEP IN DEVELOPING NON-OPIOID PAIN TREATMENTS FOR CIPN. WE ANTICIPATE SUCCESS AGAINST PACLITAXEL-INDUCED CHRONIC PAIN TO TRANSLATE INTO OTHER CHRONIC PAIN TYPES AS WELL, BUT CIPN PROVIDES FOCUS FOR EARLY STAGE PROOF-OF-CONCEPT. REGULONIX'S SPECIFIC AIMS ARE: (1) DESIGN (DR. MARCEL PATEK, MEDICINAL CHEMISTRY CONSULTANT, FORMER VICE PRESIDENT OF CHEMISTRY AT ICAGEN, INC.) AND SYNTHESIS (DR. WEI WANG, DIRECTOR OF THE DRUG DISCOVERY CENTER, UA OR CROS) AND OPTIMIZATION OF DRUG-LIKE LEAD SERIES (IPPQ) AND ELUCIDATION OF CHANNEL SPECIFICITY AND BIOPHYSICAL PROPERTIES OF SELECT IPPQ ANALOGS TO GAIN MECHANISTIC AND SAFETY INFORMATION AND TO DOCUMENT THE UNIQUE PATHWAY FOR FUNCTION IN RELEVANT NEURONAL CELLS; (2) PROFILE IPPQ ANALOGS FOR THEIR IN VITRO CELLULAR CYTOTOXICITY, PHYSICO-CHEMICAL, EARLY ADME, AND FOR OFF-TARGET EFFECTS ON GPCRS, KINASES, ION CHANNELS AND ALTERNATIVE KNOWN PAIN TARGETS; (3) CHARACTERIZE THE BEST THREE IPPQ ANALOGS FROM AIM 2 FOR PRECLINICAL STUDIES USING A PHENOTYPIC SCREEN FOR MOTOR IMPAIRMENT (ROTAROD ASSAY) AND THEN TEST THE TWO BEST IPPQ ANALOGS IN AN ACUTE PAIN MODEL (PAW INCISION) AND AN AGGRESSIVE CLINICALLY-RELEVANT NEUROPATHIC PAIN MODEL (PACLITAXEL) TO PROVIDE INFORMATION ABOUT ORAL EFFICACY; BEHAVIORAL STUDIES WILL BE REGISTERED AT A PRECLINICAL TRIALS WEBSITE PRIOR TO THE START. AN OPERANT METHOD OF PAIN TESTING WITH RODENTS THAT COMPLEMENTS REFLEXIVE METHODS BY ADDRESSING COGNITIVE AND MOTIVATIONAL PROCESSING WILL ALSO BE USED. AT THE CONCLUSION OF OUR STUDY, WE EXPECT TO HAVE A VALIDATED IPPQ ANALOG AND SEVERAL WORTHY BACKUP COMPOUNDS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($126k) | 10/9/24 | ||
| Not listed | $0 | 5/4/23 | ||
| Not listed | $400.0k | 4/26/21 | ||
| Not listed | $400.0k | 4/26/21 |