Funded Projects
Explore our currently funded projects. You may search with all three fields, then focus your results by applying any of the dropdown filters. After customizing your search, you may download results and even save your specific search for later.
Project # | Project Title | Research Focus Area | Research Program | Administering IC | Institution(s) | Investigator(s) | Location(s) Sort descending | Year Awarded |
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1R34DA050341-01
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4/6 Planning for the HEALthy Early Development Study | Enhanced Outcomes for Infants and Children Exposed to Opioids | HEALthy Brain and Child Development Study (HBCD) | NIDA | UNIVERSITY OF CALIFORNIA, SAN DIEGO | CHAMBERS, CHRISTINA | La Jolla, CA | 2019 |
NOFO Title: HEAL Initiative: HEALthy Brain and Child Development Study (HEALthy BCD) (Collaborative R34 Clinical Trial Not Allowed)
NOFO Number: RFA-DA-19-029 Summary: The Planning for the HEALthy Early Development Study will contribute to the design and recommended protocol for a future large-scale, multi-site research study to prospectively examine human brain, cognitive, behavioral, social, and emotional development of children beginning prenatally through ages 9–10 and to determine the impact of maternal pre- and postnatal substance use on short- and long-term development of children. The planning study will link investigators across 6 research sites who have complementary experience and expertise in the areas that are essential to designing the study. Planning activities will be accomplished using a coordinated set of 10 working groups. By the end of the planning phase, the 6 consortium sites will have produced and tested a recommended protocol for the future multi-site study and will have established feasibility of carrying out the study protocol at each of the 6 linked sites. |
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1R01DA057120-01
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Characterization, Optimization, and Development of Dual mGlu2/3 Positive Allosteric Modulators for Opioid Use Disorder | Novel Therapeutic Options for Opioid Use Disorder and Overdose | Focusing Medication Development to Prevent and Treat Opioid Use Disorder and Overdose | NIDA | Sanford Burnham Prebys Medical Discovery Institute | COSFORD, NICHOLAS DAVID; VELICELEBI, GONUL | La Jolla, CA | 2022 |
NOFO Title: Strategic Alliances for Medications Development to Treat Substance Use Disorders (R01Clinical Trial Optional)
NOFO Number: PAR-19-318 Summary: Given recent increases in co-use of opioids and methamphetamine, there is a dire need for novel treatment strategies that prevent relapse to drug use in both opioid use disorder (OUD) and methamphetamine use disorder (MUD). The localization of certain receptors for the neurotransmitter glutamate—metabotropic glutamate receptor subtypes 2 and 3 (mGlu2/3)—and the mechanism through which they transmit signals, strongly suggest that activation of both of these receptors will effectively treat multiple symptoms that contribute to relapse, such as responsiveness to drug cues, physical withdrawal symptoms, neuroinflammation, and sleep disturbances. This project seeks to evaluate molecules that can activate mGlu2/3 receptors without binding to the same site as glutamate (i.e., positive allosteric modulators) as a novel pharmacological treatment for preventing relapse to OUD. The research also will examine the potential of such modulators for treating MUD. |
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1R43NS120410-01A1
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Optimization of a Gene Therapy for Chronic Pain in Human DRGs | Cross-Cutting Research | Small Business Programs | NINDS | NAVEGA THERAPEUTICS, INC. | MORENO, ANA MARIA (contact); ALEMAN GUILLEN, FERNANDO | La Jolla, CA | 2021 |
NOFO Title: HEAL INITIATIVE: Development of Therapies and Technologies Directed at Enhanced Pain Management (R43/R44 - Clinical Trial Not Allowed)
NOFO Number: NS-20-011 Summary: To avoid the reliance on opioids for treatment of pain, researchers are investigating alternative approaches to disrupt the transmission of pain signals by specialized neurons in the body, such as dorsal root ganglion neurons in the spinal cord. Molecules called voltage-gated sodium channels that are located in the membranes of dorsal root ganglion neurons are essential for transmission of the pain signals. People carrying a specific variant of these channels, NaV1.7, are insensitive to pain; therefore, strategies to block this particular channel might help in the development of non-addictive pain treatment approaches. Navega Therapeutics is developing an innovative gene therapy that specifically targets NaV1.7. Using studies in human cell lines, they will identify the best designs to then test this gene therapy approach in human dorsal root ganglion neurons. |
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1U24DA055325-01
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The Healthy Brain and Child Development National Consortium Administrative Core | Enhanced Outcomes for Infants and Children Exposed to Opioids | HEALthy Brain and Child Development Study (HBCD) | NIDA | UNIVERSITY OF CALIFORNIA, SAN DIEGO | CHAMBERS, CHRISTINA (contact); NELSON, CHARLES ALEXANDER | La Jolla, CA | 2021 |
NOFO Title: HEAL Initiative: HEALthy Brain and Child Development Consortium Administrative Core (U24 - Clinical Trial Not Allowed)
NOFO Number: RFA-DA-21-022 Summary: The HEALthy Brain and Child Development National Consortium (HBCD-NC) Administrative Core (HCAC) will coordinate efforts across all sites in the HBCD-NC consortium to ensure that the consortium meets its primary objective to establish a normative model of developmental trajectories over the first 10 years of life. The HBCD-NC will collect neural, behavioral, physiological, and psychological measures, as well as biospecimens, to characterize neurodevelopmental trajectories. The HCAC will oversee study design and monitor the progress of each site’s ability to carry out a common research protocol and will assemble and distribute a comprehensive research dataset to the scientific community. This administrative core is located at the University of California, San Diego. |
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1R43HD112219-01A1
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Targeted Temperature Modulation with Smart Radiometric Monitoring for Effective and Long-Lasting Opioid-Free Pelvic Pain Relief: A Novel Low-Cost, Portable, Tampon-Sized Thermal Transfer Device | Cross-Cutting Research | Small Business Programs | NICHD | H3PELVIC THERAPY SYSTEMS, INC. | LYON, ZACHARY W | Lewisville, NC | 2023 |
NOFO Title: HEAL INITIATIVE: Development of Therapies and Technologies Directed at Enhanced Pain Management (R43/R44 Clinical Trial Not Allowed)
NOFO Number: RFA-NS-23-006 Summary: Pelvic pain (PP) includes more than 20 different painful and debilitating conditions, such as urinary tract infections, menstrual cramps, endometriosis, overactive bladder, and interstitial cystitis, and affects millions of people. Globally, pelvic pain affects 1 in 5 women and 1 in 12 men. This project will develop an instrument to monitor and treat pain-associated temperature changes in the pelvic region to reduce chronic pelvic pain. This novel system is intended to be used at home with personalized settings. |