Sumit Jamwal

Affiliations: 
Yale University School of Medicine, New Haven, CT 
Area:
Neuropharmacology
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"Sumit Jamwal"
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Publications

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Jamwal S, Blackburn JK, Elsworth JD. (2023) Age-associated sex difference in the expression of mitochondria-based redox sensitive proteins and effect of pioglitazone in nonhuman primate brain. Biology of Sex Differences. 14: 65
Upadhayay S, Yedke NG, Rahi V, et al. (2023) An Overview of the Pathophysiological Mechanisms of 3-Nitropropionic Acid (3-NPA) as a Neurotoxin in a Huntington's Disease Model and Its Relevance to Drug Discovery and Development. Neurochemical Research
Jamwal S, Blackburn JK, Elsworth JD. (2022) Expression of PON2 isoforms varies among brain regions in male and female African green monkeys. Free Radical Biology & Medicine. 178: 215-218
Blackburn JK, Jamwal S, Wang W, et al. (2021) Pioglitazone transiently stimulates paraoxonase-2 expression in male nonhuman primate brain: Implications for sex-specific therapeutics in neurodegenerative disorders. Neurochemistry International. 152: 105222
Jamwal S, Blackburn JK, Elsworth JD. (2021) Sex-based disparity in paraoxonase-2 expression in the brains of African green monkeys. Free Radical Biology & Medicine
Kumar A, Behl T, Jamwal S, et al. (2020) Exploring the molecular approach of COX and LOX in Alzheimer's and Parkinson's disorder. Molecular Biology Reports
Jamwal S, Blackburn J, Elsworth JD. (2020) PPARγ/PGC1α signaling as a potential therapeutic target for mitochondrial biogenesis in neurodegenerative disorders. Pharmacology & Therapeutics. 107705
Jamwal S, Elsworth JD, Rahi V, et al. (2020) Gene Therapy and immunotherapy as promising strategies to combat Huntington's Disease associated neurodegeneration: Emphasis on recent updates and future perspectives. Expert Review of Neurotherapeutics
Jamwal S, Gautam A, Elsworth J, et al. (2020) An updated insight into the molecular pathogenesis, secondary complications and potential therapeutics of COVID-19 pandemic. Life Sciences. 118105
Jamwal S, Kumar P. (2018) Insight into the emerging role of striatal neurotransmitters in the pathophysiology of Parkinson's disease and Huntington's disease: A review. Current Neuropharmacology
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