Shyam S. Sharma, PhD

Affiliations: 
1999- Department of Pharmacology and Toxicology National Institute of Pharmaceutical Education and Research, Mohali 
Area:
Neuropharmacology
Website:
www.niper.ac.in
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"Shyam Sharma"
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Publications

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Adhya P, Vaidya B, Sharma SS. (2023) BTD: A TRPC5 activatorameliorates mechanical allodynia in diabetic peripheral neuropathic rats by modulating TRPC5-CAMKII-ERK pathway. Neurochemistry International. 105609
Adhya P, Sharma SS. (2023) Transient receptor potential canonical 5 (TRPC5) channels activator, BTD [N-{3-(adamantan-2-yloxy)-propyl}-3-(6-methyl-1,1-dioxo-2H-1λ6,2,4-benzothiadiazin-3-yl)-propanamide)] ameliorates diabetic cardiac autonomic neuropathy in rats. Current Neurovascular Research
Kaundal RK, Datusalia AK, Sharma SS. (2021) Posttranscriptional regulation of Nrf2 through miRNAs and their role in Alzheimer's disease. Pharmacological Research. 175: 106018
Thapak P, Bishnoi M, Sharma SS. (2020) Pharmacological inhibition of Transient Receptor Potential Melastatin 2 (TRPM2) Channels Attenuates Diabetes-induced Cognitive Deficits in Rats: A Mechanistic Study. Current Neurovascular Research
Resham K, Khare P, Bishnoi M, et al. (2020) Neuroprotective effects of isoquercitrin in diabetic neuropathy via Wnt/β-catenin signaling pathway inhibition. Biofactors (Oxford, England)
Resham K, Sharma SS. (2019) Pharmacological interventions targeting Wnt/β-catenin signaling pathway attenuate paclitaxel-induced peripheral neuropathy. European Journal of Pharmacology. 172714
Nankar SA, Bulani Y, Sharma SS, et al. (2019) APOE-Derived Peptides Attenuated Diabetes-Induced Oxidative Stress and Inflammation. Protein and Peptide Letters
Adhya P, Sharma SS. (2019) Redox TRPs in diabetes and diabetic complications: mechanisms and pharmacological modulation. Pharmacological Research. 104271
Resham K, Sharma SS. (2019) Pharmacological Inhibition of Porcupine, Disheveled and β-catenin in Wnt Signaling Pathway Ameliorates Diabetic Peripheral Neuropathy in Rats. The Journal of Pain : Official Journal of the American Pain Society
Datusalia AK, Agarwal P, Singh JN, et al. (2018) Hyper-insulinemia increases the glutamate-excitotoxicity in cortical neurons: A mechanistic study. European Journal of Pharmacology. 833: 524-530
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