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Neuroscience|February 26, 2022
TrkB Receptor Agonist 7,8 Dihydroxyflavone is Protective Against the Inner Retinal Deficits Induced by Experimental GlaucomaVivek Gupta, Nitin Chitranshi, Veer Gupta, et al.Neural Regeneration Research|June 7, 2023
Retinal thickness and vascular parameters using optical coherence tomography in Alzheimer's disease: a meta-analysisSamran Sheriff, Ting Shen, Sandra Abdal, et al.Molecular Neurobiology|January 11, 2022
Retinoid X Receptor: Cellular and Biochemical Roles of Nuclear Receptor with a Focus on Neuropathological InvolvementSamridhi Sharma, Ting Shen, Nitin Chitranshi, et al.Aging and Disease|August 9, 2020
Cell Cycle Deficits in Neurodegenerative Disorders: Uncovering Molecular Mechanisms to Drive Innovative Therapeutic DevelopmentChitra Joseph, Abubakar Siddiq Mangani, Veer Gupta, et al.Journal of Translational Medicine|July 11, 2020
Evolving geographic diversity in SARS-CoV2 and in silico analysis of replicating enzyme 3CL<sup>pro</sup> targeting repurposed drug candidatesNitin Chitranshi, Vivek K Gupta, Rashi Rajput, et al.Cellular and Molecular Life Sciences : CMLS|March 4, 2022
Neuroserpin, a crucial regulator for axogenesis, synaptic modelling and cell-cell interactions in the pathophysiology of neurological diseaseAngela Godinez, Rashi Rajput, Nitin Chitranshi, et al.Molecular Neurobiology|August 5, 2023
Anti-inflammatory Effects of Siponimod in a Mouse Model of Excitotoxicity-Induced Retinal InjuryDevaraj Basavarajappa, Vivek Gupta, Nitin Chitranshi, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|October 21, 2018
Loss of Shp2 Rescues BDNF/TrkB Signaling and Contributes to Improved Retinal Ganglion Cell NeuroprotectionNitin Chitranshi, Yogita Dheer, Mehdi Mirzaei, et al.Neuropeptides|December 30, 2025
Neuropeptide Y at the crossroads of neurodegeneration: Mechanistic insights and emerging therapeutic strategiesViswanthram Palanivel, Akanksha Salkar, Avinash Shenoy, et al.Neural Regeneration Research|May 13, 2020
Amyloid-beta peptide neurotoxicity in human neuronal cells is associated with modulation of insulin-like growth factor transport, lysosomal machinery and extracellular matrix receptor interactionsLiting Deng, Paul A Haynes, Yunqi Wu, et al.Pageof 6