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Chemical and Pharmacologic Phenomena Commons™
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Articles 1 - 3 of 3
Full-Text Articles in Chemical and Pharmacologic Phenomena
Computational Insights Into The Structural Basis For Reduced Hepatotoxicity Of Novel Nonopioid Analgesics, Claire Coderch, Hernan A. Bazán, Nicolas G. Bazan, Bhattacharjee Surjyadipta, Julio Alvarez-Builla, Beatriz De Pascual-Teresa
Computational Insights Into The Structural Basis For Reduced Hepatotoxicity Of Novel Nonopioid Analgesics, Claire Coderch, Hernan A. Bazán, Nicolas G. Bazan, Bhattacharjee Surjyadipta, Julio Alvarez-Builla, Beatriz De Pascual-Teresa
School of Graduate Studies Faculty Publications
Acetaminophen (ApAP) toxicity arises from the reactive intermediate N-acetyl-p-benzoquinone imine (NAPQI), a degradation product known to cause significant liver damage and kidney injury. This toxicity is a major concern associated with the widespread use of ApAP, a commonly used nonsteroidal anti-inflammatory drug. To address this important issue, a series of novel nonopioid analgesic candidates with reduced toxicity have been recently reported. However, the molecular and atomic-level mechanisms underlying their decreased toxicity remain largely unexplored. In this study, computational analyses is performed to investigate the dynamic behavior, physicochemical properties, and ligand-receptor interactions of these new chemical entities (NCEs). The findings provide …
Capsaicin Is A Negative Allosteric Modulator Of The 5-Ht3 Receptor, Eslam El Nebrisi, Tatiana Prytkova, Dietrich Ernst Lorke, Luke Howarth, Asma Hassan Alzaabi, Keun-Hang Susan Yang, Frank Christopher Howarth, Murat Oz
Capsaicin Is A Negative Allosteric Modulator Of The 5-Ht3 Receptor, Eslam El Nebrisi, Tatiana Prytkova, Dietrich Ernst Lorke, Luke Howarth, Asma Hassan Alzaabi, Keun-Hang Susan Yang, Frank Christopher Howarth, Murat Oz
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
In this study, effects of capsaicin, an active ingredient of the capsicum plant, were investigated on human 5-hydroxytryptamine type 3 (5-HT3) receptors. Capsaicin reversibly inhibited serotonin (5-HT)-induced currents recorded by two-electrode voltage clamp method in Xenopus oocytes. The inhibition was time- and concentration-dependent with an IC50 = 62 μM. The effect of capsaicin was not altered in the presence of capsazepine, and by intracellular BAPTA injections or trans-membrane potential changes. In radio-ligand binding studies, capsaicin did not change the specific binding of the 5-HT3 antagonist [3H]GR65630, indicating that it is a noncompetitive inhibitor of …
Molecular Determinants And Interaction Data Of Cyclic Peptide Inhibitor With The Extracellular Domain Of Trkb Receptor, Nitin Chitranshi, Vivek Gupta, Yogita Dheer, Veer Gupta, Roshana Vander Wall, Stuart Graham
Molecular Determinants And Interaction Data Of Cyclic Peptide Inhibitor With The Extracellular Domain Of Trkb Receptor, Nitin Chitranshi, Vivek Gupta, Yogita Dheer, Veer Gupta, Roshana Vander Wall, Stuart Graham
Research outputs 2014 to 2021
TrkB is a high affinity receptor for the brain derived neurotrophic factor (BDNF) and its phosphorylation stimulates activation of several intracellular signalling pathways linked to cellular growth, differentiation and maintenance. Identification of various activators and inhibitors of the TrkB receptor and greater understanding their binding mechanisms is critical to elucidate the biochemical and pharmacological pathways and analyse various protein crystallization studies. The data presented here is related to the research article entitled "Brain Derived neurotrophic factor is involved in the regulation of glycogen synthase kinase 3β (GSK3β) signalling" [1]. Cyclotraxin B (CTXB) is a disulphide bridge linked cyclic peptide molecule …