Novel analogs of sulfasalazine as system xc− antiporter inhibitors: Insights from the molecular modeling studies

反转运蛋白 化学 同源建模 对接(动物) 药理学 磺胺吡啶 生物化学 生物 医学 病理 护理部 疾病 溃疡性结肠炎
作者
Dhaval Patel,Prashant S. Kharkar,Neha S. Gandhi,Ekjot Kaur,Shilpee Dutt,Mukesh Nandave
出处
期刊:Drug Development Research [Wiley]
卷期号:80 (6): 758-777 被引量:32
标识
DOI:10.1002/ddr.21557
摘要

System xc- (Sxc- ), a cystine-glutamate antiporter, is established as an interesting target for the treatment of several pathologies including epileptic seizures, glioma, neurodegenerative diseases, and multiple sclerosis. Erastin, sorafenib, and sulfasalazine (SSZ) are a few of the established inhibitors of Sxc- . However, its pharmacological inhibition with novel and potent agents is still very much required due to potential issues, for example, potency, bioavailability, and blood-brain barrier (BBB) permeability, with the current lead molecules such as SSZ. Therefore, in this study, we report the synthesis and structure-activity relationships (SAR) of SSZ derivatives along with molecular docking and dynamics simulations using the developed homology model of xCT chain of Sxc- antiporter. The generated homology model attempted to address the limitations of previously reported comparative protein models, thereby increasing the confidence in the computational modeling studies. The main objective of the present study was to derive a suitable lead structure from SSZ eliminating its potential issues for the treatment of glioblastoma multiforme (GBM), a deadly and malignant grade IV astrocytoma. The designed compounds with favorable Sxc- inhibitory activity following in vitro Sxc- inhibition studies, showed moderately potent cytotoxicity in patient-derived human glioblastoma cells, thereby generating potential interest in these compounds. The xCT-ligand model can be further optimized in search of potent lead molecules for novel drug discovery and development studies.
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