Design and Structure–Activity Relationships of Isothiocyanates as Potent and Selective N‑Acylethanolamine-Hydrolyzing Acid Amidase Inhibitors
收藏Figshare2021-04-26 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Design_and_Structure_Activity_Relationships_of_Isothiocyanates_as_Potent_and_Selective_i_N_i_Acylethanolamine-Hydrolyzing_Acid_Amidase_Inhibitors/14488956
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N-Acylethanolamines are signaling lipid molecules implicated in pathophysiological conditions associated with inflammation and pain. N-Acylethanolamine acid amidase (NAAA) favorably hydrolyzes lipid palmitoylethanolamide, which plays a key role in the regulation of inflammatory and pain processes. The synthesis and structure-activity relationship studies encompassing the isothiocyanate pharmacophore have produced potent low nanomolar inhibitors for hNAAA, while exhibiting high selectivity (>100-fold) against other serine hydrolases and cysteine peptidases. We have followed a target-based structure–activity relationship approach, supported by computational methods and known cocrystals of hNAAA. We have identified systemically active inhibitors with good plasma stability (t1/2 > 2 h) and microsomal stability (t1/2 ∼ 15–30 min) as pharmacological tools to investigate the role of NAAA in inflammation, pain, and drug addiction.
创建时间:
2021-04-26



