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Natural product-based screening led to the discovery of a novel PXR agonist with anti-cholestasis activity

Dong Huang1, Ying-yuan Zhao1, Rui-min Wang1, Wei Li1, Fang-yu Yuan1, Xue-long Yan1, Xiao Yang1, Gui-hua Tang1, Sheng Yin1, Hui-chang Bi1,2
1 Guangdong Provincial Key Laboratory of New Drug Design and Evaluation, School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China
2 NMPA Key Laboratory for Research and Evaluation of Drug Metabolism, School of Pharmaceutical Sciences, Southern Medical University, Guangzhou 510515, China
Correspondence to: Sheng Yin: yinsh2@mail.sysu.edu.cn, Hui-chang Bi: bihchang@mail.sysu.edu.cn,
DOI: 10.1038/s41401-021-00793-3
Received: 1 July 2021
Accepted: 11 October 2021
Advance online: 20 December 2021

Abstract

Cholestasis is a major cause of a series of bile flow malfunction-related liver diseases. Pregnane X receptor (PXR) is a key regulator in endo- and xeno-biotics metabolism, which has been considered as a promising therapeutic target for cholestasis. In this study we conducted human PXR (hPXR) agonistic screening using dual-luciferase reporter gene assays, which led to discovering a series of potent hPXR agonists from a small Euphorbiaceae diterpenoid library, containing 35 structurally diverse diterpenoids with eight different skeleton types. The most active compound 6, a lathyrane diterpenoid (5/11/3 ring system), dose-dependently activated hPXR with a high selectivity, and significantly upregulated the expression of hPXR downstream genes CYP3A4 and UGT1A1. In LCA-induced cholestasis mouse model, administration of compound 6 (50 mg· kg−1. d−1, ip) for 7 days significantly suppressed liver necrosis and decreased serum levels of AST, ALT, Tbili, ALP, and TBA, ameliorating LCA-induced cholestatic liver injury. We further revealed that compound 6 exerted its anti-cholestatic efficacy via activation of PXR pathway, accelerating the detoxification of toxic BAs and promoting liver regeneration. These results suggest that lathyrane diterpenoids may serve as a promising scaffold for future development of anti-cholestasis drugs.
Keywords: cholestasis; pregnane X receptor; PXR agonist; Euphorbiaceae; lathyrane diterpenoid; anti-cholestasis drugs

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