霉酚酸酯
霉酚酸
毒性
化学
体内
葡萄糖醛酸
药理学
结肠炎
生物化学
医学
免疫学
生物
新陈代谢
内科学
生物技术
移植
有机化学
作者
Lijuan Xia,Lei Wan,Ang Gao,Yongxin Yu,Shiying Zhou,Qian He,Gong Li,Hao Ren,Xin‐Lei Lian,Donghao Zhao,Xiao‐Ping Liao,Yahong Liu,Wei Qiu,Jian Sun
标识
DOI:10.1016/j.ijbiomac.2024.130145
摘要
Mycophenolate mofetil (MMF) is a viable therapeutic option against various immune disorders as a chemotherapeutic agent. Nevertheless, its application has been undermined by the gastrotoxic metabolites (mycophenolic acid glucuronide, MPAG) produced by microbiome-associated β-glucuronidase (βGUS). Therefore, controlling microbiota-produced βGUS underlines the potential strategy to improve MMF efficacy by overcoming the dosage limitation. In this study, the octyl gallate (OG) was identified with promising inhibitory activity on hydrolysis of PNPG in our high throughput screening based on a chemical collection of approximately 2000 natural products. Furthermore, OG was also found to inhibit a broad spectrum of BGUSs, including mini-Loop1, Loop 2, mini-Loop 2, and mini-Loop1,2. The further in vivo experiments demonstrated that administration of 20 mg/kg OG resulted in predominant reduction in the activity of BGUSs while displayed no impact on the overall fecal microbiome in mice. Furthermore, in the MMF-induced colitis model, the administration of OG at a dosage of 20 mg/kg effectively mitigated the gastrointestinal toxicity, and systematically reverted the colitis phenotypes. These findings indicate that the OG holds promising clinical potential for the prevention of MMF-induced gastrointestinal toxicity by inhibition of BGUSs and could be developed as a combinatorial therapy with MFF for better clinical outcomes.
科研通智能强力驱动
Strongly Powered by AbleSci AI