化学
双功能
药理学
药代动力学
前药
组合化学
小分子
立体化学
不利影响
结构-活动关系
连接器
乙醚
分子
生物活性
抗生素
抗菌剂
利福平
化学合成
生物化学
毛茛
作者
Rui Wen,Gang Xing,Hao Zhi LI,Jianuo Yang,Hanqing Xu,T Wang,Xingqi Hu,Canyao Ding,Huali Yang,Jiang Zheng,Rong Zhang,MingYu Xia,Yang Liu,Maosheng Cheng
标识
DOI:10.1021/acs.jmedchem.5c02747
摘要
The increasing antibiotic resistance of Helicobacter pylori necessitates novel therapeutics. Although rifabutin demonstrates potent anti- H. pylori activity and low resistance rates, its clinical use is limited by myelosuppressive risk. Clinical evidence indicates that vonoprazan acts synergistically with rifabutin, allowing a reduced dosage and duration while maintaining efficacy. We developed acid-responsive bifunctional molecules conjugating both drugs for coordinated gastric release and enhanced local synergy, enabling reduced-dose or shorter-duration therapy with minimal adverse effects. Compound 10, incorporating acid-labile silyl ether and self-immolative linkers, demonstrated potent anti- H. pylori activity (MIC ≤ 0.125 μg/mL) and strong acid suppression (>85% inhibition at 2 mg/kg). In murine models, compound 10 exhibited antiulcer efficacy comparable to vonoprazan at half the dose, with pharmacokinetic analysis revealing minimal systemic exposure to rifabutin, thereby substantially reducing the risk of myelosuppression. This strategy provides a promising approach for effective and safe H. pylori therapy.
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