Department of Chemistry, Emory University, Atlanta GA 30322, USA.
Division of Tuberculosis Elimination, Centers for Disease Control and Prevention, Atlanta GA 30333, USA; Microbiology and Molecular Genetics Graduate Program, Emory University School of Medicine, Atlanta GA 30322, USA.
Eur J Med Chem. 2015 Mar 6;92:693-9. doi: 10.1016/j.ejmech.2015.01.020. Epub 2015 Jan 10.
Tuberculosis (TB) is a major public health concern worldwide with over 2 billion people currently infected. The rise of strains of Mycobacterium tuberculosis (Mtb) that are resistant to some or all first and second line antibiotics, including multidrug-resistant (MDR), extensively drug resistant (XDR) and totally drug resistant (TDR) strains, is of particular concern and new anti-TB drugs are urgently needed. Curcumin, a natural product used in traditional medicine in India, exhibits anti-microbial activity that includes Mtb, however it is relatively unstable and suffers from poor bioavailability. To improve activity and bioavailability, mono-carbonyl analogs of curcumin were synthesized and screened for their capacity to inhibit the growth of Mtb and the related Mycobacterium marinum (Mm). Using disk diffusion and liquid culture assays, we found several analogs that inhibit in vitro growth of Mm and Mtb, including rifampicin-resistant strains. Structure activity analysis of the analogs indicated that Michael acceptor properties are critical for inhibitory activity. However, no synergistic effects were evident between the monocarbonyl analogs and rifampicin on inhibiting growth. Together, these data provide a structural basis for the development of analogs of curcumin with pronounced anti-mycobacterial activity and provide a roadmap to develop additional structural analogs that exhibit more favorable interactions with other anti-TB drugs.
结核病(TB)是全球主要的公共卫生关注点,目前全球有超过 20 亿人感染。结核分枝杆菌(Mtb)菌株对一些或所有一线和二线抗生素的耐药性上升,包括耐多药(MDR)、广泛耐药(XDR)和完全耐药(TDR)菌株,这尤其令人担忧,急需新的抗结核药物。姜黄素是印度传统医学中使用的天然产物,具有抗微生物活性,包括 Mtb,但它相对不稳定,生物利用度差。为了提高活性和生物利用度,合成了姜黄素的单羰基类似物,并对其抑制 Mtb 和相关的海洋分枝杆菌(Mm)生长的能力进行了筛选。通过圆盘扩散和液体培养试验,我们发现了几种类似物可以抑制 Mm 和 Mtb 的体外生长,包括耐利福平的菌株。类似物的结构活性分析表明,迈克尔受体性质对抑制活性至关重要。然而,在抑制生长方面,单羰基类似物与利福平之间没有明显的协同作用。总之,这些数据为开发具有显著抗分枝杆菌活性的姜黄素类似物提供了结构基础,并为开发与其他抗结核药物具有更有利相互作用的其他结构类似物提供了路线图。