Knippler Christina M, Arnst Jamie L, Robinson Isaac E, Matsuk Veronika, Khatib Tala O, Harvey R Donald, Shanmugam Mala, Mouw Janna K, Fu Haian, Ganesh Thota, Marcus Adam I
Department of Hematology and Medical Oncology, Emory University, Atlanta, GA 30322, USA.
Winship Cancer Institute, Emory University, Atlanta, GA 30322, USA.
iScience. 2024 Mar 27;27(4):109591. doi: 10.1016/j.isci.2024.109591. eCollection 2024 Apr 19.
Targeting cancer metabolism to limit cellular energy and metabolite production is an attractive therapeutic approach. Here, we developed analogs of the bisbiguanide, alexidine, to target lung cancer cell metabolism and assess a structure-activity relationship (SAR). The SAR led to the identification of two analogs, AX-4 and AX-7, that limit cell growth via G1/G0 cell-cycle arrest and are tolerated with favorable pharmacokinetics. Mechanistic evaluation revealed that AX-4 and AX-7 induce potent mitochondrial defects; mitochondrial cristae were deformed and the mitochondrial membrane potential was depolarized. Additionally, cell metabolism was rewired, as indicated by reduced oxygen consumption and mitochondrial ATP production, with an increase in extracellular lactate. Importantly, AX-4 and AX-7 impacted overall cell behavior, as these compounds reduced collective cell invasion. Taken together, our study establishes a class of bisbiguanides as effective mitochondria and cell invasion disrupters, and proposes bisbiguanides as promising approaches to limiting cancer metastasis.
针对癌症代谢以限制细胞能量和代谢物产生是一种有吸引力的治疗方法。在此,我们开发了双胍类化合物阿来西定的类似物,以靶向肺癌细胞代谢并评估构效关系(SAR)。构效关系促使我们鉴定出两种类似物AX - 4和AX - 7,它们通过G1/G0细胞周期停滞限制细胞生长,并且具有良好的药代动力学耐受性。机制评估表明,AX - 4和AX - 7会引发严重的线粒体缺陷;线粒体嵴变形,线粒体膜电位去极化。此外,细胞代谢发生重编程,表现为耗氧量和线粒体ATP产生减少,细胞外乳酸增加。重要的是,AX - 4和AX - 7影响整体细胞行为,因为这些化合物减少了集体细胞侵袭。综上所述,我们的研究确立了一类双胍类化合物作为有效的线粒体和细胞侵袭破坏剂,并提出双胍类化合物是限制癌症转移的有前景的方法。