McCollum Geniece, Keng Peter C, States J Christopher, McCabe Michael J
Department of Environmental Medicine, University of Rochester School of Medicine and Dentistry, NY 14642, USA.
J Pharmacol Exp Ther. 2005 May;313(2):877-87. doi: 10.1124/jpet.104.080713. Epub 2005 Feb 18.
Arsenic is a well known toxicant and carcinogen that is also effective as a chemotherapeutic in the treatment of acute promyelocytic leukemia. Although its effects on humans are well documented, arsenic's mechanism of action is not well understood. Its ability to act as a carcinogen and as a chemotherapeutic seems paradoxical. However, cancer cell transformation and cancer cell destruction can both occur through perturbations of the cell cycle machinery, making cell cycle function a likely target of arsenic action. Arsenic has previously been shown to inhibit cancer cell cycle progression, but the targeted cell cycle phase has been debated. This study was designed to identify the cell cycle phase at which U937 cells are most sensitive to arsenite-induced growth inhibition. Centrifugal elutriation was used to divide asynchronous cell cultures into specific cell cycle phase-enriched fractions. These fractions were monitored for cell cycle phase progression in the presence and absence of sodium arsenite. We found an overall reduction in cell cycle progression rather than induction of arrest at one specific checkpoint. G(2)/M is the phase most sensitive to arsenite-induced apoptosis. However, arsenite profoundly affects U937 cell growth by increasing the length of time it takes cells to transit each phase of the cell cycle. Future study of cell cycle inhibition by arsenic should consider that the effect may not be mediated by the major cell cycle checkpoints. Arsenic's ability to inhibit growth in any cell cycle phase may increase its value as a chemotherapeutic used together with other, more phase-selective agents, such as camptothecin.
砷是一种众所周知的有毒物质和致癌物,但它在治疗急性早幼粒细胞白血病方面作为一种化疗药物也很有效。尽管砷对人类的影响已有充分记录,但其作用机制尚不清楚。它作为致癌物和化疗药物的能力似乎自相矛盾。然而,癌细胞的转化和癌细胞的破坏都可能通过细胞周期机制的扰动而发生,这使得细胞周期功能成为砷作用的一个可能靶点。此前已表明砷能抑制癌细胞周期进程,但所靶向的细胞周期阶段一直存在争议。本研究旨在确定U937细胞对亚砷酸盐诱导的生长抑制最敏感的细胞周期阶段。采用离心淘析法将异步细胞培养物分为特定的富含细胞周期阶段的组分。在有和没有亚砷酸钠的情况下监测这些组分的细胞周期阶段进程。我们发现细胞周期进程总体上有所减少,而不是在一个特定的检查点诱导停滞。G(2)/M期是对亚砷酸盐诱导的凋亡最敏感的阶段。然而,亚砷酸盐通过增加细胞穿越细胞周期各阶段所需的时间,深刻地影响U937细胞的生长。未来关于砷对细胞周期抑制作用的研究应考虑到这种作用可能不是由主要的细胞周期检查点介导的。砷在任何细胞周期阶段抑制生长的能力可能会增加其作为与其他更具阶段选择性的药物(如喜树碱)联合使用的化疗药物的价值。