Institute of Physics, Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland.
J Mol Recognit. 2012 May;25(5):299-308. doi: 10.1002/jmr.2192.
Tumor necrosis factor (TNF)-related apoptosis inducing ligand (TRAIL) is a promising apoptotic agent that can selectively act on tumor cells. However, some cancer cells are resistant to TRAIL mediated apoptosis. In specific type of cells, sensitization by chemotherapeutic drugs may overcome the resistance to TRAIL induced apoptosis. In this work, atomic force microscopy (AFM) nanoindentation spectroscopy combined with fluorescence methods were used to investigate the biomechanical aspects of the resistance and unblocking of apoptosis in larynx carcinoma HEp2 cells treated with TRAIL. It is shown that there is a direct correlation between the increase in mechanical cell stiffness and the inhibition of apoptosis induced by TRAIL in HEp2 cells. Conversely, unblocking of apoptosis by sensitization of HEp2 cells with a chemotherapeutic drug Actinomycin D is related to the depolymerization of F-actin and to the decrease in the cell stiffness. Both effects, that is, changes in the mechanical stiffness of the cell and the inhibition of apoptotic pathway, are closely related to the Bcl-2 activity. Most probably, the depolymerization of F-actin results from downregulation of Rho protein, which in turn is accompanied by a lower activity of Bcl-2 and in consequence releases the intrinsic apoptotic channel. The presented results reveal a promising application of nanoindentation spectroscopy with an AFM tip as a novel tool for monitoring the processes of apoptosis inhibition.
肿瘤坏死因子(TNF)相关凋亡诱导配体(TRAIL)是一种有前途的凋亡剂,可选择性地作用于肿瘤细胞。然而,一些癌细胞对 TRAIL 介导的凋亡具有抗性。在某些特定类型的细胞中,化疗药物的敏化作用可能克服 TRAIL 诱导的凋亡抗性。在这项工作中,原子力显微镜(AFM)纳米压痕光谱学结合荧光方法用于研究 TRAIL 处理的喉癌细胞 HEp2 中细胞凋亡的阻力和阻断的生物力学方面。结果表明,在 HEp2 细胞中,机械细胞硬度的增加与 TRAIL 诱导的细胞凋亡抑制之间存在直接相关性。相反,通过用化疗药物放线菌素 D 敏化 HEp2 细胞来阻断细胞凋亡与 F-肌动蛋白的解聚和细胞硬度的降低有关。这两种作用,即细胞力学硬度的变化和凋亡途径的抑制,都与 Bcl-2 活性密切相关。很可能,F-肌动蛋白的解聚是由于 Rho 蛋白的下调,这反过来又伴随着 Bcl-2 活性的降低,从而释放内在的凋亡通道。所呈现的结果揭示了 AFM 针尖纳米压痕光谱学作为监测细胞凋亡抑制过程的新工具的有前途的应用。