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利用微管吸吮技术对 K562 细胞进行力学表型分析,可以识别药物诱导的力学变化。

Mechanical phenotyping of K562 cells by the Micropipette Aspiration Technique allows identifying mechanical changes induced by drugs.

机构信息

Department of Physics, Informatics and Mathematics, University of Modena and Reggio Emilia, Via G. Campi 213/A, 41125, Modena, Italy.

Department of Molecular Medicine and Medical Biotechnology, University of Naples Federico II, Via Pansini 5, 80131, Naples, Italy.

出版信息

Sci Rep. 2018 Jan 19;8(1):1219. doi: 10.1038/s41598-018-19563-z.

Abstract

Mechanical properties of living cells can be used as reliable markers of their state, such as the presence of a pathological state or their differentiation phase. The mechanical behavior of cells depends on the organization of their cytoskeletal network and the main contribution typically comes from the actomyosin contractile system, in both suspended and adherent cells. In the present study, we investigated the effect of a pharmaceutical formulation (OTC - Ossitetraciclina liquida 20%) used as antibiotic, on the mechanical properties of K562 cells by using the Micropipette Aspiration Technique (MAT). This formulation has been shown to increase in a time dependent way the inflammation and toxicity in terms of apoptosis in in vitro experiments on K562 and other types of cells. Here we show that by measuring the mechanical properties of cells exposed to OTC for different incubation times, it is possible to infer modifications induced by the formulation to the actomyosin contractile system. We emphasize that this system is involved in the first stages of the apoptotic process where an increase of the cortical tension leads to the formation of blebs. We discuss the possible relation between the observed mechanical behavior of cells aspirated inside a micropipette and apoptosis.

摘要

活细胞的力学特性可用作其状态的可靠标志物,例如存在病理状态或分化阶段。细胞的力学行为取决于其细胞骨架网络的组织,并且在悬浮和贴壁细胞中,主要贡献通常来自肌动球蛋白收缩系统。在本研究中,我们通过使用微管吸吮技术(MAT)研究了一种用作抗生素的药物制剂(OTC- Ossitetraciclina liquida 20%)对 K562 细胞力学特性的影响。已经表明,该制剂在 K562 和其他类型细胞的体外实验中,以时间依赖性方式增加炎症和细胞凋亡毒性。在这里,我们表明通过测量暴露于 OTC 不同孵育时间的细胞的机械特性,可以推断出制剂对肌动球蛋白收缩系统的诱导的修饰。我们强调指出,该系统参与细胞凋亡过程的早期阶段,其中皮质张力的增加导致形成泡。我们讨论了在微管内抽吸的细胞的观察到的力学行为与细胞凋亡之间的可能关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cff8/5775209/4e9b11fb5278/41598_2018_19563_Fig1_HTML.jpg

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