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X射线对健康细胞和肿瘤细胞细胞骨架力学的影响。

X-rays effects on cytoskeleton mechanics of healthy and tumor cells.

作者信息

Panzetta Valeria, De Menna Marta, Musella Ida, Pugliese Mariagabriella, Quarto Maria, Netti Paolo A, Fusco Sabato

机构信息

Center for Advanced Biomaterials for Health Care@CRIB - Istituto Italiano di Tecnologia, Largo Barsanti e Matteucci n. 53, Napoli, 80125, Italy.

Department of Experimental and Clinic Medicine, University of Catanzaro Magna Graecia, Catanzaro, Italy.

出版信息

Cytoskeleton (Hoboken). 2017 Jan;74(1):40-52. doi: 10.1002/cm.21334. Epub 2016 Aug 31.

Abstract

Alterations in the cytoskeleton structure are frequently found in several diseases and particularly in cancer cells. It is also through the alterations of the cytoskeleton structure that cancer cells acquire most of their common features such as uncontrolled cell proliferation, cell death evasion, and the gaining of migratory and invasive characteristics. Although radiation therapies currently represent one of the most effective treatments for patients, the effects of X-irradiation on the cytoskeleton architecture are still poorly understood. In this case we investigated the effects, over time of two different doses of X-ray irradiation, on cell cytoskeletons of BALB/c3T3 and Sv40-transformed BALB/c 3T3 cells (SVT2). Biophysical parameters - focal adhesion size, actin bundles organization, and cell mechanical properties - were measured before and after irradiations (1 and 2 Gy) at 24 and 72 h, comparing the cytoskeleton properties of normal and transformed cells. The differences, before and after X-irradiation, were revealed in terms of cell morphology and deformability. Finally, such parameters were correlated to the alterations of cytoskeleton dynamics by evaluating cell adhesion at the level of focal adhesion and cytoskeleton mechanics. X-irradiation modifies the structure and the activity of cell cytoskeleton in a dose-dependent manner. For transformed cells, radiation sensitively increased cell adhesion, as indicated by paxillin-rich focal adhesion, flat morphology, a well-organized actin cytoskeleton, and intracellular mechanics. On the other hand, for normal fibroblasts IR had negligible effects on cytoskeletal and adhesive protein organization. © 2016 Wiley Periodicals, Inc.

摘要

细胞骨架结构的改变在多种疾病中经常出现,尤其是在癌细胞中。癌细胞也是通过细胞骨架结构的改变获得了它们的大多数共同特征,如不受控制的细胞增殖、逃避细胞死亡以及获得迁移和侵袭特性。尽管放射疗法目前是对患者最有效的治疗方法之一,但X射线辐射对细胞骨架结构的影响仍知之甚少。在这种情况下,我们研究了两种不同剂量的X射线辐射随时间对BALB/c3T3细胞和经猿猴病毒40(SV40)转化的BALB/c 3T3细胞(SVT2)的细胞骨架的影响。在照射前和照射后(1 Gy和2 Gy)24小时和72小时测量生物物理参数——粘着斑大小、肌动蛋白束组织和细胞力学性能,比较正常细胞和转化细胞的细胞骨架特性。X射线辐射前后的差异在细胞形态和可变形性方面得以显现。最后,通过评估粘着斑水平的细胞粘附和细胞骨架力学,将这些参数与细胞骨架动力学的改变相关联。X射线辐射以剂量依赖的方式改变细胞骨架的结构和活性。对于转化细胞,辐射敏感地增加了细胞粘附,表现为富含桩蛋白的粘着斑、扁平形态、组织良好的肌动蛋白细胞骨架和细胞内力学。另一方面,对于正常成纤维细胞,电离辐射对细胞骨架和粘附蛋白组织的影响可忽略不计。© 2016威利期刊公司

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