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Radiation therapy affects the mechanical behavior of human umbilical vein endothelial cells

机译:放射疗法影响人脐静脉内皮细胞的力学行为

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Radiation therapy has been widely utilized as an effective method to eliminate malignant tumors and cancerous cells. However, subjection of healthy tissues and the related networks of blood vessels adjacent to the tumor area to irradiation is inevitable. The aim of this study was to investigate the consequent effects of fractionation radiotherapy on the mechanical characteristics of human umbilical vein endothelial cells (HUVECs) through alterations in cytoskeleton organization and cell and nucleus morphology. In order to simulate the clinical condition of radiotherapy, the HUVECs were exposed to the specific dose of 2 Gy for 1-4 times among four groups with incremental total dose from 2 Gy up to 8 Gy. Fluorescence staining was performed to label F-actin filaments and nuclei. Micropipette aspiration and standard linear solid model were employed to evaluate the elastic and viscoelastic characteristics of the HUVECs. Radiotherapy significantly increased cell elastic moduli. Due to irradiation, instantaneous and equilibrium Young's modulus were also increased. Radiotherapy diminished HUVECs viscoelastic behavior and shifted their creep compliance curves downward. Furthermore, gamma irradiation elevated the nuclei sizes and to a lesser extent the cells sizes resulting in the accumulation of F-actin filaments within the rest of cell body. Endothelial stiffening correlates with endothelial dysfunction, hence the results may be helpful when the consequent effects of radiotherapy are the focus of concern.
机译:放射疗法已被广泛利用作为消除恶性肿瘤和癌细胞的有效方法。然而,邻近肿瘤区域与肿瘤相邻的健康组织和血管相关网络的强迫是不可避免的。本研究的目的是通过细胞骨架组织和细胞和细胞核形态的改变来研究分馏放射治疗对人脐静脉内皮细胞(HUVECS)力学特性的影响。为了模拟放射疗法的临床状况,Huvecs在4组中暴露于2 Gy的特定剂量,从2 Gy增加到8 Gy的增量剂量。进行荧光染色以标记F-肌动蛋白细丝和核。采用微移液吸气和标准线性固体模型来评估Huvecs的弹性和粘弹性特性。放射疗法显着增加了细胞弹性模量。由于照射,瞬时和平衡的杨氏模量也增加。放射疗法减少了Huvecs粘弹性行为,向下移动了蠕变遵守曲线。此外,γ辐射升高了核尺寸并在较小程度上升高了细胞尺寸,导致细胞体内的其余部分内的F-actin长丝的积累。内皮加强与内皮功能障碍相关,因此当放射治疗的结果是关注的焦点时,结果可能会有所帮助。

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