Mechanical and structural properties of rat and human lymphocytes after the exposure of the whole blood to X-rays in vitro

I. А. Chelnokova, N. M. Shkliarava, N. Yegorenkov, M. Starodubtseva
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Abstract

Objective. By the means of atomic force microscopy to determine the changes in the parameters of the structural and mechanical properties of peripheral blood lymphocytes induced by the irradiation of whole blood by X-rays and identifying the possibility of assessing a state and radiation-induced lymphocyte death programs by analyzing a set of such parameters.Materials and methods. Whole blood of rats and humans was irradiated with X-rays (1–100 Gy) in vitro. Lymphocytes were isolated from the blood after a day of storage, placed on glass slides, fixed with glutaraldehyde and dried. The study of structural and mechanical properties was carried out with the help of atomic force microscope Bruker Bioscope Resolve in Peak Force QNM mode in air. For the sets of AFM parameters, which included elastic modulus, adhesion force, cell surface roughness and cell sizes, a k-mean clustering of data was carried out for the studied experimental groups.Results. The X-ray irradiation of the blood caused changes in the structural and mechanical properties of lymphocytes measured by AFM at the nanoscale. Clustering analysis of the sets of AFM parameters revealed clusters with similar structure in each experimental group (humans, 6and 16-month rats). The studied four clusters were associated with cell states and cell death programs: non-activated cells, activated cells with increased stiffness, apoptotic cells with reduced stiffness, and cells dying via programs other than apoptotic ones with increased stiffness. Each cluster (cell type) with a specific set of AFM parameters was represented differently in the blood lymphocyte population, depending on the dose of X-rays.Conclusion. The set of ACM parameters of lymphocytes including elastic modulus, adhesion force, roughness, and cell sizes, can be helpful for automatically determining the state and death program of lymphocytes after the local irradiation of humans with the involvement of peripheral blood (for example, after radio-therapeutic causes).
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大鼠和人类淋巴细胞在体外将全血暴露于 X 射线后的机械和结构特性
研究目的通过原子力显微镜确定 X 射线照射全血诱导的外周血淋巴细胞结构和机械特性参数的变化,并通过分析一组此类参数确定评估状态和辐射诱导的淋巴细胞死亡程序的可能性。在体外用 X 射线(1-100 Gy)照射大鼠和人类的全血。储存一天后从血液中分离出淋巴细胞,放在玻璃载玻片上,用戊二醛固定并干燥。在空气中使用原子力显微镜 Bruker Bioscope Resolve 的峰值力 QNM 模式进行结构和机械特性研究。对于原子力显微镜参数集,包括弹性模量、粘附力、细胞表面粗糙度和细胞大小,对所研究的实验组进行了 k-mean 数据聚类。血液经 X 射线照射后,用原子力显微镜测量的淋巴细胞的结构和机械特性在纳米尺度上发生了变化。对原子力显微镜参数集的聚类分析显示,每个实验组(人类、6 个月大鼠和 16 个月大鼠)都有结构相似的群集。所研究的四个聚类与细胞状态和细胞死亡程序有关:非活化细胞、活化细胞(硬度增加)、凋亡细胞(硬度降低)和通过凋亡程序以外的程序死亡的细胞(硬度增加)。根据 X 射线剂量的不同,血液淋巴细胞群中具有一组特定 AFM 参数的每个群组(细胞类型)的表现也不同。淋巴细胞的 ACM 参数集(包括弹性模量、粘附力、粗糙度和细胞大小)有助于自动确定人体外周血局部照射后(如放射治疗后)淋巴细胞的状态和死亡程序。
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