Characterizing the micromechanical properties of myeloblasts from cancer patients with optical tweezers

Youhua Tan, A. Y. Leung, Kaiqun Wang, T. Fung, Dong Sun
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Abstract

Cell mechanics, in particular mechanical properties, has been suggested as a new biomarker indicative of cell state and phenotype. Acute myeloid leukemia (AML) is characterized by the abnormal increase of myeloblasts in blood and bone marrow. While AML has been extensively studied from the perspectives of biochemical and genetic aspects, little is known about its cellular biophysical properties. In this study, optical tweezer technology was used to examine the micromechanical properties of myeloblasts from bone marrow of AML patients at single cell level. The myeloblasts were separately analyzed according to their expression of CD34+, a marker of primitive hematopoietic cells. To extract the intrinsic properties from the relationship between the stretching force and the induced deformation, a theoretical approach was developed to model the mechanical responses of cells and further characterize their mechanical properties. The preliminary results show that the area compressibility modulus of CD34+ myeloblasts was significantly less than that of CD34− cells, which indicate that micromechanical properties are unique features of myeloblasts and provide us with an insight into the cell mechanics of primitive AML cells.
用光学镊子表征癌症患者骨髓母细胞的微力学特性
细胞力学,特别是力学性能,已被认为是一种新的指示细胞状态和表型的生物标志物。急性髓性白血病(Acute myeloid leukemia, AML)以血液和骨髓中成髓细胞异常增加为特征。AML已经从生物化学和遗传学的角度进行了广泛的研究,但对其细胞生物物理特性知之甚少。本研究采用光镊技术在单细胞水平上检测AML患者骨髓成髓细胞的微力学特性。根据原始造血细胞标志物CD34+的表达分别分析成髓细胞。为了从拉伸力和诱导变形之间的关系中提取固有特性,建立了一种理论方法来模拟单元的力学响应,并进一步表征其力学特性。初步结果表明,CD34+成髓细胞的面积压缩模量明显小于CD34−细胞,这表明微力学特性是成髓细胞的独特特征,并为我们了解原始AML细胞的细胞力学提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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