Fluorescence imaging deformability cytometry: integrating nuclear structure with mechanical phenotyping

Med-X Pub Date : 2023-09-15 DOI:10.1007/s44258-023-00008-w
Hector E. Muñoz, Jonathan Lin, Bonnie G. Yeh, Tridib Biswas, Dino Di Carlo
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引用次数: 1

Abstract

Abstract Mechanical measurements of cells can provide unique insights into cell state and disease processes. The overall mechanical properties of cells can be heavily affected by the stiffest organelle, the nucleus. However, it is challenging to fully characterize internal nuclear structures in most cell mechanical measurement platforms. Here, we demonstrate single-cell deformability measurements of whole cells and stained nuclei in a fluorescence imaging flow cytometry platform. We also introduce bending energy derived metrics as a way to normalize measurements of cytoskeletal cortex and nuclear shape changes of cells and demonstrate the utility of relative deformability distributions to characterize populations of cells. We apply the platform to measure changes in cell biophysical properties during the process of NETosis, whereby neutrophils undergo drastic nuclear restructuring. We characterize cell size, deformability, and nuclear structure changes and their correlations in thousands of neutrophils undergoing NETosis, a process implicated in development of critical disease states, such as sepsis. This platform can aid in understanding heterogeneity in deformability in cell populations and how this may be influenced by nuclear or internal structure changes. Graphical Abstract
荧光成像变形细胞术:将核结构与机械表型相结合
细胞的机械测量可以提供对细胞状态和疾病过程的独特见解。细胞的整体力学性能会受到最坚硬的细胞器——细胞核的严重影响。然而,在大多数细胞力学测量平台中,充分表征内部核结构是具有挑战性的。在这里,我们展示了在荧光成像流式细胞术平台上对整个细胞和染色细胞核的单细胞变形性测量。我们还介绍了弯曲能量衍生度量,作为一种归一化细胞骨架皮质和细胞核形状变化测量的方法,并展示了相对可变形性分布的效用,以表征细胞群体。我们应用该平台来测量NETosis过程中细胞生物物理特性的变化,即中性粒细胞经历剧烈的核重组。我们描述了数千个经历NETosis的中性粒细胞的细胞大小、可变形性和核结构变化及其相关性,NETosis是一个涉及关键疾病状态(如败血症)发展的过程。这个平台可以帮助理解细胞群体中变形性的异质性,以及核或内部结构变化如何影响这种异质性。图形抽象
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