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Nanonet force microscopy for measuring forces in single smooth muscle cells of the human aorta

机译:纳米纳米力显微镜测量人体主动脉单平滑肌细胞中的力测量力

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A number of innovative methods exist to measure cell-matrix adhesive forces, but they have yet to accurately describe and quantify the intricate interplay of a cell and its fibrous extracellular matrix (ECM). In cardiovascular pathologies, such as aortic aneurysm, new knowledge on the involvement of cell-matrix forces could lead to elucidation of disease mechanisms. To better understand this dynamics, we measured primary human aortic single smooth muscle cell (SMC) forces using nanonet force microscopy in both inside-out (I-O intrinsic contractility) and outside-in (O-I external perturbation) modes. For SMC populations, we measured the I-O and O-I forces to be 12.9 +/- 1.0 and 57.9 +/- 2.5 nN, respectively. Exposure of cells to oxidative stress conditions caused a force decrease of 57 and 48% in I-O and O-I modes, respectively, and an increase in migration rate by 2.5-fold. Finally, in O-I mode, we cyclically perturbed cells at constant strain of varying duration to simulate in vivo conditions of the cardiac cycle and found that I-O forces decrease with increasing duration and O-I forces decreased by half at shorter cycle times. Thus our findings highlight the need to study forces exerted and felt by cells simultaneously to comprehensively understand force modulation in cardiovascular disease.
机译:存在许多创新方法来测量细胞基质粘合力,但它们尚未准确描述和量化细胞和纤维细胞外基质(ECM)的复杂相互作用。在心血管病理学中,例如主动脉动脉瘤,关于细胞 - 基质力的参与的新知识可能导致疾病机制的阐释。为了更好地了解这种动态,我们在内外(I-O内在的收缩性)和外部(O-I外部扰动)模式中,使用纳米键力显微镜测量原发性人主动脉单平滑肌细胞(SMC)力。对于SMC群体,我们将I-O和O-I势力分别测量为12.9 +/- 1.0和57.9 +/- 2.5 nn。细胞暴露于氧化应激条件下,分别在I-O和O-I模式中引起57和48%的力减小,并增加迁移率为2.5倍。最后,在O-I模式下,我们在不同持续时间的恒定应变中循环扰动细胞以模拟心脏周期的体内条件,发现I-O力随着持续时间而减小的持续时间和O-I力在较短的循环时间下降一半减小。因此,我们的研究结果强调了需要同时施加施用和感受到施用和感受到心血管疾病的力调制的需要。

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