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MEASUREMENT OF THE TRANSVERSE APPARENT ELASTIC MODULUS IN MAMMALIAN CARDIAC MYOCYTES

机译:哺乳动物心肌细胞横向表观弹性模量的测量

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Transverse mechanical properties of mammalian cardiac myocytes, was determined by using atomic force microscopy (AFM). The AFM can be used as a nano-indentation device allowing transverse stiffness measurements to be conducted on biological cells in a physiological environment. This enables real-time biomechanical and physiological processes to be monitored with nano-scale resolution. Cellular mechanical properties were determined by indenting the cell's body, and analyzing the indentation data with classical infinitesimal strain theory (CIST). This calculation was accomplished by modeling the AFM probe as a blunted cone. The blunted cone geometry fits the AFM force indentation data well and was used to calculate the apparent elastic modulus of the cardiac myocyte body. The mechanical properties of male 344 x Brown Norway F1 hybrid (F344xBN) rat cells was measured and an apparent elastic modulus of 35.1 +- 0.7 kPa (n = 53) was calculated. Further studies are being conducted on myocytes isolated from aged hearts to determine whether age effects cardiac mechanical properties at the level of the single myocyte.
机译:通过使用原子力显微镜(AFM)确定哺乳动物心肌细胞的横向机械性能。 AFM可用作纳米压痕设备,可在生理环境中对生物细胞进行横向刚度测量。这使得能够以纳米级分辨率监视实时生物力学和生理过程。通过压入细胞的身体并使用经典的无限小应变理论(CIST)分析压痕数据来确定细胞的机械性能。通过将AFM探针建模为钝锥来完成此计算。钝锥的几何形状非常适合AFM力压痕数据,并用于计算心肌细胞体的表观弹性模量。测量了雄性344×布朗挪威F1杂种(F344×BN)大鼠细胞的机械性能,并计算了表观弹性模量为35.1±0.7kPa(n = 53)。正在对从衰老的心脏分离的心肌细胞进行进一步研究,以确定年龄是否会影响单个心肌细胞水平的心脏机械性能。

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