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气道平滑肌组织的粘弹性和动态非线性特性:机械力和细胞骨架的作用。

Viscoelastic and dynamic nonlinear properties of airway smooth muscle tissue: roles of mechanical force and the cytoskeleton.

作者信息

Ito Satoru, Majumdar Arnab, Kume Hiroaki, Shimokata Kaoru, Naruse Keiji, Lutchen Kenneth R, Stamenovic Dimitrije, Suki Béla

机构信息

Department of Biomedical Engineering, Boston University, 44 Cummington Street, Boston, MA 02215, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2006 Jun;290(6):L1227-37. doi: 10.1152/ajplung.00299.2005. Epub 2006 Jan 13.

DOI:10.1152/ajplung.00299.2005
PMID:16414980
Abstract

The viscoelastic and dynamic nonlinear properties of guinea pig tracheal smooth muscle tissues were investigated by measuring the storage (G') and loss (G") moduli using pseudorandom small-amplitude length oscillations between 0.12 and 3.5 Hz superimposed on static strains of either 10 or 20% of initial length. The G" and G' spectra were interpreted using a linear viscoelastic model incorporating damping (G) and stiffness (H), respectively. Both G and H were elevated following an increase in strain from 10 to 20%. There was no change in harmonic distortion (K(d)), an index of dynamic nonlinearity, between 10 and 20% strains. Application of methacholine at 10% strain significantly increased G and H while it decreased K(d). Cytochalasin D, isoproterenol, and HA-1077, a Rho-kinase inhibitor, significantly decreased both G and H but increased K(d). Following cytochalasin D, G, H, and K(d) were all elevated when mean strain increased from 10 to 20%. There were no changes in hysteresivity, G/H, under any condition. We conclude that not all aspects of the viscoelastic properties of tracheal smooth muscle strips are similar to those previously observed in cultured cells. We attribute these differences to the contribution of the extracellular matrix. Additionally, using a network model, we show that the dynamic nonlinear behavior, which has not been observed in cell culture, is associated with the state of the contractile stress and may derive from active polymerization within the cytoskeleton.

摘要

通过在初始长度的10%或20%的静态应变上叠加0.12至3.5Hz的伪随机小振幅长度振荡,测量储能模量(G')和损耗模量(G''),研究了豚鼠气管平滑肌组织的粘弹性和动态非线性特性。分别使用包含阻尼(G)和刚度(H)的线性粘弹性模型来解释G''和G'谱。应变从10%增加到20%后,G和H均升高。在10%至20%应变之间,动态非线性指标谐波失真(K(d))没有变化。在10%应变下应用乙酰甲胆碱可显著增加G和H,同时降低K(d)。细胞松弛素D、异丙肾上腺素和Rho激酶抑制剂HA-1077均显著降低G和H,但增加K(d)。细胞松弛素D处理后,当平均应变从10%增加到20%时,G、H和K(d)均升高。在任何条件下,滞后率G/H均无变化。我们得出结论,气管平滑肌条带粘弹性特性的并非所有方面都与先前在培养细胞中观察到的相似。我们将这些差异归因于细胞外基质的作用。此外,使用网络模型,我们表明在细胞培养中未观察到的动态非线性行为与收缩应力状态有关,并且可能源于细胞骨架内的活性聚合。

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