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机械刺激可改善组织工程化人体骨骼肌。

Mechanical stimulation improves tissue-engineered human skeletal muscle.

作者信息

Powell Courtney A, Smiley Beth L, Mills John, Vandenburgh Herman H

机构信息

Department of Molecular Pharmacology, Physiology, and Biotechnology, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Am J Physiol Cell Physiol. 2002 Nov;283(5):C1557-65. doi: 10.1152/ajpcell.00595.2001.

Abstract

Human bioartificial muscles (HBAMs) are tissue engineered by suspending muscle cells in collagen/MATRIGEL, casting in a silicone mold containing end attachment sites, and allowing the cells to differentiate for 8 to 16 days. The resulting HBAMs are representative of skeletal muscle in that they contain parallel arrays of postmitotic myofibers; however, they differ in many other morphological characteristics. To engineer improved HBAMs, i.e., more in vivo-like, we developed Mechanical Cell Stimulator (MCS) hardware to apply in vivo-like forces directly to the engineered tissue. A sensitive force transducer attached to the HBAM measured real-time, internally generated, as well as externally applied, forces. The muscle cells generated increasing internal forces during formation which were inhibitable with a cytoskeleton depolymerizer. Repetitive stretch/relaxation for 8 days increased the HBAM elasticity two- to threefold, mean myofiber diameter 12%, and myofiber area percent 40%. This system allows engineering of improved skeletal muscle analogs as well as a nondestructive method to determine passive force and viscoelastic properties of the resulting tissue.

摘要

人类生物人工肌肉(HBAMs)是通过将肌肉细胞悬浮在胶原蛋白/基质胶中,浇铸到含有末端附着位点的硅胶模具中,并使细胞分化8至16天来进行组织工程构建的。所得的HBAMs是骨骼肌的代表,因为它们包含有丝分裂后肌纤维的平行排列;然而,它们在许多其他形态特征上有所不同。为了构建更优的HBAMs,即更接近体内状态的,我们开发了机械细胞刺激器(MCS)硬件,以便将类似体内的力直接施加到工程组织上。一个连接到HBAM的灵敏力传感器实时测量内部产生的以及外部施加的力。肌肉细胞在形成过程中产生不断增加的内力,而细胞骨架解聚剂可抑制这种内力。8天的重复拉伸/松弛使HBAM的弹性增加了两到三倍,平均肌纤维直径增加了12%,肌纤维面积百分比增加了40%。该系统允许构建更优的骨骼肌类似物,以及一种无损方法来确定所得组织的被动力和粘弹性特性。

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