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肌腱的生化和各向异性特性。

Biochemical and anisotropical properties of tendons.

机构信息

Department of Anatomy, Cell Biology, Physiology and Biophysics, Institute of Biology, State University of Campinas - UNICAMP, Brazil.

出版信息

Micron. 2012 Feb;43(2-3):205-14. doi: 10.1016/j.micron.2011.07.015. Epub 2011 Aug 7.

Abstract

Tendons are formed by dense connective tissue composed of an abundant extracellular matrix (ECM) that is constituted mainly of collagen molecules, which are organized into fibrils, fibers, fiber bundles and fascicles helicoidally arranged along the largest axis of the tendon. The biomechanical properties of tendons are directly related to the organization of the collagen molecules that aggregate to become a super-twisted cord. In addition to collagen, the ECM of tendons is composed of non-fibrillar components, such as proteoglycans and non-collagenous glycoproteins. The capacity of tendons to resist mechanical stress is directly related to the structural organization of the ECM. Collagen is a biopolymer and presents optical anisotropies, such as birefringence and linear dichroism, that are important optical properties in the characterization of the supramolecular organization of the fibers. The objective of this study was to present a review of the composition and organization of the ECM of tendons and to highlight the importance of the anisotropic optical properties in the study of alterations in the ECM.

摘要

肌腱由致密结缔组织组成,其中含有丰富的细胞外基质 (ECM),主要由胶原分子构成,这些胶原分子组织成原纤维、纤维、纤维束和沿肌腱最大轴螺旋排列的纤维束。肌腱的生物力学特性与胶原分子的聚集方式直接相关,胶原分子聚集形成超螺旋绳。除了胶原,肌腱的细胞外基质还由非纤维成分组成,如蛋白聚糖和非胶原糖蛋白。肌腱抵抗机械应力的能力与 ECM 的结构组织直接相关。胶原是一种生物聚合物,具有双折射和线二色性等各向异性光学性质,这些性质是纤维超分子组织表征中的重要光学性质。本研究的目的是综述肌腱细胞外基质的组成和组织,并强调各向异性光学性质在 ECM 改变研究中的重要性。

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