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大鼠颞下颌关节盘胶原原纤维微结构的年龄相关变化。

Age-related changes in the microarchitecture of collagen fibrils in the articular disc of the rat temporomandibular joint.

作者信息

Ahn Hyung Joon, Paik Sang Kyoo, Choi Jae Kap, Kim Hong Jeung, Ahn Dong Kuk, Cho Yi Sul, Kim Yun Sook, Moon Cheil, Bae Yong Chul

机构信息

Department of Oral Medicine, Dental Hospital, College of Dentistry, Yonsei University, Seoul, South Korea.

出版信息

Arch Histol Cytol. 2007 Oct;70(3):175-81. doi: 10.1679/aohc.70.175.

Abstract

The microarchitecture of collagen fibrils in the articular disc of the temporomandibular joint (TMJ) plays an important role in dissipating the mechanical load during jaw movement. However, little information is available on its adaptations to the biomechanical environment during development. To address this issue, we analyzed the diameter of collagen fibrils of the articular disc of the rat TMJ with quantitative ultrastructural analysis during postnatal development. The mean diameter of the collagen fibrils significantly increased and the arrangement of the collagen fiber networks became compact during development. Articular discs of suckling rat pups were composed of thin, uniformly sized collagen fibrils (range: 30-60 nm, peak: 40-50 nm). At the age of 4 weeks, thicker collagen fibrils began to appear in articular discs, shortly after weaning (range: 20-70 nm, peak: 40-50 nm). In articular discs of adult rats, collagen fibrils varied widely in diameter, with thick fibrils predominating (range: 10-120 nm, peak: 40-70 nm). These age-related changes in the microarchitecture of collagen fibrils in articular discs may reflect changes in their biomechanical environment during development.

摘要

颞下颌关节(TMJ)关节盘中胶原纤维的微观结构在颌骨运动过程中消散机械负荷方面起着重要作用。然而,关于其在发育过程中对生物力学环境的适应性,目前所知甚少。为了解决这个问题,我们在出生后发育过程中,通过定量超微结构分析,对大鼠TMJ关节盘胶原纤维的直径进行了分析。在发育过程中,胶原纤维的平均直径显著增加,胶原纤维网络的排列变得紧密。乳鼠的关节盘由细的、大小均匀的胶原纤维组成(范围:30 - 60纳米,峰值:40 - 50纳米)。在4周龄时,断奶后不久,关节盘中开始出现较粗的胶原纤维(范围:20 - 70纳米,峰值:40 - 50纳米)。在成年大鼠的关节盘中,胶原纤维直径差异很大,粗纤维占主导(范围:10 - 120纳米,峰值:40 - 70纳米)。关节盘中胶原纤维微观结构的这些与年龄相关的变化可能反映了其在发育过程中生物力学环境的变化。

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