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体内机械负荷后成骨细胞出现的时间进程。

Time course of osteoblast appearance after in vivo mechanical loading.

作者信息

Boppart M D, Kimmel D B, Yee J A, Cullen D M

机构信息

Osteoporosis Research Center, Creighton University, Omaha, NE 68131, USA.

出版信息

Bone. 1998 Nov;23(5):409-15. doi: 10.1016/s8756-3282(98)00119-7.

Abstract

The time course of the bone cellular response to mechanical loading is important in the design of optimal exercise prescriptions. This study examined the time course of periosteal cellular changes in the rat tibia following a single exposure of mechanical loading in four-point bending. The right tibiae of adult female Sprague Dawley rats (n = 48, 346 +/- 29 g) were loaded at 40 N (2000 mu epsilon) for 36 cycles at 2 Hz. Right loaded (L) and left nonloaded (NL) tibiae were collected on days 1, 2, 3, 4, 6, and 9 after loading. Cross sections from the loaded region were examined for periosteal differences in bone lining cell surface length, osteoblast surface length, and both alkaline phosphatase-positive cell surface length and width in the cellular layer. A single loading session increased osteoblast surface length as early as day 2, with a peak in expression on day 3. Nine days after a single loading session osteoblast surface length was not different from nonloaded control levels. Alkaline phosphatase width in the cellular periosteum was elevated by day 2 and remained elevated through day 9. This study shows the transient increase in osteoblast surface following a single loading session. It provides fundamental information regarding the timing of osteoblast appearance and the longevity of the response following mechanical stimulation.

摘要

骨骼细胞对机械负荷的反应时间过程在优化运动处方设计中很重要。本研究检测了成年雌性Sprague Dawley大鼠(n = 48,346 +/- 29 g)右胫骨在四点弯曲单次机械负荷暴露后骨膜细胞变化的时间过程。以40 N(2000με)的负荷在2 Hz下对大鼠右胫骨施加36个循环的负荷。在负荷后第1、2、3、4、6和9天收集右负荷(L)和左未负荷(NL)胫骨。检查负荷区域的横断面,观察骨衬细胞表面长度、成骨细胞表面长度以及细胞层中碱性磷酸酶阳性细胞的表面长度和宽度的骨膜差异。单次负荷训练最早在第2天就增加了成骨细胞表面长度,并在第3天达到表达峰值。单次负荷训练9天后,成骨细胞表面长度与未负荷对照水平无差异。细胞性骨膜中的碱性磷酸酶宽度在第2天升高,并持续升高至第9天。本研究显示了单次负荷训练后成骨细胞表面的短暂增加。它提供了关于成骨细胞出现时间和机械刺激后反应持续时间的基本信息。

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