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在年轻大鼠中,再活动期间的体育锻炼可恢复尾部悬吊诱导的骨质减少后的正常骨小梁网络。

Physical exercise during remobilization restores a normal bone trabecular network after tail suspension-induced osteopenia in young rats.

作者信息

Bourrin S, Palle S, Genty C, Alexandre C

机构信息

LBTO-GIP exercice, Faculté de Médecine J. Lisfranc, Saint-Etienne, France.

出版信息

J Bone Miner Res. 1995 May;10(5):820-8. doi: 10.1002/jbmr.5650100520.

DOI:10.1002/jbmr.5650100520
PMID:7639118
Abstract

To determine how bone recovers from immobilization-induced bone loss and to specify whether its recovering capacity is improved by physical exercise, 5-week-old male Wistar rats (287.07 g +/- 10.65 SD) were tail suspended for 14 days, then returned to either normal weight-bearing (R) or controlled physical exercise for 28 days (R + E). Bone mineral density (BMD) was measured in three parts of the femur. Using histomorphometric analysis, bone mass and architecture were estimated in the primary (1 degree sp) and secondary spongiosa (2 degrees sp) of the proximal tibial metaphysis. Bone cellular parameters were measured in the 2 degrees sp of the tibia. Tail suspension induced a significant decrease in BMD, 2 degrees sp bone mass, mineral apposition rate, and bone formation rate and marked alterations of the trabecular network. In R rats, BMD was still significantly decreased, except in the distal part of the femur. Long-bone lengthening was significantly altered. The 2 degrees sp bone mass returned to the age-matched control values; however, the trabeculae were still significantly thinner and bone resorption was significantly higher. R + E rats had a normal long bone lengthening and a significant increase in 2 degrees sp bone mass and trabecular thickness when compared with R rats. Bone resorption was significantly depressed, and osteoid surfaces and thickness were significantly increased. Thus, although bone mass returns to normal values in the R group, trabecular alterations persist.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了确定骨骼如何从制动诱导的骨质流失中恢复,并明确体育锻炼是否能提高其恢复能力,将5周龄雄性Wistar大鼠(287.07 g±10.65标准差)尾部悬吊14天,然后恢复正常负重(R组)或进行28天的控制性体育锻炼(R + E组)。测量股骨三个部位的骨密度(BMD)。采用组织形态计量学分析,评估胫骨近端干骺端初级(1°sp)和次级松质骨(2°sp)的骨量和结构。测量胫骨2°sp的骨细胞参数。尾部悬吊导致BMD、2°sp骨量、矿物质沉积率和骨形成率显著降低,以及小梁网络的明显改变。在R组大鼠中,除股骨远端外,BMD仍显著降低。长骨生长明显改变。2°sp骨量恢复到年龄匹配的对照值;然而,小梁仍显著变薄,骨吸收显著增加。与R组大鼠相比,R + E组大鼠长骨生长正常,2°sp骨量和小梁厚度显著增加。骨吸收显著降低,类骨质表面和厚度显著增加。因此,尽管R组骨量恢复到正常水平,但小梁改变仍然存在。(摘要截短为250字)

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