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生长板的差异性生长作为软骨细胞动力学多个参数的函数。

Differential growth by growth plates as a function of multiple parameters of chondrocytic kinetics.

作者信息

Wilsman N J, Farnum C E, Leiferman E M, Fry M, Barreto C

机构信息

Department of Comparative Biosciences, University of Wisconsin-Madison 53706, USA.

出版信息

J Orthop Res. 1996 Nov;14(6):927-36. doi: 10.1002/jor.1100140613.

Abstract

Differential elongation of growth plates is the process by which growth-plate chondrocytes translate the same sequence of gene regulation into the appropriate timing pattern for a given rate of elongation. While some of the parameters associated with differential growth are known, the purpose of this study was to test the hypothesis that eight independent variables are involved. We tested this hypothesis by considering four different growth plates in 28-day-old Long-Evans rats. Temporal parameters were provided by means of oxytetracycline and bromodeoxyuridine labeling techniques. Stereological parameters were measured with standard techniques. For all four growth plates, the calculated number of new chondrocytes produced per day approximated the number of chondrocytes lost per day at the chondro-osseous junction. This suggests that the proposed equations and associated variables represent a comprehensive set of variables defining differential growth. In absolute numbers, the proximal tibial growth plate produced about four times as many chondrocytes per day as the proximal radial growth plate (16,400 compared with 3,700). In the proximal tibia, 9% of growth is contributed by cellular division; 32%, by matrix synthesis throughout the growth plate; and 59%, by chondrocytic enlargement during hypertrophy. In the more slowly elongating growth plates, the relative contribution to elongation from cellular enlargement decreases from 59 to 44%, with a relative increase in contribution from matrix synthesis ranging from 32% in the proximal tibia 49% in the proximal radius. This study suggests that differential growth is best depicted as a complex interplay among cellular division, matrix synthesis, and cellular enlargement during hypertrophy. Differential growth is best explained by considering a set of eight independent variables, seven of which vary from growth plate to growth plate. Thus, this study confirms the importance of cellular hypertrophy during elongation and adds to our understanding of the importance of locally mediated regulatory systems controlling growth-plate activity.

摘要

生长板的差异性延长是指生长板软骨细胞将相同的基因调控序列转化为给定延长速率下适当时间模式的过程。虽然一些与差异性生长相关的参数是已知的,但本研究的目的是检验涉及八个独立变量这一假设。我们通过研究28日龄的Long-Evans大鼠的四个不同生长板来检验这一假设。通过土霉素和溴脱氧尿苷标记技术提供时间参数。用标准技术测量体视学参数。对于所有四个生长板,计算得出的每天产生的新软骨细胞数量近似于在软骨骨交界处每天丢失的软骨细胞数量。这表明所提出的方程和相关变量代表了一组定义差异性生长的综合变量。从绝对数量来看,近端胫骨生长板每天产生的软骨细胞数量约为近端桡骨生长板的四倍(分别为16,400个和3,700个)。在近端胫骨中,9%的生长由细胞分裂贡献;32%由整个生长板的基质合成贡献;59%由肥大期间软骨细胞的增大贡献。在延长较慢的生长板中,细胞增大对延长的相对贡献从59%降至44%,而基质合成的相对贡献从近端胫骨的32%增加到近端桡骨的49%。本研究表明,差异性生长最好被描述为细胞分裂、基质合成和肥大期间细胞增大之间的复杂相互作用。通过考虑一组八个独立变量可以最好地解释差异性生长,其中七个变量在不同生长板之间有所不同。因此,本研究证实了细胞肥大在延长过程中的重要性,并增进了我们对控制生长板活动的局部介导调节系统重要性的理解。

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