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大鼠胫骨近端生长板短期钉合术后软骨细胞动力学反应的定量三维分析

Quantitative three-dimensional analysis of chondrocytic kinetic responses to short-term stapling of the rat proximal tibial growth plate.

作者信息

Farnum C E, Nixon A, Lee A O, Kwan D T, Belanger L, Wilsman N J

机构信息

Department of Biomedical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.

出版信息

Cells Tissues Organs. 2000;167(4):247-58. doi: 10.1159/000016787.

Abstract

Although it has been demonstrated clinically that controlled compression across a growth plate will slow the rate of endochondral ossification and thus can be used to correct angular limb deformities, the cellular-based mechanism by which altered growth is achieved is poorly understood. This study used short-term uniaxial stapling of the rat proximal tibial growth plate as an experimental system to study chondrocytic responses in the growth plate that account quantitatively for the decreased rate of growth. Growth plates were labeled with oxytetracycline to measure bone growth, and with bromodeoxyuridine to analyze proliferative cell kinetics. Multiple indicators of chondrocytic activity, measured by stereological parameters, were analyzed using growth rate as the primary dependent variable. The unique feature of this analysis was the creation of three-dimensional reconstructions that allowed analysis of data in all directions with distance from the staple. A significant observation was that for the entire operated limb after both 3 and 6 days, all chondrocytic kinetic parameters were affected, indicating that proliferative and hypertrophic responses both act to decrease growth rate in response to stapling. This contradicted our hypothesis that proliferative and hypertrophic responses could occur independently, and that small changes in rate would be attributed primarily to the former and large changes to the latter. The data from this study also demonstrate that volume regulation during hypertrophy can be affected by a primarily mechanical perturbation. Because changes in hypertrophic cell number and volume throughout the growth plate that occur by day 3 remain similar at day 6, the initial modulation of chondrocytic volume and shape may represent the limit of the response while maintaining a growth plate capable of continued growth.

摘要

尽管临床研究已证实,对生长板进行控制性加压会减缓软骨内成骨的速度,因此可用于矫正四肢成角畸形,但实现生长改变的基于细胞的机制仍知之甚少。本研究采用大鼠胫骨近端生长板短期单轴钉合作为实验系统,研究生长板中的软骨细胞反应,这些反应定量说明了生长速度的降低。生长板用土霉素标记以测量骨生长,用溴脱氧尿苷标记以分析增殖细胞动力学。以生长速度作为主要因变量,分析了通过体视学参数测量的软骨细胞活性的多个指标。该分析的独特之处在于创建了三维重建,从而能够分析距钉合处不同距离的各个方向的数据。一个重要的观察结果是,在术后3天和6天,整个手术肢体的所有软骨细胞动力学参数均受到影响,这表明增殖反应和肥大反应均会对钉合做出反应,从而降低生长速度。这与我们的假设相矛盾,即增殖反应和肥大反应可能独立发生,且生长速度的微小变化主要归因于前者,而较大变化则归因于后者。本研究的数据还表明,肥大过程中的体积调节可能会受到主要机械扰动的影响。由于在第3天整个生长板中肥大细胞数量和体积的变化在第6天仍保持相似,软骨细胞体积和形状的初始调节可能代表了反应的极限,同时维持了一个能够持续生长的生长板。

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