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坏死股骨头不同区域的骨小梁力学性能和骨细胞形态发生显著变化。

Mechanical properties of trabeculae and osteocyte morphology change significantly in different areas of the necrotic femoral head.

作者信息

He Min-Cong, Tian Jia-Qing, He Xiao-Ming, Yang Peng, Lin Tian-Ye, Zhang Qing-Wen, He Wei, Wei Qiu-Shi

机构信息

Guangdong Research Institute for Orthopedics and Traumatology of Chinese Medicine, The Third Affiliated Hospital, Guangzhou University of Chinese Medicine, Guangzhou, China.

The Third Clinical Medical College, Guangzhou University of Chinese Medicine, Guangzhou, China.

出版信息

Front Cell Dev Biol. 2023 Sep 26;11:1250070. doi: 10.3389/fcell.2023.1250070. eCollection 2023.

Abstract

Osteonecrosis of the femoral head is a complex hip ailment. The precise changes in bone tissue during the disease's onset remain unclear. It is vital to assess both the quantity and quality of the trabecular state in a necrotic femoral head. This study aims to identify and compare the ultrastructural changes in osteocyte morphology and nanomechanical characteristics within various regions of necrotic femoral heads. Between December 2016 and May 2023, we gathered ten necrotic femoral heads from patients and five femoral heads from cadavers. The samples from the necrotic femoral heads were categorized into three areas: necrotic, sclerotic, and normal. Our assessment methods encompassed hematoxylin and eosin staining, sclerostin (SOST) immunohistochemistry, micro-computed tomography, nanoindentation, and acid-etched scanning electron microscopy. These techniques enabled us to examine the SOST expression, trabecular microstructure, micromechanical properties of trabeculae, and modifications in osteocyte morphology at the ultrastructural level. The protein level of SOST was found to be lower in the sclerotic area. In the necrotic area, decreased values of bone volume fraction, trabecular thickness, and trabecular number and an increased value of trabecular separation were found. Conversely, in the sclerotic area, higher mean values of bone volume fraction, trabecular number, and trabecular thickness and lower trabecular separation indicated significant changes in the structural characteristics of trabeculae. Compared with the healthy area, the elastic modulus and hardness in the sclerotic area were significantly higher than those in the necrotic, normal, and control areas, while those in necrotic areas were significantly lower than those in the healthy area. The number of osteocytes tended to increase in the sclerotic area with more canalicular cells compared to the healthy area and control group. These results imply that the stress distribution within the sclerotic area could potentially lead to enhanced trabecular quality and quantity. This effect is also reflected in the increased count of osteocytes and their canaliculars. It is plausible that the sclerotic trabecular bone plays a pivotal role in the repair of necrotic femoral heads.

摘要

股骨头坏死是一种复杂的髋部疾病。疾病发作期间骨组织的确切变化尚不清楚。评估坏死股骨头内小梁状态的数量和质量至关重要。本研究旨在识别和比较坏死股骨头不同区域内骨细胞形态和纳米力学特征的超微结构变化。2016年12月至2023年5月期间,我们收集了10例患者的坏死股骨头和5例尸体的股骨头。坏死股骨头的样本分为三个区域:坏死区、硬化区和正常区。我们的评估方法包括苏木精和伊红染色、硬化蛋白(SOST)免疫组织化学、显微计算机断层扫描、纳米压痕和酸蚀扫描电子显微镜。这些技术使我们能够在超微结构水平上检查SOST表达、小梁微观结构、小梁的微观力学性能以及骨细胞形态的变化。发现硬化区的SOST蛋白水平较低。在坏死区,骨体积分数、小梁厚度和小梁数量降低,小梁间距增加。相反,在硬化区,骨体积分数、小梁数量和小梁厚度的平均值较高,小梁间距较低,表明小梁的结构特征发生了显著变化。与健康区域相比,硬化区的弹性模量和硬度显著高于坏死区、正常区和对照区,而坏死区的弹性模量和硬度显著低于健康区域。与健康区域和对照组相比,硬化区内骨细胞数量趋于增加,且有更多的骨小管细胞。这些结果表明,硬化区内的应力分布可能会导致小梁质量和数量的提高。这种效应也反映在骨细胞及其骨小管数量的增加上。硬化的小梁骨在坏死股骨头的修复中可能起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2757/10562544/0385dacb2e40/fcell-11-1250070-g001.jpg

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