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与年龄相关的骨韧性下降与基质糖胺聚糖(GAGs)数量减少有关。

AGE-RELATED DETERIORATION OF BONE TOUGHNESS IS RELATED TO DIMINISHING AMOUNT OF MATRIX GLYCOSAMINOGLYCANS (GAGS).

作者信息

Wang Xiaodu, Hua Rui, Ahsan Abu, Ni Qingwen, Huang Yehong, Gu Sumin, Jiang Jean X

机构信息

Mechanical Engineering, University of Texas at San Antonio.

Biochemistry and Structural Biology, University of Texas Health Science Center at San Antonio.

出版信息

JBMR Plus. 2018 May;2(3):164-173. doi: 10.1002/jbm4.10030. Epub 2017 Dec 28.

Abstract

Hydration status significantly affects the toughness of bone. In addition to the collagen phase, recent evidence shows that glycosaminoglycans (GAGs) of proteoglycans (PGs) in the extracellular matrix also play a pivotal role in regulating the tissue-level hydration status of bone, thereby affecting the tissue-level toughness of bone. In this study, we hypothesized that the amount of GAGs in bone matrix decreased with age and such changes would lead to reduction in bound water and subsequently result in a decrease in the tissue-level toughness of bone. To test the hypothesis, nanoscratch tests were conducted to measure the tissue-level toughness of human cadaveric bone specimens, which were procured only from male donors in three different age groups: young (26 ± 6 years old), mid-aged (52 ± 5 years old) and elderly (73 ± 5 years old), with six donors in each group. Biochemical and histochemical assays were performed to determine the amount and major subtypes of GAGs and proteoglycans in bone matrix. In addition, low-field NMR measurements were implemented to determine bound water content in bone matrix. The results demonstrated that aging resulted in a statistically significant reduction (17%) of GAGs in bone matrix. Concurrently, a significant deterioration (20%) of tissue-level toughness of bone with age was observed. Most importantly, the deteriorated tissue-level toughness of bone was associated significantly with the age-related reduction (40%) of bound water, which was partially induced by the decrease of GAGs in bone matrix. Furthermore, we identified that chondroitin sulfate (CS) was a major subtype of GAGs and the amount of CS decreased with aging in accompany with a decrease of biglycan that is a major subtype of PGs in bone. The findings of this study suggests that reduction of GAGs in bone matrix is likely one of the molecular origins for age-related deterioration of bone quality.

摘要

水合状态显著影响骨骼的韧性。除了胶原相,最近的证据表明,细胞外基质中蛋白聚糖(PGs)的糖胺聚糖(GAGs)在调节骨骼的组织水平水合状态中也起着关键作用,从而影响骨骼的组织水平韧性。在本研究中,我们假设骨基质中GAGs的含量随年龄增长而降低,这种变化会导致结合水减少,进而导致骨骼的组织水平韧性下降。为了验证这一假设,我们进行了纳米划痕试验,以测量人类尸体骨标本的组织水平韧性,这些标本仅从三个不同年龄组的男性供体中获取:年轻组(26±6岁)、中年组(52±5岁)和老年组(73±5岁),每组有6名供体。进行了生化和组织化学分析,以确定骨基质中GAGs和蛋白聚糖的含量及主要亚型。此外,还进行了低场核磁共振测量,以确定骨基质中的结合水含量。结果表明,衰老导致骨基质中GAGs含量在统计学上显著降低(17%)。同时,观察到随着年龄增长,骨骼的组织水平韧性显著下降(20%)。最重要的是,骨骼组织水平韧性的下降与年龄相关的结合水减少(40%)显著相关,这部分是由骨基质中GAGs的减少引起的。此外,我们确定硫酸软骨素(CS)是GAGs的主要亚型,并且CS的含量随着衰老而减少,同时骨中PGs的主要亚型双糖链蛋白聚糖也减少。本研究结果表明,骨基质中GAGs的减少可能是与年龄相关的骨质恶化的分子起源之一。

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