血糖标志物与年龄相关性骨阻力中胶原变性和非酶胶原交联的相关性

IF 2.1 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY JOM Pub Date : 2024-08-12 DOI:10.1007/s11837-024-06744-7
James Rosenberg, Vishnu Sundaresh, Jeremy Gililland, Afaf Osman, William Woolley, Claire Acevedo
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引用次数: 0

摘要

老年人骨折风险的主要临床指标是骨量低,但在 50 岁以上的骨折患者中,骨量低的比例不到一半。年龄被认为会影响骨骼质量,影响骨骼结构和特性。以往的研究表明,年龄会降低胶原蛋白赋予组织的可塑性和韧性,这表明与年龄相关的胶原蛋白环境变化可能会导致骨质脆弱。本研究探讨了中老年患者(绝经后 50-70 岁和老年性骨质疏松症患者 70 岁)与年龄相关的胶原损伤(特别是非酶胶原交联和分子胶原变性的累积)和骨韧性之间的关系。此外,它还研究了血糖和 HbA1c 水平以及体重指数(BMI)对这些因素的影响。尽管没有发现不同组别在骨折韧性方面存在任何差异,但我们发现血红蛋白 A1c 与胶原蛋白完整性(胶原蛋白变性和非酶交联)之间存在显著相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Glycemic Marker Correlation with Collagen Denaturation and Non-Enzymatic Collagen Cross-Linking in Age-Associated Bone Resistance

The primary clinical indicator of fracture risk among the elderly is low bone mass, yet it accounts for less than half of fractures in individuals over 50 years. Age is recognized to influence bone quality, affecting bone structure and properties. Previous research indicates that age diminishes tissue plasticity and toughness conferred by collagen, suggesting that age-related changes in the collagen environment may contribute to bone fragility. This study explores the relationship between age-related collagen impairment, specifically the accumulation of non-enzymatic collagen cross-linking and molecular collagen denaturation, and bone toughness in middle-aged and older patients (postmenopausal 50–70 years old and senile osteoporosis age > 70 years old). Additionally, it examines the influence of blood glucose and HbA1c levels, as well as body mass index (BMI), on these factors. Despite not finding any differences in fracture toughness between groups, we found a significant correlation between hemoglobin A1c and collagen integrity (collagen denaturation and non-enzymatic cross-linking).

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来源期刊
JOM
JOM 工程技术-材料科学:综合
CiteScore
4.50
自引率
3.80%
发文量
540
审稿时长
2.8 months
期刊介绍: JOM is a technical journal devoted to exploring the many aspects of materials science and engineering. JOM reports scholarly work that explores the state-of-the-art processing, fabrication, design, and application of metals, ceramics, plastics, composites, and other materials. In pursuing this goal, JOM strives to balance the interests of the laboratory and the marketplace by reporting academic, industrial, and government-sponsored work from around the world.
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