小鼠子宫的生物力学和成分随年龄的变化。

IF 3 2区 医学 Q3 ENGINEERING, BIOMEDICAL
Mari J E Domingo, Triniti N Vanoven, Raffaella De Vita, Maria E Florian Rodriguez, Kristin S Miller, Isaac J Pence
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引用次数: 0

摘要

子宫是一个中空的纤维肌肉器官,参与生理过程,如月经和怀孕。细胞外基质成分(如纤维胶原)的含量和组织决定了被动(非收缩)生物力学组织功能;然而,子宫内细胞外基质成分和生物力学功能如何随年龄变化仍不清楚。本研究利用拉曼光谱结合双轴充气试验研究小鼠子宫随年龄(2-3个月、4-6个月、10-12个月和20-24个月)的变化。随着生殖衰老(2 ~ 12个月),线性模量和趾模量显著降低;然而,在年龄最大的年龄组(20-24个月),这两个模量都增加了。年龄最大组(20-24月龄)的弹性蛋白和胶原蛋白联合光谱光学浓度明显较高,而糖原贡献在2-3月龄小鼠子宫最高。该工作流程结合了双轴膨胀测试和拉曼光谱,代表了将衰老子宫的生物力学和光学特征与临床转化潜力相关联的关键的第一步。此外,这项研究可能为年龄相关的子宫疾病提供关键的组成和结构功能信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical and Compositional Changes in the Murine Uterus with Age.

The uterus is a hollow, fibromuscular organ involved in physiological processes such as menstruation and pregnancy. The content and organization of extracellular matrix constituents such as fibrillar collagen dictate passive (non-contractile) biomechanical tissue function; however, how extracellular matrix composition and biomechanical function change with age in the uterus remains unknown. This study utilizes Raman spectroscopy coupled with biaxial inflation testing to investigate changes in the murine uterus with age (2-3 months, 4-6 months, 10-12 months, and 20-24 months). Linear and toe moduli significantly decreased with reproductive aging (2 to 12 months); however, both moduli increased in the oldest age group (20-24 months). The optical concentration of the combined elastin and collagen spectrum was significantly higher in the oldest group (20-24 month), while the glycogen contribution was the highest in the 2-3 month murine uterus. The presented workflow couples biaxial inflation testing and Raman spectroscopy, representing a critical first step to correlating biomechanics and optical signatures in the aging uterus with the potential for clinical translation. Further, this study may provide critical compositional and structure-function information regarding age-related uterine disorders.

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来源期刊
Annals of Biomedical Engineering
Annals of Biomedical Engineering 工程技术-工程:生物医学
CiteScore
7.50
自引率
15.80%
发文量
212
审稿时长
3 months
期刊介绍: Annals of Biomedical Engineering is an official journal of the Biomedical Engineering Society, publishing original articles in the major fields of bioengineering and biomedical engineering. The Annals is an interdisciplinary and international journal with the aim to highlight integrated approaches to the solutions of biological and biomedical problems.
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