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野生型小家鼠交叉韧带中 microRNAs 表达的年龄相关性变化。

Age-related changes in microRNAs expression in cruciate ligaments of wild-stock house mice.

机构信息

Department of Musculoskeletal Ageing Sciences, Institute of Life Course and Medical Sciences, University of Liverpool, William Duncan Building, Liverpool, UK.

The MRC-Versus Arthritis Centre for Integrated Research into Musculoskeletal Ageing (CIMA), Liverpool, UK.

出版信息

Physiol Rep. 2022 Aug;10(16):e15426. doi: 10.14814/phy2.15426.

Abstract

Cruciate ligaments (CL) of the knee joint are injured following trauma or aging. MicroRNAs (miRs) are potential therapeutic targets in musculoskeletal disorders, but there is little known about the role of miRs and their expression ligaments during aging. This study aimed to (1) identify if mice with normal physical activity, wild-stock house mice are an appropriate model to study age-related changes in the knee joint and (2) investigate the expression of miRs in aging murine cruciate ligaments. Knee joints were collected from 6 and 24 months old C57BL/6 and wild-stock house mice (Mus musculus domesticus) for ligament and cartilage (OARSI) histological analysis. Expression of miR targets in CLs was determined in 6-, 12-, 24-, and 30-month-old wild-stock house mice, followed by the analysis of predicted mRNA target genes and Ingenuity Pathway Analysis. Higher CL and knee OARSI histological scores were found in 24-month-old wild-stock house mice compared with 6- and 24-month-old C57BL/6 and 6-month-old wild-stock house mice (p < 0.05). miR-29a and miR-34a were upregulated in 30-month-old wild-stock house mice in comparison with 6-, 12-, and 24-month-old wild-stock house mice (p < 0.05). Ingenuity Pathway Analysis on miR-29a and 34a targets was associated with inflammation through interleukins, TGFβ and Notch genes, and p53 signaling. Collagen type I alpha 1 chain (COL1A1) correlated negatively with both miR-29a (r = -0.35) and miR-34a (r = -0.33). The findings of this study support wild-stock house mice as an appropriate aging model for the murine knee joint. This study also indicated that miR-29a and miR-34a may be potential regulators of COL1A1 gene expression in murine CLs.

摘要

膝关节的交叉韧带(CL)在创伤或衰老后会受伤。微小 RNA(miRs)是肌肉骨骼疾病的潜在治疗靶点,但对于 miRs 及其在衰老过程中表达的韧带的作用知之甚少。本研究旨在:(1)确定是否具有正常身体活动的小鼠,即野生型家鼠,是研究膝关节与年龄相关变化的合适模型;(2)研究衰老过程中鼠类交叉韧带中微小 RNA 的表达。从 6 月龄和 24 月龄 C57BL/6 和野生型家鼠(Mus musculus domesticus)的膝关节中采集韧带和软骨(OARSI)组织学分析样本。在 6、12、24 和 30 月龄的野生型家鼠中测定 CL 中微小 RNA 靶标的表达,随后分析预测的 mRNA 靶基因和 Ingenuity 通路分析。与 6 月龄和 24 月龄 C57BL/6 以及 6 月龄野生型家鼠相比,24 月龄野生型家鼠的 CL 和膝关节 OARSI 组织学评分更高(p<0.05)。与 6、12 和 24 月龄野生型家鼠相比,30 月龄野生型家鼠中的 miR-29a 和 miR-34a 上调(p<0.05)。对 miR-29a 和 34a 靶标的 Ingenuity 通路分析表明,白细胞介素、TGFβ 和 Notch 基因以及 p53 信号与炎症有关,而 I 型胶原α 1 链(COL1A1)与 miR-29a(r=-0.35)和 miR-34a(r=-0.33)呈负相关。本研究的结果支持野生型家鼠作为研究小鼠膝关节衰老的合适模型。本研究还表明,miR-29a 和 miR-34a 可能是调节鼠类 CL 中 COL1A1 基因表达的潜在调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5e9/9393909/7c781f88cd85/PHY2-10-e15426-g002.jpg

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