瞬时受体电位香草酸亚型4调节细胞外基质组成并介导小鼠模型中负荷诱导的椎间盘退变。

Transient receptor potential vanilloid 4 regulates extracellular matrix composition and mediates load-induced intervertebral disc degeneration in a mouse model.

作者信息

Mark Kim Min Kyu, Lawrence Matthew, Quinonez Diana, Brooks Courtney, Ramachandran Rithwik, Séguin Cheryle A

机构信息

Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario, Canada.

Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

Osteoarthritis Cartilage. 2024 Jul;32(7):881-894. doi: 10.1016/j.joca.2024.04.001. Epub 2024 Apr 9.

Abstract

OBJECTIVE

Transient receptor potential vanilloid 4 (TRPV4) is a multi-modally activated cation channel that mediates mechanotransduction pathways by which musculoskeletal tissues respond to mechanical load and regulate tissue health. Using conditional Trpv4 knockout mice, we investigated the role of Trpv4 in regulating intervertebral disc (IVD) health and injury-induced IVD degeneration.

METHODS

Col2-Cre;Trpv4 (Trpv4 KO) mice were used to knockout Trpv4 in all type 2 collagen-expressing cells. Effects of gene targeting alone was assessed in lumbar spines, using vertebral bone length measurement, histological, immunohistochemistry and gene expression analyses, and mechanical testing. Disc puncture was performed on caudal IVDs of wild-type (WT) and Trpv4 KO mice at 2.5- and 6.5-months-of-age. Six weeks after puncture (4- and 8-months-of-age at sacrifice), caudal spines were assessed using histological analyses.

RESULTS

While loss of Trpv4 did not significantly alter vertebral bone length and tissue histomorphology compared to age-matched WT mice, Trpv4 KO mice showed decreased proteoglycan and PRG4 staining in the annulus fibrosus compared to WT. At the gene level, Trpv4 KO mice showed significantly increased expression of Acan, Bgn, and Prg4 compared to WT. Functionally, loss of Trpv4 was associated with significantly increased neutral zone length in lumbar IVDs. Following puncture, both Trpv4 KO and WT mice showed similar signs of degeneration at the site of injury. Interestingly, loss of Trpv4 prevented mechanically-induced degeneration in IVDs adjacent to sites of injury.

CONCLUSION

These studies suggest a role for Trpv4 in regulating extracellular matrix synthesis and mediating the response of IVD tissues to mechanical stress.

摘要

目的

瞬时受体电位香草酸亚型4(TRPV4)是一种多模式激活的阳离子通道,介导肌肉骨骼组织对机械负荷作出反应并调节组织健康的机械转导途径。我们使用条件性Trpv4基因敲除小鼠,研究了Trpv4在调节椎间盘(IVD)健康和损伤诱导的IVD退变中的作用。

方法

使用Col2-Cre;Trpv4(Trpv4基因敲除)小鼠在所有表达2型胶原蛋白的细胞中敲除Trpv4。通过测量椎骨长度、组织学、免疫组织化学和基因表达分析以及机械测试,评估基因靶向单独作用对腰椎的影响。对2.5月龄和6.5月龄的野生型(WT)和Trpv4基因敲除小鼠的尾侧IVD进行椎间盘穿刺。穿刺后6周(处死时为4月龄和8月龄),使用组织学分析评估尾侧脊柱。

结果

与年龄匹配的WT小鼠相比,Trpv4缺失并未显著改变椎骨长度和组织组织形态学,但与WT相比,Trpv4基因敲除小鼠的纤维环中蛋白聚糖和PRG4染色减少。在基因水平上,与WT相比,Trpv4基因敲除小鼠的Acan、Bgn和Prg4表达显著增加。在功能上,Trpv4缺失与腰椎IVD的中性区长度显著增加有关。穿刺后,Trpv4基因敲除小鼠和WT小鼠在损伤部位均表现出相似的退变迹象。有趣的是,Trpv4缺失可防止损伤部位相邻IVD发生机械诱导的退变。

结论

这些研究表明Trpv4在调节细胞外基质合成和介导IVD组织对机械应力的反应中发挥作用。

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