骨关节炎
医学
发病机制
加压素
生物信息学
内科学
转录组
分解代谢
内分泌学
血压
合成代谢
软骨
信号转导
精氨酸
受体
关节软骨
Notch信号通路
癌症研究
软骨损伤
炎症
关节炎
作者
Su-Jin Kim,Hyoeun Kim,Ki‐Ho Chung,Gyuseok Lee,Ka Hyon Park,Young-Gwon Kim,Mangeun Kim,Weon-Young Choi,Soo-Chang Joo,Hae Jin Kee,Seung-Hee Kwon,Jong‐Keun Seon,Gun-Woo Lee,Yoonkyung Won,Jeong‐Tae Koh,Jin Han,Jang‐Soo Chun,Je‐Hwang Ryu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-10-01
卷期号:394 (6819): eaed8207-eaed8207
标识
DOI:10.1126/science.aed8207
摘要
Osteoarthritis (OA) is a degenerative joint disease, the progression of which is accelerated by systemic metabolic stress. Here, we identified a neuroendocrine pathway through which hypertension accelerates OA pathogenesis in joints predisposed by mechanical injury or aging. Nationwide cohort analyses and hypertensive mouse models demonstrated that elevated blood pressure exacerbates OA pathogenesis. OA-primed chondrocytes up-regulated arginine vasopressin (AVP) receptor 1A (AVPR1A), rendering them responsive to hypertension-associated circulating AVP. AVP-AVPR1A signaling enhanced catabolic signaling while suppressing anabolic regulators, thereby promoting cartilage catabolism. Genetic deletion or pharmacological inhibition of AVPR1A protected against hypertension-driven OA acceleration. Transcriptomic profiling and gene-silencing analyses identified NR4A3 as the principal downstream transcriptional mediator. Collectively, these findings establish the AVP-AVPR1A axis as a mechanistic link between systemic hypertensive stress and joint degeneration.
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