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首页> 外文期刊>Nature Communications >Endogenous adenosine maintains cartilage homeostasis and exogenous adenosine inhibits osteoarthritis progression
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Endogenous adenosine maintains cartilage homeostasis and exogenous adenosine inhibits osteoarthritis progression

机译:内源性腺苷维持软骨稳态,外源性腺苷抑制骨关节炎的进展

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Osteoarthritis (OA) is characterized by cartilage destruction and chondrocytes have a central role in this process. With age and inflammation chondrocytes have reduced capacity to synthesize and maintain ATP, a molecule important for cartilage homeostasis. Here we show that concentrations of ATP and adenosine, its metabolite, fall after treatment of mouse chondrocytes and rat tibia explants with IL-1β, an inflammatory mediator thought to participate in OA pathogenesis. Mice lacking A2A adenosine receptor (A2AR) or ecto-5′nucleotidase (an enzyme that converts extracellular AMP to adenosine) develop spontaneous OA and chondrocytes lacking A2AR develop an ‘OA phenotype’ with increased expression of Mmp13 and Col10a1 . Adenosine replacement by intra-articular injection of liposomal suspensions containing adenosine prevents development of OA in rats. These results support the hypothesis that maintaining extracellular adenosine levels is an important homeostatic mechanism, loss of which contributes to the development of OA; targeting adenosine A2A receptors might treat or prevent OA.
机译:骨关节炎(OA)的特征是软骨破坏,而软骨细胞在此过程中起着核心作用。随着年龄的增长和炎症,软骨细胞合成和维持ATP的能力下降,ATP是软骨稳态的重要分子。在这里我们显示,用IL-1β处理小鼠软骨细胞和大鼠胫骨外植体后,ATP和腺苷及其代谢产物的浓度下降,IL-1β是一种炎症介质,被认为参与了OA发病机理。缺乏A2A腺苷受体(A2AR)或ecto-5'核苷酸酶(一种将细胞外AMP转化为腺苷的酶)的小鼠会自发形成OA,而缺乏A2AR的软骨细胞会形成“ OA表型”,并增加Mmp13和Col10a1的表达。通过关节内注射含有腺苷的脂质体悬浮液来置换腺苷可防止大鼠OA的发展。这些结果支持以下假设:维持细胞外腺苷水平是重要的体内平衡机制,其丧失有助于OA的发展。靶向腺苷A2A受体可能会治疗或预防OA。

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