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首页> 外文期刊>Scientific reports. >Soya-cerebroside, an extract of Cordyceps militaris, suppresses monocyte migration and prevents cartilage degradation in inflammatory animal models
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Soya-cerebroside, an extract of Cordyceps militaris, suppresses monocyte migration and prevents cartilage degradation in inflammatory animal models

机译:豆科骨苷,蛹虫草提取物,抑制单核细胞迁移并防止炎症动物模型中的软骨降解

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摘要

Pathophysiological events that modulate the progression of structural changes in osteoarthritis (OA) include the secretion of inflammatory molecules, such as proinflammatory cytokines. Interleukin-1beta (IL-1β) is the prototypical inflammatory cytokine that activates OA synovial cells to release cytokines and chemokines in support of the inflammatory response. The monocyte chemoattractant protein-1 (MCP-1/CCL2) is one of the key chemokines that regulate migration and infiltration of monocytes in response to inflammation. We show in this study that IL-1β-induced MCP-1 expression and monocyte migration in OA synovial fibroblasts (OASFs) is effectively inhibited by soya-cerebroside, an extract of Cordyceps militaris. We found that soya-cerebroside up-regulated of microRNA (miR)-432 expression via inhibiting AMPK and AKT signaling pathways in OASFs. Soya-cerebroside also effectively decreased monocyte infiltration and prevented cartilage degradation in a rat inflammatory model. Our findings are the first to demonstrate that soya-cerebroside inhibits monocyte/macrophage infiltration into synoviocytes, attenuating synovial inflammation and preventing cartilage damage by reducing MCP-1 expression in vitro and in vivo. Taken together, we suggest a novel therapeutic strategy based on the use of soya-cerebroside for the management of OA.
机译:调节骨关节炎(OA)结构变化进展的病理生理事件包括炎症分子的分泌,例如促炎细胞因子。白细胞介素-1beta(IL-1β)是激活OA滑膜细胞以释放细胞因子和趋化因子的原型炎症细胞因子,以支持炎症反应。单核细胞化学蛋白-1(MCP-1 / CCL2)是调节单核细胞的迁移和渗透的关键趋化因子之一。我们在这项研究中展示了OA滑膜成纤维细胞(OASFS)中的IL-1β诱导的MCP-1表达和单核细胞迁移是有效地抑制冬虫夏草的提取物。我们发现通过抑制OASFS中的AMPK和AKT信号传导途径来抑制MicroRNA(miR)-432表达的大豆脑膜。大豆脑膜还有效地降低了单核细胞浸润并防止了大鼠炎症模型中的软骨降解。我们的研究结果是第一个证明大豆 - 脑血糖蛋白抑制单核细胞/巨噬细胞浸润进入滑膜细胞,通过减少体外和体内的MCP-1表达来减轻滑膜炎症并防止软骨损伤。我们共同携带,我们建议一种基于使用大豆脑杂化物用于管理OA的豆科苷的治疗策略。

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