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地塞米松:软骨保护的皮质类固醇还是分解代谢的杀手?

Dexamethasone: chondroprotective corticosteroid or catabolic killer?

机构信息

MIT, Centre for Biomedical Engineering, 500 Technology Square, Cambridge, MA, 02139,

出版信息

Eur Cell Mater. 2019 Nov 22;38:246-263. doi: 10.22203/eCM.v038a17.

Abstract

While glucocorticoids have been used for over 50 years to treat rheumatoid and osteoarthritis pain, the prescription of glucocorticoids remains controversial because of potentially harmful side effects at the molecular, cellular and tissue levels. One member of the glucocorticoid family, dexamethasone (DEX) has recently been demonstrated to rescue cartilage matrix loss and chondrocyte viability in animal studies and cartilage explant models of tissue injury and post-traumatic osteoarthritis, suggesting the possibility of DEX as a disease-modifying drug if used appropriately. However, the literature on the effects of DEX on cartilage reveals conflicting results on the drug's safety, depending on the dose and duration of DEX exposure as well as the model system used. Overall, DEX has been shown to protect against arthritis-related changes in cartilage structure and function, including matrix loss, inflammation and cartilage viability. These beneficial effects are not always observed in model systems using initially healthy cartilage or isolated chondrocytes, where many studies have reported significant increases in chondrocyte apoptosis. It is crucially important to understand under what conditions DEX may be beneficial or harmful to cartilage and other joint tissues and to determine potential for safe use of this glucocorticoid in the clinic as a disease-modifying drug.

摘要

尽管糖皮质激素已被用于治疗类风湿性关节炎和骨关节炎疼痛超过 50 年,但由于其在分子、细胞和组织水平上可能产生的有害副作用,糖皮质激素的处方仍然存在争议。糖皮质激素家族的一员地塞米松(DEX)最近在动物研究和组织损伤及创伤后骨关节炎的软骨外植体模型中被证明可以挽救软骨基质丢失和软骨细胞活力,这表明 DEX 有可能成为一种适当使用的疾病修饰药物。然而,关于 DEX 对软骨的影响的文献表明,根据 DEX 暴露的剂量和时间以及所使用的模型系统,该药物的安全性存在相互矛盾的结果。总体而言,DEX 已被证明可预防与关节炎相关的软骨结构和功能变化,包括基质丢失、炎症和软骨活力。在最初使用健康软骨或分离的软骨细胞的模型系统中,并非总是观察到这些有益作用,许多研究报告说,软骨细胞凋亡显著增加。至关重要的是要了解在何种情况下 DEX 可能对软骨和其他关节组织有益或有害,并确定将这种糖皮质激素作为疾病修饰药物在临床上安全使用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fb2/7211090/855d35e26332/nihms-1579568-f0001.jpg

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