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Anti-Inflammation and Joint Lubrication Dual Effects of a Novel Hyaluronic Acid/Curcumin Nanomicelle Improve the Efficacy of Rheumatoid Arthritis Therapy

机译:一种新型透明质酸/姜黄素纳米机械的抗炎和关节润滑双重影响提高了类风湿性关节炎治疗的疗效

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摘要

Rheumatoid arthritis (RA) is a chronic inflammatory autoimmune disease, which can cause endless suffering to the patients and severely impact their normal lives. To treat RA, the drugs in use have many serious side effects, high cost, or only focus on their anti-inflammatory mechanisms without taking joint lubrication into consideration. Therefore, in this study, we aim to construct a novel anti-RA drug composed of hyaluronic acid/curcumin (HA/Cur) nanomicelle to resolve these problems. Characterizations show that Cur is bound to HA by ester linkages and self assembles to form a spherical nanomicelle with a diameter of around 164 nm under the main driving of the hydrophilic and hydrophobic forces. The nanomicelle enjoys excellent biocompatibility that effectively promotes the proliferation of chondrocytes. When injected to the RA rats, the nanomicelle significantly lowers the edema degree of the arthritic rats compared to other groups; more critically, a dramatic decrease in friction between the surfaces of cartilage around the joints has been found, which protects the cartilage from the RA-induced damage. Additionally, systematic mechanism investigation indicates that the nanomicelle diminishes the expression of related cytokines and vascular endothelial growth factor, finally leading to the excellent performance. The newfound nanomicelle has a potential for clinical practice of RA therapy, which will contribute significantly to alleviating the pain of patients and improving the quality of life for them.
机译:类风湿性关节炎(RA)是一种慢性炎症性自身免疫疾病,可导致患者的无尽痛苦,并严重影响他们的正常生活。为了治疗RA,使用中的药物具有许多严重的副作用,成本高,或仅关注其抗炎机制而不考虑联合润滑。因此,在本研究中,我们的目标是构建由透明质酸/姜黄素(HA / CUR)Nanmicelle的新型抗RA药物来解决这些问题。特征表明,酯连杆和自组装在亲水和疏水力的主驱动下,自组装以通过酯连杆和自组装以形成直径约为164nm的球形纳米。 Nanomicelle享有出色的生物相容性,有效地促进了软骨细胞的增殖。注射到RA大鼠时,与其他组相比,Nanomicelle显着降低了关节炎大鼠的水肿程度;更为缘地,发现了关节周围的软骨表面之间的摩擦摩擦剧烈降低,从而保护软骨免受RA诱导的损伤。此外,系统机制调查表明,Nanomicelle减少了相关细胞因子和血管内皮生长因子的表达,最终导致优异的性能。 NewFound Nanomicelle有临床实践的临床实践,这将有助于减轻患者的痛苦并提高他们的生活质量。

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