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两性离子聚羧酸甜菜碱聚合物恢复炎症关节软骨的润滑。

Zwitterionic Poly-Carboxybetaine Polymers Restore Lubrication of Inflamed Articular Cartilage.

机构信息

Tissue Engineering + Biofabrication Laboratory, ETH Zurich, Otto-Stern-Weg 7, Zürich, 8093, Switzerland.

出版信息

Adv Healthc Mater. 2024 Nov;13(28):e2401623. doi: 10.1002/adhm.202401623. Epub 2024 Jul 15.

Abstract

Osteoarthritis is a degenerative joint disease that is associated with decreased synovial fluid viscosity and increased cartilage friction. Though viscosupplements are available for decades, their clinical efficacy is limited and there is ample need for more effective joint lubricants. This study first evaluates the tribological and biochemical properties of bovine articular cartilage explants after stimulation with the inflammatory cytokine interleukin-1β. This model is then used to investigate the tribological potential of carboxybetaine (CBAA)-based zwitterionic polymers of linear and bottlebrush architecture. Due to their affinity for cartilage tissue, these polymers form a highly hydrated surface layer that decreases friction under high load in the boundary lubrication regime. For linear pCBAA, these benefits are retained over several weeks and the relaxation time of cartilage explants under compression is furthermore decreased, thereby potentially boosting the weeping lubrication mechanism. Bottlebrush bb-pCBAA shows smaller benefits under boundary lubrication but is more viscous than linear pCBAA, therefore providing better lubrication under low load in the fluid-film regime and enabling a longer residence time to bind to the cartilage surface. Showing how CBAA-based polymers restore the lost lubrication mechanisms during inflammation can inspire the next steps toward more effective joint lubricants in the future.

摘要

骨关节炎是一种退行性关节疾病,与滑液粘度降低和软骨摩擦力增加有关。尽管几十年来一直有粘弹性补充剂可用,但它们的临床疗效有限,因此需要更有效的关节润滑剂。本研究首先评估了在炎症细胞因子白细胞介素 1β刺激下牛关节软骨外植体的摩擦学和生化特性。然后,该模型用于研究基于羧基甜菜碱(CBAA)的线性和刷型结构的两性离子聚合物的摩擦学潜力。由于这些聚合物对软骨组织的亲和力,它们形成了一个高度水合的表面层,在边界润滑条件下高负荷下降低了摩擦。对于线性 pCBAA,这些益处可以保留数周,并且压缩下软骨外植体的弛豫时间也降低了,从而可能增强了渗出润滑机制。瓶刷 bb-pCBAA 在边界润滑下的益处较小,但比线性 pCBAA 更粘稠,因此在流体膜润滑条件下低负荷下提供更好的润滑,并能够更长时间地停留在软骨表面上进行结合。展示 CBAA 基聚合物如何在炎症期间恢复失去的润滑机制,可以为未来更有效的关节润滑剂提供下一步的启示。

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