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一种智能可注射复合水凝胶,具有磁导航和控制谷胱甘肽释放功能,可促进受损软骨组织中的软骨细胞排列和自我修复。

A smart injectable composite hydrogel with magnetic navigation and controlled glutathione release for promoting chondrocyte array and self-healing in damaged cartilage tissue.

机构信息

Department of Materials Science and Engineering, National Yang Ming Chiao Tung University, No. 1001, Ta-Hsueh Rd., Hsinchu 30010, Taiwan.

Department of Biomedical Engineering, I-Shou University (Yanchao Campus), No. 8, Yida Rd., Jiaosu Village, Yanchao District, Kaohsiung City 82445, Taiwan.

出版信息

J Mater Chem B. 2021 Nov 24;9(45):9370-9382. doi: 10.1039/d1tb02030g.

Abstract

Injectable cell-based hydrogels allow surgical operation in a minimally invasive way for articular cartilage lesions but the chondrocytes in the injectable hydrogels are difficultly arrayed and fixed at the site of interest to repair the cartilage tissue. In this study, an injectable hyaluronic acid-polyacrylic acid (HA-pAA) hydrogel was first synthesized using hyaluronic acid-cyclodextrin (HA-CD) and polyacrylic acid-ferrocene (pAA-Fc) to provide cell-delivery and self-healing. To promote the cell fixation and alignment, porous poly(lactic--glycolic acid) (PLGA) magnetic microcapsules (PPMMs) with glutathione (GSH) loaded and iron oxide nanoparticles (IO) located in the shell were designed. The GSH-loaded PPMMs with layer-by-layer (LbL) assembly of hyaluronic acid (HA) and GSH (LbL-PPMMs) can provide a two-stage rapid and slow release of GSH to modulate the self-healing of the HA-pAA hydrogel at the injured site. Furthermore, the chondrocytes embedded in the HA-pAA hydrogel could be delivered through CD44 receptors on the HA polymer chains of LbL-PPMMs toward the surface of the damaged site by an internal magnetic force. The composite hydrogel system of chondrocytes/LbL-PPMMs/HA-pAA can provide the damaged cartilage with a more even and smooth surface than other groups in a rabbit model after 8 weeks of implantation. In addition, the chondrocytes in the deep zone tissue exhibit a columnar array, similar to the cell arrangement in normal cartilage tissue. Together with the cell navigation behavior and GSH release from the LbL-PPMM/HA-pAA hydrogel, a full closure of lesions on the cartilage tissue can be achieved. Our results demonstrate the highly promising potential of the injectable LbL-PPMM/HA-pAA system in cartilage tissue repair.

摘要

可注射细胞水凝胶允许以微创的方式对关节软骨病变进行手术,但可注射水凝胶中的软骨细胞很难在感兴趣的部位排列和固定,以修复软骨组织。在这项研究中,首先使用透明质酸-环糊精(HA-CD)和聚丙烯酸-二茂铁(pAA-Fc)合成了可注射的透明质酸-聚丙烯酸(HA-pAA)水凝胶,以提供细胞输送和自修复。为了促进细胞固定和排列,设计了具有谷胱甘肽(GSH)负载和氧化铁纳米粒子(IO)位于壳中的多孔聚(乳酸-乙醇酸)(PLGA)磁性微胶囊(PPMMs)。通过透明质酸(HA)和 GSH 的层层(LbL)组装负载 GSH 的 PPMMs(LbL-PPMMs)可以提供 GSH 的两阶段快速和缓慢释放,以调节受损部位的 HA-pAA 水凝胶的自修复。此外,嵌入在 HA-pAA 水凝胶中的软骨细胞可以通过 LbL-PPMMs 上的透明质酸聚合物链中的 CD44 受体,通过内部磁力向损伤部位的表面输送。软骨细胞/LbL-PPMMs/HA-pAA 复合水凝胶系统在兔模型中植入 8 周后,可使受损软骨表面更加均匀和光滑,优于其他组。此外,深层组织中的软骨细胞呈柱状排列,类似于正常软骨组织中的细胞排列。结合 LbL-PPMM/HA-pAA 水凝胶的细胞导航行为和 GSH 释放,可以实现软骨组织损伤的完全闭合。我们的结果表明,可注射的 LbL-PPMM/HA-pAA 系统在软骨组织修复中具有很大的应用潜力。

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