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具有天然仿生纳米纤维结构和软骨组织特异性微环境的分级多孔细菌纤维素支架,用于软骨再生和修复。

Hierarchical porous bacterial cellulose scaffolds with natural biomimetic nanofibrous structure and a cartilage tissue-specific microenvironment for cartilage regeneration and repair.

机构信息

Department of Bone and Joint Surgery, Department of Orthopedics, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, 145 Shandong middle Road, Shanghai 200001, China.

Jiangxi Key Laboratory of Nanobiomaterials, Institute of Advanced Materials, East China Jiaotong University, Nanchang 330013, China.

出版信息

Carbohydr Polym. 2022 Jan 15;276:118790. doi: 10.1016/j.carbpol.2021.118790. Epub 2021 Oct 20.

Abstract

The limited three-dimensional (3D) nano-scale pore structure and lack of biological function hamper the application of bacterial cellulose (BC) in cartilage tissue engineering. To address this challenge, 3D hierarchical porous BC/decellularized cartilage extracellular matrix (DCECM) scaffolds with structurally and biochemically biomimetic cartilage regeneration microenvironment were fabricated by freeze-drying technique after EDC/NHS chemical crosslinking. The BC/DCECM scaffolds exhibited excellent mechanical properties, water superabsorbency and shape-memory properties. Compared with the BC control, the BC/DCECM scaffolds exhibited enhanced cell adhesion and proliferation. Cartilage regeneration in vitro and in vivo indicated that the BC/DCECM scaffolds achieved satisfactory neocartilage tissue regeneration with superior original shape fidelity, exterior natural cartilage-like appearance and histologically cartilage-specific lacuna formation and ECM deposition. Furthermore, the BC/DCECM scaffolds achieved superior repair outcomes, as hyaline cartilage-like tissue formed within the defect sites. The present study constitutes a strong step toward the further application of BC in cartilage tissue engineering.

摘要

三维(3D)纳米级孔结构的局限性和缺乏生物功能阻碍了细菌纤维素(BC)在软骨组织工程中的应用。为了解决这一挑战,通过 EDC/NHS 化学交联后的冷冻干燥技术,制备了具有结构和生化仿生软骨再生微环境的 3D 分级多孔 BC/去细胞软骨细胞外基质(DCECM)支架。BC/DCECM 支架具有优异的机械性能、超吸水性和形状记忆性能。与 BC 对照组相比,BC/DCECM 支架表现出增强的细胞黏附和增殖。体外和体内的软骨再生表明,BC/DCECM 支架实现了令人满意的新软骨组织再生,具有优异的原始形状保真度、外部天然软骨样外观以及组织学上的软骨特定陷窝形成和 ECM 沉积。此外,BC/DCECM 支架实现了更优的修复效果,因为在缺陷部位形成了透明软骨样组织。本研究为 BC 在软骨组织工程中的进一步应用迈出了坚实的一步。

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