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细胞外基质对细胞形态、动力学和功能的多模态影响。

Multimodal effects of an extracellular matrix on cellular morphology, dynamics and functionality.

机构信息

Department of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China.

College of Fisheries and Life Science, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

J Mater Chem B. 2024 Aug 14;12(32):7946-7958. doi: 10.1039/d4tb00360h.

Abstract

Articular cartilage defects can lead to pain and even disability in patients and have significant socioeconomic loss. Repairing articular cartilage defects remains a long-term challenge in medicine owing to the limited ability of cartilage to regenerate. At present, the treatment methods adopted in clinical practice have many limitations, thereby necessitating the rapid development of biomaterials. Among them, decellularized biomaterials have been particularly prominent, with numerous breakthroughs in research progress and translational applications. Although many studies show that decellularized cartilage biomaterials promote tissue regeneration, any differences in cellular morphology, dynamics, and functionality among various biomaterials upon comparison have not been reported. In this study, we prepared cartilage-derived extracellular matrix (cdECM) biomaterials with different bioactive contents and various physical properties to compare their effects on the morphology, dynamics and functionality of chondrocytes. This cellular multimodal analysis of the characteristics of cdECM biomaterials provided a theoretical basis for understanding the interactions between biomaterials and cells, thus laying an experimental foundation for the translation and application of decellularized cartilage biomaterials in the treatment of cartilage defects.

摘要

关节软骨缺损可导致患者疼痛甚至残疾,造成重大的社会经济损失。由于软骨的再生能力有限,修复关节软骨缺损一直是医学领域的长期挑战。目前,临床实践中采用的治疗方法存在诸多局限性,因此需要快速开发生物材料。其中,去细胞生物材料尤为突出,在研究进展和转化应用方面取得了许多突破。尽管许多研究表明去细胞软骨生物材料可促进组织再生,但尚未报道比较各种生物材料时细胞形态、动力学和功能的任何差异。在本研究中,我们制备了具有不同生物活性含量和不同物理性质的软骨衍生细胞外基质(cdECM)生物材料,以比较它们对软骨细胞形态、动力学和功能的影响。这种对 cdECM 生物材料特性的细胞多模态分析为理解生物材料与细胞之间的相互作用提供了理论基础,从而为去细胞软骨生物材料在软骨缺损治疗中的转化和应用奠定了实验基础。

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