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通过非晶态磷酸钙前体的渗透实现天然肌腱的仿生纤维内矿化,用于软-硬界面整合。

Biomimetic Intrafibrillar Mineralization of Native Tendon for Soft-Hard Interface Integration by Infiltration of Amorphous Calcium Phosphate Precursors.

机构信息

Dr. Li Dak Sum & Yip Yio Chin Center for Stem Cells and Regenerative Medicine and Department of Orthopedic Surgery of The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310058, P. R. China.

Key Laboratory of Tissue Engineering and Regenerative Medicine of Zhejiang Province, Zhejiang University, Hangzhou, 310058, P. R. China.

出版信息

Adv Sci (Weinh). 2023 Dec;10(34):e2304216. doi: 10.1002/advs.202304216. Epub 2023 Oct 23.

Abstract

Soft and hard tissues possess distinct biological properties. Integrating the soft-hard interface is difficult due to the inherent non-osteogenesis of soft tissue, especially of anterior cruciate ligament and rotator cuff reconstruction. This property makes it difficult for tendons to be mineralized and integrated with bone in vivo. To overcome this challenge, a biomimetic mineralization strategy is employed to engineer mineralized tendons. The strategy involved infiltrating amorphous calcium phosphate precursors into collagen fibrils, resulting in hydroxyapatite deposition along the c-axis. The mineralized tendon presented characteristics similar to bone tissue and induced osteogenic differentiation of mesenchymal stem cells. Additionally, the interface between the newly formed bone and tendon is serrated, suggesting a superb integration between the two tissues. This strategy allows for biomineralization of tendon collagen and replicating the hallmarks of the bone matrix and extracellular niche, including nanostructure and inherent osteoinductive properties, ultimately facilitating the integration of soft and hard tissues.

摘要

软组织和硬组织具有不同的生物学特性。由于软组织,特别是前交叉韧带和肩袖重建的固有非成骨性,因此整合软硬组织界面具有一定难度。这种特性使得肌腱难以在体内矿化并与骨整合。为了克服这一挑战,采用仿生矿化策略来工程化矿化肌腱。该策略涉及将无定形磷酸钙前体渗透到胶原原纤维中,导致羟基磷灰石沿着 c 轴沉积。矿化肌腱表现出与骨组织相似的特性,并诱导间充质干细胞的成骨分化。此外,新形成的骨和肌腱之间的界面呈锯齿状,表明两种组织之间具有极好的整合性。该策略允许肌腱胶原的生物矿化,并复制骨基质和细胞外龛位的特征,包括纳米结构和内在的成骨诱导特性,最终促进软硬组织的整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e4d/10700236/9c69f0e73249/ADVS-10-2304216-g001.jpg

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