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载有肝组织细胞外基质的纳米纤维素-海藻酸钠-TCP 复合微球促进骨再生

Liver tissue-derived ECM loaded nanocellulose-alginate-TCP composite beads for accelerated bone regeneration.

机构信息

Department of Regenerative Medicine, College of Medicine, Soonchunhyang University, Cheonan 31151, Republic of Korea.

Institute of Tissue Regeneration, Soonchunhyang University, Cheonan 31151, Republic of Korea.

出版信息

Biomed Mater. 2022 Aug 24;17(5). doi: 10.1088/1748-605X/ac8901.

Abstract

Guided bone regeneration with osteoinductive scaffolds is a competitive edge of tissue engineering due to faster and more consistent healing. In the present study, we developed such composite beads with nanocellulose reinforced alginate hydrogel that carried-tricalcium phosphate (-TCP) nano-powder and liver-derived extracellular matrix (ECM) from porcine. Interestingly, it was observed that the beads' group containing ECM-TCP-alginate-nanocellulose (ETAC) was more cytocompatible than the others comprised ofTCP-alginate-nanocellulose (TAC) and alginate-nanocellulose (AC). Cell attachment on ETAC beads was dramatically increased with time. In parallel withresults, ETAC beads produced uniform cortical and cancellous bone in the femur defect model of rabbits within 2 months. Although the group TAC also produced noticeable bone in the defect site, the healing quality was improved and regeneration was faster after adding ECM. This conclusion was not only confirmed by micro-anatomical analysis but also demonstrated with x-ray microtomography. In addition, the characteristic moldable and injectable properties made ETAC a promising scaffold for clinical applications.

摘要

引导骨再生与骨诱导支架是组织工程的一个竞争优势,因为它可以更快、更一致地愈合。在本研究中,我们开发了一种具有纳米纤维素增强藻酸盐水凝胶的复合珠粒,其中载有三钙磷酸盐(-TCP)纳米粉末和来自猪的肝源性细胞外基质(ECM)。有趣的是,观察到含有 ECM-TCP-藻酸盐-纳米纤维素(ETAC)的珠粒比由 TCP-藻酸盐-纳米纤维素(TAC)和藻酸盐-纳米纤维素(AC)组成的其他珠粒更具有细胞相容性。细胞在 ETAC 珠上的附着随时间显著增加。与此结果平行的是,ETAC 珠在 2 个月内可在兔股骨缺损模型中产生均匀的皮质和松质骨。尽管 TAC 组在缺损部位也产生了明显的骨,但添加 ECM 后可以改善愈合质量并加快再生。这一结论不仅通过微观解剖分析得到证实,还通过 X 射线微断层扫描得到了证实。此外,其具有的可模塑和可注射特性使 ETAC 成为一种有前途的临床应用支架。

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