首页> 外文期刊>Acta biomaterialia >Chondrogenically primed tonsil-derived mesenchymal stem cells encapsulated in riboflavin-induced photocrosslinking collagen-hyaluronic acid hydrogel for meniscus tissue repairs
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Chondrogenically primed tonsil-derived mesenchymal stem cells encapsulated in riboflavin-induced photocrosslinking collagen-hyaluronic acid hydrogel for meniscus tissue repairs

机译:软弱化底漆促滴石衍生的间充质干细胞,其包封在核黄素诱导的光泌菌胶原蛋白透明质酸水凝胶中,用于弯月面组织修理

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摘要

Current meniscus tissue repairing strategies involve partial or total meniscectomy, followed by allograft transplantation or synthetic material implantation. However, allografts and synthetic implants have major drawbacks such as the limited supply of grafts and lack of integration into host tissue, respectively. In this study, we investigated the effects of conditioned medium (CM) from meniscal fibrochondrocytes and TGF-beta 3 on tonsil-derived mesenchymal stem cells (T-MSCs) for meniscus tissue engineering. CM expanded T-MSCs were encapsulated in riboflavin-induced photocrosslinked collagen-hyaluronic acid (COL-RF-HA) hydrogels and cultured in chondrogenic medium containing TGF-beta 3. In vitro results indicate that CM-expanded cells followed by TGF-beta 3 exposure stimulated the expression of fibrocartilage-related genes (COL2, SOX9, ACAN, COL1) and production of extracellular matrix components. Histological assessment of in vitro and subcutaneously implanted in vivo constructs demonstrated that CM-expanded cells followed by TGF-beta 3 exposure resulted in highest cell proliferation, GAG accumulation, and collagen deposition. Furthermore, when implanted into meniscus defect model, CM treatment amplified the potential of TGF-beta 3 and induced complete regeneration.
机译:目前的弯月面包组织修复策略涉及部分或全裂线切除术,其次是同种异体移植移植或合成材料植入。然而,同种异体移植物和合成植入物具有主要缺点,例如接枝的有限供应和缺乏整合到宿主组织中。在该研究中,我们研究了在弯液组织工程中对扁桃体衍生的间充质干细胞(T-MSCs)对扁桃体锭剂和TGF-β3的调节培养基(cm)的影响。 CM扩增的T-MSCs被包封在核黄素诱导的光菌溶胶链接胶原蛋白 - 透明质酸(COL-RF-HA)水凝胶中并在含有TGF-β的软骨培养基中培养。体外结果表明CM-膨胀细胞随后是TGF-β3曝光刺激了纤维覆有关基因(COL2,SOX9,ACAN,COL1)的表达和细胞外基质组分的产生。体外和皮下植入体内构建体的组织学评估证明了CM-膨胀的细胞,然后是TGF-β3暴露导致最高的细胞增殖,GAG积​​聚和胶原沉积。此外,当植入弯月面缺陷模型时,CM处理扩增了TGF-β3的电位并诱导完全再生。

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