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脱细胞兔主动脉的制备与表征:一种在血管组织工程中有前景的支架材料

Preparation and characterization of a de-cellularized rabbit aorta as a promising scaffold in vascular tissue engineering.

作者信息

Song L, Duan P, Zhou Q

机构信息

First Affliated Hospital, Third Military Medical University Department of Orthopaedics Chongqing China.

First Affliated Hospital, Third Military Medical University Southwest Eye Hospital Chongqing China.

出版信息

Cell Mol Biol (Noisy-le-grand). 2016 Mar 20;62(3):31-8.

Abstract

Development of scaffold is essential for promoting and supporting healing process. This study aims to establish a decellularized rabbit aorta for clinical vascular tissue engineering therapy. We successfully prepared decellularized small-diameter aortic scaffolds and investigated several properties of this engineered vascular tissue scaffolds, including cell adhesion, hydrophilicity, cytotoxicity, biocompatibility. Results showed that decellularized aortas have a porous structure with few cell remnants as examined by histochemistry and scanning electron microscopy. Both vascular smooth muscle cells (VSMCs) and endothelial cells (ECs) cultured on decellularized aortas were adhered and proliferated well. Cell adhesion rates of rat VSMCs and ECs reached to 64.32±2.03% and 52.77±1.19%, respectively. VSMCs were able to migrate into outer surface of scaffolds. Hydrophilisity reached its maximal rate at 519±23% in 12 h. Importantly, no overt cytotoxicity was observed when grown in extraction solution of aortic scaffolds. Lastly, we also engrafted cell-scaffolds subcutaneously into nude mice in vivo. Implanted scaffold structure and proliferation of seeded cells were well maintained up to 8 weeks. In conclusion, we successfully prepared a decellularized rabbit aorta that not only largely maintains its extra-cellular structure, but also shows little toxicity. It may constitute a potential tool as a small diameter scaffold in vascular tissue engineering.

摘要

支架的开发对于促进和支持愈合过程至关重要。本研究旨在制备用于临床血管组织工程治疗的去细胞兔主动脉。我们成功制备了去细胞小直径主动脉支架,并研究了这种工程化血管组织支架的多种特性,包括细胞黏附、亲水性、细胞毒性、生物相容性。结果表明,通过组织化学和扫描电子显微镜检查,去细胞主动脉具有多孔结构且细胞残留极少。在去细胞主动脉上培养的血管平滑肌细胞(VSMCs)和内皮细胞(ECs)均能良好地黏附并增殖。大鼠VSMCs和ECs的细胞黏附率分别达到64.32±2.03%和52.77±1.19%。VSMCs能够迁移到支架的外表面。亲水性在12小时内达到最大值,为519±23%。重要的是,在主动脉支架提取液中培养时未观察到明显的细胞毒性。最后,我们还将细胞-支架皮下植入裸鼠体内。植入的支架结构和接种细胞的增殖在长达8周的时间内都得到了良好的维持。总之,我们成功制备了一种去细胞兔主动脉,它不仅在很大程度上保留了其细胞外结构,而且毒性很小。它可能成为血管组织工程中一种潜在的小直径支架工具。

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