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基于仿生纳米复合 PLGA/无定形磷酸钙支架和人脂肪源性干细胞的组织工程骨移植物。

Tissue engineered bone grafts based on biomimetic nanocomposite PLGA/amorphous calcium phosphate scaffold and human adipose-derived stem cells.

机构信息

Division of Plastic and Hand Surgery, University Hospital Zurich, ZKF, Sternwartstrasse 14, CH-8091 Zurich, Switzerland.

出版信息

Injury. 2012 Oct;43(10):1689-97. doi: 10.1016/j.injury.2012.06.004. Epub 2012 Jul 4.

Abstract

For tissue engineering of critical size bone grafts, nanocomposites are getting more and more attractive due to their controllable physical and biological properties. We report in vitro and in vivo behaviour of an electrospun nanocomposite based on poly-lactic-co-glycolic acid and amorphous calcium phosphate nanoparticles (PLGA/a-CaP) seeded with human adipose-derived stem cells (ASC) compared to PLGA. Major findings were that cell attachment, three-dimensional ingrowth and proliferation were very good on both materials. Cell morphology changed from a spindle-shaped fibroblast-like form to a more roundish type when ASC were seeded on PLGA, while they retained their morphology on PLGA/a-CaP. Moreover, we found ASC differentiation to a phenotype committed towards osteogenesis when a-CaP nanoparticles were suspended in normal culture medium without any osteogenic supplements, which renders a-CaP nanoparticles an interesting osteoinductive component for the synthesis of other nanocomposites than PLGA/a-CaP. Finally, electrospun PLGA/a-CaP scaffold architecture is suitable for a rapid and homogenous vascularisation confirmed by a complete penetration by avian vessels from the chick chorioallantoic membrane (CAM) within one week.

摘要

对于用于组织工程的临界尺寸骨移植物,由于纳米复合材料具有可控制的物理和生物特性,因此越来越受到关注。我们报告了一种基于聚乳酸-共-羟基乙酸和无定形磷酸钙纳米颗粒(PLGA/a-CaP)的电纺纳米复合材料的体外和体内行为,该复合材料中接种了人脂肪来源干细胞(ASC),并与 PLGA 进行了比较。主要发现是,两种材料的细胞附着、三维内生长和增殖都非常好。当 ASC 接种在 PLGA 上时,细胞形态从梭形成纤维细胞样形态变为更圆的形态,而在 PLGA/a-CaP 上时,它们保持其形态。此外,我们发现当 a-CaP 纳米颗粒悬浮在没有任何成骨补充剂的正常培养基中时,ASC 分化为一种向成骨表型分化的表型,这使得 a-CaP 纳米颗粒成为除 PLGA/a-CaP 之外的其他纳米复合材料合成的一种有趣的骨诱导成分。最后,电纺 PLGA/a-CaP 支架结构适合快速和均匀的血管化,这通过鸡胚绒毛尿囊膜(CAM)中的禽血管在一周内完全穿透得到证实。

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