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利用热致相分离法制备微载体,增强平滑肌细胞的黏附、生长和迁移。

Enhanced attachment, growth and migration of smooth muscle cells on microcarriers produced using thermally induced phase separation.

机构信息

Centre for Gastroenterology and Nutrition, University College London, London, UK.

出版信息

Acta Biomater. 2011 Apr;7(4):1542-9. doi: 10.1016/j.actbio.2010.12.022. Epub 2010 Dec 25.

DOI:10.1016/j.actbio.2010.12.022
PMID:21187173
Abstract

Microcarriers are widely used for the expansion of cells in vitro, but also offer an approach for combining cell transplantation and tissue bulking for regenerative medicine in a minimally invasive manner. This could be beneficial in conditions associated with muscle damage or atrophy, such as faecal incontinence, where the use of bulking materials or cell transplantation alone has proven to be ineffective. Microcarriers currently available have not been designed for this purpose and are likely to be suboptimal due to their physical and biochemical properties. The aim of this study was to investigate macroporous microspheres of polylactide-co-glycolide (PLGA), prepared using a thermally induced phase separation technique, for their suitability as cell microcarriers for the transplantation of smooth muscle cells. Cell attachment, growth and migration were studied and compared with commercially available porcine gelatin microcarriers (Cultispher-S) in suspension culture. Smooth muscle cells attached more rapidly to the PLGA microcarriers, which also significantly enhanced the rate of cell growth compared with Cultispher-S microcarriers. The majority of smooth muscle cells attached to the PLGA microcarriers in suspension culture were able to migrate away over a 15 day period of static culture, unlike Cultispher-S microcarriers which retained the majority of cells. The ability of PLGA microcarriers to enhance cell growth combined with their capacity to release cells at the sites of delivery are features that make them ideally suited for use as a cell transplantation delivery device in tissue engineering and regenerative medicine.

摘要

微载体广泛应用于细胞体外扩增,但也提供了一种微创结合细胞移植和组织填充的方法,用于再生医学。在与肌肉损伤或萎缩相关的疾病中,如大便失禁,这种方法可能是有益的,因为单独使用填充材料或细胞移植已被证明无效。目前可用的微载体并非为此目的而设计,由于其物理和生化特性,可能不太理想。本研究旨在研究聚乳酸-共-羟基乙酸(PLGA)的大孔微球,使用热诱导相分离技术制备,以评估其作为平滑肌细胞移植的细胞微载体的适用性。研究了细胞附着、生长和迁移,并与悬浮培养中的商业可得的猪明胶微载体(Cultispher-S)进行了比较。平滑肌细胞更快地附着到 PLGA 微载体上,与 Cultispher-S 微载体相比,PLGA 微载体显著提高了细胞生长速度。与 Cultispher-S 微载体不同的是,在悬浮培养中,附着在 PLGA 微载体上的大多数平滑肌细胞能够在 15 天的静态培养期间迁移,而 Cultispher-S 微载体保留了大多数细胞。PLGA 微载体能够增强细胞生长的能力,加上其在输送部位释放细胞的能力,使它们非常适合用作组织工程和再生医学中的细胞移植输送装置。

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