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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Chitosan scaffolds for in vitro buffalo embryonic stem-like cell culture: an approach to tissue engineering.
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Chitosan scaffolds for in vitro buffalo embryonic stem-like cell culture: an approach to tissue engineering.

机译:用于体外水牛胚胎干样细胞培养的壳聚糖支架:一种组织工程方法。

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摘要

Three-dimensional (3D) porous chitosan scaffolds are attractive candidates for tissue engineering applications. Chitosan scaffolds of 70, 88, and 95% degree of deacetylation (% DD) with the same molecular weight were developed and their properties with buffalo embryonic stem-like (ES-like) cells were investigated in vitro. Scaffolds were fabricated by freezing and lyophilization. They showed open pore structure with interconnecting pores under scanning electron microscopy (SEM). Higher % DD chitosan scaffolds had greater mechanical strength, slower degradation rate, lower water uptake ability, but similar water retention ability, when compared to lower % DD chitosan. As a strategy to tissue engineering, buffalo ES-like cells were cultured on scaffolds for 28 days. It appeared that chitosan was cytocompatible and cells proliferated well on 88 and 95% DD scaffolds. In addition, the buffalo ES-like cells maintained their pluripotency during the culture period. Furthermore, the SEM and histological study showed that the polygonal buffalo ES-like cells proliferated well and attached to the pores. This study proved that 3D biodegradable highly deacetylated chitosan scaffolds are promising candidates for ES-like cell based tissue engineering and this chitosan scaffold and ES cell based system can be used as in vitro model for subsequent clinical applications.
机译:三维(3D)多孔壳聚糖支架是组织工程应用的有吸引力的候选者。开发了具有相同分子量的脱乙酰度为70%,88%和95%的壳聚糖支架(%DD),并在体外研究了它们与水牛胚胎干样(ES-like)细胞的特性。通过冷冻和冻干来制造支架。在扫描电子显微镜(SEM)下,它们显示出具有连通孔的开孔结构。与较低的DD壳聚糖百分比相比,较高的DD壳聚糖百分比支架具有更高的机械强度,较低的降解速率,较低的吸水能力,但保水能力相似。作为组织工程学的一种策略,将水牛ES样细胞在支架上培养28天。壳聚糖似乎具有细胞相容性,并且在88%和95%DD支架上细胞增殖良好。另外,在培养期间水牛ES样细胞保持其多能性。此外,SEM和组织学研究表明,多边形的水牛ES样细胞增殖良好并附着在毛孔上。这项研究证明3D可生物降解的高度脱乙酰化壳聚糖支架是基于ES样细胞的组织工程的有希望的候选者,并且该壳聚糖支架和基于ES细胞的系统可以用作后续临床应用的体外模型。

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