Merck
CN

Cell-scaffold interaction within engineered tissue.

Experimental cell research (2014-03-19)
Haiping Chen, Yuanyuan Liu, Zhenglong Jiang, Weihua Chen, Yongzhe Yu, Qingxi Hu
摘要

The structure of a tissue engineering scaffold plays an important role in modulating tissue growth. A novel gelatin-chitosan (Gel-Cs) scaffold with a unique structure produced by three-dimensional printing (3DP) technology combining with vacuum freeze-drying has been developed for tissue-engineering applications. The scaffold composed of overall construction, micro-pore, surface morphology, and effective mechanical property. Such a structure meets the essential design criteria of an ideal engineered scaffold. The favorable cell-matrix interaction supports the active biocompatibility of the structure. The structure is capable of supporting cell attachment and proliferation. Cells seeded into this structure tend to maintain phenotypic shape and secreted large amounts of extracellular matrix (ECM) and the cell growth decreased the mechanical properties of scaffold. This novel biodegradable scaffold has potential applications for tissue engineering based upon its unique structure, which acts to support cell growth.

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Sigma-Aldrich
壳聚糖, low molecular weight
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壳聚糖, medium molecular weight
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明胶 来源于冷水鱼类的皮肤, solid
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壳聚糖, high molecular weight
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明胶 来源于牛皮, Type B, powder, BioReagent, suitable for cell culture
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壳聚糖 来源于虾壳, low-viscous
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明胶 来源于猪皮肤, high gel strength, suitable for microbiology
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明胶 来源于猪皮肤, Vetec, reagent grade, Type A, powder, gel strength ~300 g Bloom