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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Silk sericin-alginate-chitosan microcapsules: Hepatocytes encapsulation for enhanced cellular functions
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Silk sericin-alginate-chitosan microcapsules: Hepatocytes encapsulation for enhanced cellular functions

机译:丝胶蛋白海藻酸盐壳聚糖微胶囊:肝细胞封装增强细胞功能

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The encapsulation based technology permits long-term delivery of desired therapeutic products in local regions of body without the need of immunosuppressant drugs. In this study microcapsules composed of sericin and alginate micro bead as inner core and with an outer chitosan shell are prepared. This work is proposed for live cell encapsulation for potential therapeutic applications. The sericin protein is obtained from cocoons of non-mulberry silkworm Antheraea mylitta. The sericin-alginate micro beads are prepared via ionotropic gelation under high applied voltage. The beads further coated with chitosan and crosslinked with genipin. The microcapsules developed are nearly spherical in shape with smooth surface morphology. Alamar blue assay and confocal microscopy indicate high cell viability and uniform encapsulated cell distribution within the sericin-alginate-chitosan microcapsules indicating that the microcapsules maintain favourable microenvironment for the cells. The functional analysis of encapsulated cells demonstrates that the glucose consumption, urea secretion rate and intracellular albumin content increased in the microcapsules. The study suggests that the developed sericin-alginate-chitosan microcapsule contributes towards the development of cell encapsulation model. It also offers to generate enriched population of metabolically and functionally active cells for the future therapeutics especially for hepatocytes transplantation in acute liver failure.
机译:基于封装的技术允许在人体局部区域长期递送所需的治疗产品,而无需使用免疫抑制剂药物。在这项研究中,制备了由水溶蛋白和藻酸盐微珠作为内核并具有壳聚糖外壳的微胶囊。提出了这项工作用于活细胞封装的潜在治疗应用。丝胶蛋白是从非桑蚕Antheraea mylitta的茧中获得的。通过在高施加电压下的离子凝胶法制备丝胶-藻酸盐微珠。珠子还用壳聚糖包被,并用京尼平交联。开发的微胶囊几乎是球形的,具有光滑的表面形态。 Alamar蓝分析和共聚焦显微镜检查表明,丝胶蛋白-藻酸盐-壳聚糖微胶囊内的细胞活力高,包封的细胞分布均匀,表明微胶囊为细胞保持了良好的微环境。封装细胞的功能分析表明,微胶囊中的葡萄糖消耗,尿素分泌速率和细胞内白蛋白含量增加。研究表明,开发的丝胶蛋白-藻酸盐-壳聚糖微胶囊有助于细胞封装模型的发展。它还为未来的治疗方法特别是急性肝衰竭肝细胞移植提供了丰富的代谢和功能活性细胞群体。

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