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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Preparation, Mass Diffusion, and Biocompatibility Analysis of Porous-Channel Controlled Calcium-Alginate- Gelatin Hybrid Microbeads for In Vitro Culture of NSCs
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Preparation, Mass Diffusion, and Biocompatibility Analysis of Porous-Channel Controlled Calcium-Alginate- Gelatin Hybrid Microbeads for In Vitro Culture of NSCs

机译:NSCs体外培养的多孔通道控制钙-海藻酸钠-明胶杂化微球的制备,扩散和生物相容性分析。

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摘要

The Ca-alginate/gelatin (CAG) microbeads were prepared and evaluated through assays for their mechanical strength, permeability, and the feasibility as a cell carrier for in vitro culture of neural stem cells. The effects of different concentrations of sodium alginate, gelatin, and calcium chloride on the mechanical strength of CAG microbeads were determined using a self-made puncture force tester. Following this, the microbeads were immersed in DMEM media for a specified period to test its decay resistance. A diffusion model including a calculation formula of diffusion coefficient was built to investigate the diffusion of glucose and bovine serum albumin (BSA) through the wall of the microbeads. Furthermore, the feasibility of the microbeads for in vitro culture was identified using neural stem cells from Kunming mouse. Through a systematic approach and comprehensive analysis, the optimal gelatin conditions for microbead preparation were determined; the final combination of parameters of 1.5 % (wt%) sodium alginate (SA), 0.5 % (wt%) gelatin, and 4 % (wt%) CaCl_2 were the best conditions for NSC cultures. This experiment demonstrated that CAG microbeads had good cytocompatibility that made it suitable for the culture and successfully maintained stemness of neural stem cells.
机译:制备藻酸钙/明胶(CAG)微珠,并通过测定其机械强度,通透性以及作为神经干细胞体外培养的细胞载体的可行性进行评估。使用自制的穿刺力测试仪确定了不同浓度的藻酸钠,明胶和氯化钙对CAG微珠机械强度的影响。之后,将微珠浸入DMEM介质中一段指定的时间,以测试其抗衰减性。建立包括扩散系数计算公式的扩散模型,以研究葡萄糖和牛血清白蛋白(BSA)在微珠壁中的扩散。此外,使用昆明小鼠的神经干细胞鉴定了微珠体外培养的可行性。通过系统的方法和综合的分析,确定了制备微珠的最佳明胶条件。 1.5%(wt%)海藻酸钠(SA),0.5%(wt%)明胶和4%(wt%)CaCl_2的最终参数组合是NSC培养的最佳条件。该实验证明CAG微珠具有良好的细胞相容性,使其适合培养并成功地维持了神经干细胞的干性。

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