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首页> 外文期刊>Journal of Applied Polymer Science >Investigation on the development of sturdy bioactive hydrogel beads
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Investigation on the development of sturdy bioactive hydrogel beads

机译:坚固的生物活性水凝胶珠的研究

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摘要

Biocatalytic hydrogel beads, which retain higher activity, expand, and contract with changes in pH, having biocompatibility, are developed. Composite spherical beads of chitosan having a diameter of 1-2 mm were prepared by ionic gelation using sodium tripolyphosphate (TPP). Above 3% TPP, the activity of the enzyme decreases. The mechanical strength of the chitosan-TPP beads was further improved by the addition of clay or cassava starch granules. The immobilization of protease (fungal, Aspergillus) was done with glutaraldehyde crosslinking. The chitosanstarch hydrogel beads showed significant increase in firmness and stiffness when compared with chitosan-clay beads. The swelling studies show that the particles expand at pH 1.2 and contract at pH 7.4. The activity retention of the immobilized protease was as high as 70% and exhibited a high pH and lower temperature optima than the free enzyme. Chitosan-starch hydrogel beads exhibited degradation peaks at about 90-110 degrees C in TGA analysis. The biocatalyst beads retained 85% of the original catalytic activity even after eight cycles of repeat use. The freeze-dried beads has good storage stability and can be used either as artificial bioreactor systems in detergent or in therapeutic formulations (c) 2007 Wiley Periodicals, Inc.
机译:已开发出具有较高生物相容性的生物催化水凝胶珠,该珠保留较高的活性,随着pH的变化而膨胀和收缩。使用三聚磷酸钠(TPP)通过离子凝胶化制备了直径为1-2毫米的壳聚糖复合球形珠。 TPP超过3%时,酶的活性降低。通过添加粘土或木薯淀粉颗粒,可进一步提高壳聚糖-TPP珠的机械强度。蛋白酶(真菌,曲霉)的固定是通过戊二醛交联完成的。与壳聚糖粘土珠相比,壳聚糖淀粉水凝胶珠显示出坚固性和刚度的显着增加。溶胀研究表明,颗粒在pH 1.2时膨胀,在pH 7.4时收缩。固定化蛋白酶的活性保留率高达70%,与游离酶相比,具有较高的pH值和较低的最佳温度。在TGA分析中,壳聚糖-淀粉水凝胶珠在约90-110℃下显示降解峰。即使在重复使用八个循环后,生物催化剂珠仍保留原始催化活性的85%。冻干的珠粒具有良好的储存稳定性,可以用作洗涤剂中的人工生物反应器系统或用于治疗性制剂(c)2007 Wiley Periodicals,Inc.

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