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首页> 外文期刊>Biotechnology Progress >Sodium Bicarbonate-Gelled Chitosan Beads as Mechanically Stable Carriers for the Covalent Immobilization of Enzymes
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Sodium Bicarbonate-Gelled Chitosan Beads as Mechanically Stable Carriers for the Covalent Immobilization of Enzymes

机译:碳酸氢钠凝胶化的壳聚糖珠子作为机械稳定的载体,用于共价固定酶

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The poor mechanical stability of chitosan has long impeded its industrial utilization as an immobilization carrier. In this study, the mechanical properties of chitosan beads were greatly improved through utilizing the slow rate of the sodium bicarbonate-induced chitosan gelation and combining it with the chemical cross-linking action of glutaraldehyde (GA). The GA-treated sodium bicarbonate-gelled chitosan beads exhibited much better mechanical properties and up to 2.45-fold higher observed activity of the immobilized enzyme (beta-D-galactosidase (beta-gal)) when compared to the GA-treated sodium tripolyphosphate (TPP)-gelled chitosan beads. The differences between the sodium bicarbonate-gelled and the TPP-gelled chitosan beads were proven visually and also via scanning electron microscopy, elemental analysis, and differential scanning calorimetry. Moreover, the optimum pH, the optimum temperature, the apparent K-m, and the apparent V-max of the beta-gals immobilized onto the two aforementioned types of chitosan beads were determined and compared. A reusability study was also performed. This study proved the superiority of the sodium bicarbonate-gelled chitosan beads as they retained 72.22 +/- 4.57% of their initial observed activity during the 13(th) reusability cycle whereas the TPP-gelled beads lost their activity during the first four reusability cycles, owing to their fragmentation. (C) 2017 American Institute of Chemical Engineers
机译:壳聚糖的机械稳定性较差长期以来将其工业利用作为固定载体。在这项研究中,通过利用碳酸氢钠诱导的壳聚糖凝胶化的慢速并将其与戊二醛(GA)的化学交联作用相结合,大大提高了壳聚糖珠粒的机械性能。与GA处理的三聚磷酸钠相比,GA处理的碳酸氢钠凝胶壳聚糖珠子表现出更好的机械性能和高达2.45倍的预防酶(β-D-半乳糖苷酶(Beta-Gal)的活性(β-D-半乳糖苷酶))( TPP) - 壳聚糖珠子。在目视和通过扫描电子显微镜,元素分析和差示扫描量热法验中经过视觉和TPP凝胶化壳聚糖珠的差异。此外,确定了最佳pH,最佳温度,表观K-M和固定在两个上述壳聚糖珠粒上的β-GAL的表观V-MAL。还进行了可重用性研究。本研究证明了在13(TH)可重复使用的循环期间保留了碳酸氢钠 - 凝胶化的壳聚糖珠粒的优越性,因为它们在13(TH)可重复使用的循环期间初始观察到的活性。在前四个可重用性循环期间,TPP凝胶珠丧失了它们的活动因为他们的碎片。 (c)2017美国化学工程师研究所

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