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Spatial Distribution of Malate Dehydrogenase in Chitosan Scaffolds

机译:壳聚糖支架中苹果酸脱氢酶的空间分布

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In this work, confocal laser scanning microscopy was used to study the spatial distribution of malate dehydrogenase immobilized within three-dimensional macroporous chitosan scaffolds. The scaffolds were fabricated from solutions of native and hydrophobically modified chitosan polymer through the process of thermally induced phase separation. The hydrophobically modified chitosan is proposed to possess amphiphilic micelles into which the enzyme can be encapsulated and retained. To test this theory, we applied the immobilization procedure of Klotzbach and co-workers [J. Membr. Set 2006, 282 (1-2), 276-283] to solutions of fluorophore-tagged malate dehydrogenase in the presence of native and hydrophobically modified chitosan polymer and then tracked the distribution of enzymes in the resulting scaffolds using fluorescent microscopy. Results suggest that the modified chitosan does encapsulate the enzyme with a significant degree of retention and with altered distribution patterns, suggesting that hydrophobic modification of the chitosan polymer backbone does create amphiphilic regions that are capable of physically encapsulating and retaining enzymes. Commentary is also given on how this information can be correlated to enzyme activity and spatial distribution during immobilization processes.
机译:在这项工作中,共聚焦激光扫描显微镜用于研究固定在三维大孔壳聚糖支架内的苹果酸脱氢酶的空间分布。支架是通过热诱导相分离过程由天然和疏水改性的壳聚糖聚合物溶液制成的。提出疏水改性的壳聚糖具有两亲性胶束,可以将酶包封并保留在其中。为了验证这一理论,我们应用了Klotzbach及其同事的固定程序[J.膜。 Set 2006,282(1-2),276-283]在存在天然和疏水修饰的壳聚糖聚合物的情况下,对荧光团标记的苹果酸脱氢酶进行了处理,然后使用荧光显微镜追踪了所得支架中酶的分布。结果表明,改性的壳聚糖确实以显着程度的保留和改变的分布方式包封了酶,表明壳聚糖聚合物主链的疏水修饰确实产生了能够物理包封和保留酶的两亲性区域。还给出了在固定过程中如何将该信息与酶活性和空间分布相关的评论。

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