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Simple method for immobilization of bio-macromolecules onto membranes of different types

机译:将生物大分子固定在不同类型膜上的简单方法

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In this method, an intermediate polyelectrolyte layer is first adsorbed on an oppositely charged membrane by electrostatic interactions. This leads to a charge inversion of the original membrane. Then the bio-macromolecule is bound to the intermediate polyelectrolyte layer, always by charge interactions. The method feasibility was shown with two bio-macromolecules, glucose oxydase and heparin, which were immobilized on negatively-charged membranes via polyethyleneimine, a cationic hydrophilic polymer. The immobilization of glucose oxydase on different polymer membranes led to high-activity and stable membranes for glucose biosensor. The anti-coagulation effect of immobilized heparin was not clearly evidenced in spite of the effective bio-species immobilization. The good properties of the immobilized enzyme was explained by the hydrophilicity of the intermediate polyelectrolyte layer, its high density in sites for enzyme binding, and the mild immobilization conditions.
机译:在该方法中,首先通过静电相互作用将中间聚电解质层吸附在带相反电荷的膜上。这导致原始膜的电荷反转。然后,生物大分子总是通过电荷相互作用结合到中间的聚电解质层。用两种生物大分子,葡萄糖氧化酶和肝素,证明了该方法的可行性,它们通过阳离子亲水聚合物聚乙烯亚胺固定在带负电荷的膜上。葡萄糖氧化酶固定在不同的聚合物膜上导致了用于葡萄糖生物传感器的高活性和稳定的膜。尽管有效地固定了生物物种,但固定化的肝素的抗凝作用并未得到明确证明。固定的酶的良好特性可以通过中间聚电解质层的亲水性,高的酶结合位点密度和适度的固定条件来解释。

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