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Bioconjugation of enzyme with silica microparticles: a promising platform for α-amylase partitioning

机译:二氧化硅微粒与酶的生物结合:α-淀粉酶分配的有前途的平台

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Here, we report the implementation of α-amylase conjugated silica microparticles for improvement of α-amylase partitioning in a PEG–organic salt-based aqueous two phase system. A direct reduction method was employed for the synthesis of silica microparticles with simultaneous introduction of α-amylase. In this context, we synthesized three different silica α-amylase conjugated microparticles with variation of tetraethyl orthosilicate concentration, and thus the effect of final particle size and enzyme loading on partitioning was also studied. The partition coefficient ratio of α-amylase to Si:α-amylase of 2.186?:?21.701 validated an almost tenfold increase in separation. The microscopic structure of the system was thoroughly investigated in order to understand the extraction mechanism and any possible denaturation. Improved partition coefficients can be interpreted by the formation of α-amylase–silica–PEG carriers. Furthermore, circular dichroism (CD) spectra validated partial unfolding of the enzyme.
机译:在这里,我们报告了在PEG-有机盐基水相两相系统中改善α-淀粉酶分配的α-淀粉酶共轭二氧化硅微粒的实现。采用直接还原法合成二氧化硅微粒,同时引入α-淀粉酶。在此背景下,我们合成了三种不同的硅酸α-淀粉酶共轭微粒,它们具有原硅酸四乙酯浓度的变化,因此,还研究了最终粒径和酶负荷对分配的影响。 α-淀粉酶与Si:α-淀粉酶的分配系数之比为2.186?:?21.701,证明分离度几乎提高了十倍。对系统的微观结构进行了彻底研究,以了解提取机理和任何可能的变性。分配系数的提高可以通过α-淀粉酶-二氧化硅-PEG载体的形成来解释。此外,圆二色性(CD)光谱验证了酶的部分展开。

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