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首页> 外文期刊>RSC Advances >Synthesis of lipase nano-bio-conjugates as an efficient biocatalyst: characterization and activity-stability studies with potential biocatalytic applications
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Synthesis of lipase nano-bio-conjugates as an efficient biocatalyst: characterization and activity-stability studies with potential biocatalytic applications

机译:用潜在的生物催化剂合成脂肪酶纳米生物缀合物作为高效生物催化剂的特征和活性稳定性研究

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In the present study, we have synthesized lipase-nano-bio-conjugates via immobilization of various lipases on multiwall carbon nano-tubes (MCNT), in order to construct an efficient and recyclable biocatalytic system. In a screening study lipase Pseudomonas fluorescens (PFL) acted as an efficient biocatalyst (lipase-nano-bio-conjugates) which showed higher retention of lipase activity and protein loading. Consequently the immobilization support : lipase (MCNT : PFL) composition was screened in which MCNT : PFL (2 : 1) was calculated as a robust biocatalyst composition which showed higher activity retention and protein loading. This nano-bio-conjugate was then characterized in detail with physical and biochemical techniques using SEM, TEM, FTIR, K-m, V-max, catalytic efficiency and (%) water content analysis. This developed biocatalyst was further used for practical biocatalytic applications such as O-acylation reactions. Various reaction parameters were optimized in detail like reactant molar ratio (2 : 3.5), solvent, MCNT : PFL biocatalyst amount (36 mg), temperature (50 degrees C) etc. The developed biocatalytic protocol was then extended to synthesize several (twenty-two) industrially important acylated moieties with an excellent yield, these products are well characterized by (HNMR)-H-1, (CNMR)-C-13 and GCMS analysis. Moreover in the present study, we have reviewed the potential industrial applications of various synthesized compounds. Also, we have studied the thermodynamic aspect which demonstrated more feasibility of use of immobilized MCNT : PFL lipase over free lipase. Interestingly, immobilized MCNT : PFL lipase showed 2.3 fold higher catalytic activity than free PFL. Besides this, the biocatalyst was efficiently recycled for up to five cycles. Thus the present protocol demonstrated, (i) synthesis of nanobio-conjugates as a bio-catalyst, (ii) detailed physical-biochemical characterization of nano-bioconjugates, (iii) optimization of the biocatalytic protocol (iv) practical biocatalytic applications along with a mechanistic study (v) a thermodynamic feasibility study and (vi) recyclability study.
机译:在本研究中,我们已经通过在多壁碳纳米管(MCNT),各种脂肪酶的固定化,以便构造一种有效的和可回收的生物催化系统合成的脂肪酶 - 纳米生物缀合物。在筛选研究脂肪酶充当这表明脂肪酶活性和蛋白质负载的较高的保留的有效的生物催化剂(脂肪酶 - 纳米生物缀合物)荧光假单胞菌(PFL)。因此,该固定化支持:脂肪酶(MCNT:PFL)的组合物进行筛选,其中MCNT:PFL(2:1)计算为一个强大的生物催化剂组合物,其表现出较高的活性保持和蛋白装载。然后将该纳米生物缀合物,其特征在于与使用SEM,TEM,FTIR,K-M,V-MAX,催化效率和(%)水含量分析物理和生物化学技术细节。此发达生物催化剂进一步用于实际生物催化应用,如O-酰化反应。各种反应参数等的反应物的摩尔比(2:3.5)的细节进行了优化,溶剂,MCNT:PFL生物催化剂量(36毫克),温度(50℃)等。然后,开发生物催化协议被扩展到几个合成(二十2)工业上重要的具有优异的产量的酰化基团,这些产品是公特征在于:(HNMR)-H-1,(CNMR)-C-13和GCMS分析。此外,在本研究中,我们已审查的各种合成化合物的潜在的工业应用。此外,我们研究这表明使用固定MCNT的更多可行性的热力学方面:PFL脂肪酶在游离酶。有趣的是,固定MCNT:PFL脂肪酶显示出2.3倍的较高的催化活性比游离PFL。除此之外,生物催化剂被有效回收多达五个循环。因此,本协议证明的,(ⅰ)纳米生物偶联物作为生物催化剂的合成,(ⅱ)中详述纳米生物缀合物的物理生化表征,(iii)所述的生物催化协议的优化(iv)与一沿实际生物催化应用机理研究(v)热力学可行性研究及(vi)可回收性研究。

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