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Influence of the pH of glutaraldehyde and the use of dextran aldehyde on the preparation of cross-linked enzyme aggregates (CLEAs) of lipase from Burkholderia cepacia

机译:戊二醛pH与葡聚糖醛的影响对来自缅因力群岛脂肪酶的脂肪酶交联酶聚集体(CLEA)的影响

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摘要

The preparation of cross-linked enzyme aggregates (CLEAs) of lipase has been a challenge due the low amount of lysine residues that lipases have on their surface. The results show that CLEAs prepared using dextran aldehyde (100-200KDa) have a higher hydrolysis activity and particle size (activities between 3186 ± 21 U/g of CLEA and 4800 ± 30 U/g of CLEA and particle sizes between 52.6 ± 18.7 µm and 126.2 ± 53.5 µm) than CLEAs prepared with glutaraldehyde (0.1 KDa) (activities between 894 ± 16 U/g of CLEA and 2874 ± 20 U/g of CLEA and particle sizes between 21.2 ± 5.1 µm and 83.4 ± 24.9 µm); Thermal stability assays of bioctalysts at 60ºC at pH 7.0 using phosphate buffer 25 mM showed that CLEAs prepared with dextran aldehyde have lower residual activity after 50 hrs (maximum residual activity of 46.8% in the CLEA) than CLEAs prepared with glutaraldehyde (maximum residual activity of 70.2% in CLEA). When considering hydrolysis activity, thermal stability and residual activity of CLEAs as a criteria for selecting the best preparation conditions, it has been found that the best condition for CLEAs preparation are to use glutaraldehyde as cross-linking reagent at pH 9.5, at a concentration of 3.5 g/l, and an enzyme/albumin ratio of 15.
机译:脂肪酶的交联酶聚集体体(CLEA)的制备,是由于低量的赖氨酸残基的该脂肪酶在其表面上的一个挑战。结果表明,使用CLEAs葡聚糖醛制备(100-200KDa)具有更高的水解活性和颗粒尺寸(3186之间±21 U /克CLEA和4800±30 U /克52.6之间CLEA和颗粒大小的活动±18.7Âμm和126.2±53.5Âμm)比CLEAs用戊二醛(0.1 kDa)的制备(间894±16 U /克CLEA和2874±20 U / 21.2±5.1Âμm之间克CLEA和颗粒大小的活动和83.4±Â24.9Âμm);在60ºC使用磷酸盐缓冲液25 bioctalysts的热稳定性测定在pH 7.0毫显示出与葡聚糖醛制备的CLEAs具有较低的残留活性后50个小时(在CLEA的46.8%最大剩余活性)比CLEAs与戊二醛(最大剩余活性制备在CLEA 70.2%)。当考虑水解活性,热稳定性和CLEAs作为用于选择最好的准备条件的标准的残余活性,已经发现,对于CLEAs制备最佳状态是在使用戊二醛作为交联剂在pH 9.5,在浓度为3.5g /升,和15酶/白蛋白比率。

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