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首页> 外文期刊>Bioprocess and Biosystems Engineering >Preparation of cross-linked enzyme aggregates of lipase from Aspergillus niger: process optimization, characterization, stability, and application for epoxidation of lemongrass oil
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Preparation of cross-linked enzyme aggregates of lipase from Aspergillus niger: process optimization, characterization, stability, and application for epoxidation of lemongrass oil

机译:脂肪毒素脂肪酶的交联酶聚集体的制备:工艺优化,表征,稳定性和柠檬草醚环氧化的应用

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Cross-linked enzyme aggregates (CLEAs) of lipase were prepared after fractional precipitation with 40-50% ammonium sulfate and then cross-linking with glutaraldehyde. The process variables for the preparation of lipase-CLEAs such as glutaraldehyde concentration, cross-linking period, and initial pH of medium were optimized. The optimized conditions for the preparation of lipase-CLEAs were 25 mM/80 min/pH 7.0, and 31.62 mM/90 min/pH 6.0 with one factor at a time approach and numerical optimization with central composite design, respectively. Lipase-CLEAs were characterized by particle size analysis, SEM, and FTIR. Cross-linking not only shifted the optimal pH and temperature from 7.0 to 7.5 and 40-45 to 45-50 degrees C, but also altered the secondary structure. Lipase-CLEAs showed an increase in K-m by 7.70%, and a decrease in V-max by 16.63%. Lipase-CLEAs presented better thermostability than free lipase as evident from thermal inactivation constants (t(1/2), D and E-d value), and thermodynamic parameters (E-d, Delta H degrees, Delta G degrees, and Delta S degrees) in the range of 50-70 degrees C. Lipase-CLEAs retained more than 65% activity up to four cycles and showed good storage stability for 12 days when stored at 4 +/- 2 degrees C. They were successfully utilized for the epoxidation of lemongrass oil which was confirmed by changes in iodine value, epoxide value, and FTIR spectra.[GRAPHICS]
机译:在用40-50%硫酸铵的分数沉淀后制备交联酶聚集体(CLEA)脂肪酶,然后与戊二醛交联。优化了制备脂肪酶-LEA的过程变量,例如戊二醛浓度,交联期和培养基初始pH。制备脂肪酶-LI基亚的优化条件为25mm / 80mm / pH 7.0,31.62mm / 90 min / pH 6.0,分别具有中央复合设计的时间方法和数值优化。通过粒度分析,SEM和FTIR表征脂肪酶-LEA。交联不仅将最佳pH和7.0至7.5和40-45转移到45-50℃,而且改变了二级结构。脂肪酶-CLE在k-m增加7.70%,v-max降低16.63%。脂肪酶-LEA在热失活常数(T(1/2),D和ED值)中具有比游离脂肪酶更好的热脂肪酶,以及热力学参数(ED,DERTA H VERES,DELTA G VERES和DELTA S DEGRE) 50-70℃的范围为脂肪酶-LE基本,最高可达4个循环的65%以上的活性,并且当储存在4 +/- 2摄氏度C时,储存稳定性良好的储存稳定性。它们已成功用于柠檬草油的环氧化。通过碘值,环氧化物值和FTIR光谱的变化来证实。[图形]

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