首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Development of chitin cross-linked enzyme aggregates of L-methioninase for upgraded activity, permanence and application as efficient therapeutic formulations
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Development of chitin cross-linked enzyme aggregates of L-methioninase for upgraded activity, permanence and application as efficient therapeutic formulations

机译:甲基氨基硫酶的甲壳素交联酶聚集体的升级活性,持续和应用作为高效治疗制剂

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In this study, L-methioninase (METs) was precipitated from Pseudomonas putida MTCC 9782 and was crosslinked with a cross-linking agent glutaraldehyde to obtain a catalytically active insoluble enzyme. Among the various precipitants tested, ammonium sulfate displayed the highest precipitating (80%) efficiency. A double response statistical concept, software that provides 20 different runs, was employed to assess the role of precipitant, concentration of cross-linking agent, and duration of cross linking. From the different 20 runs performed, the highest enzyme activity was observed in run 6 (88.17 U): the aggregate size was 11.57 mu m, the concentration of saturated ammonium sulfate was 80% and glutaraldehyde 2 mM, and the incubation period was 12 h. R-2 values of 0.9754 (enzyme activity) and 0.9203 (aggregate size) were obtained, which showed an enhanced association between the experimental and predicted values of enzyme activity. Enzyme molecules covalently cross-linked with chitin beads showed increased activities compared to free enzymes and enzymes cross-linked with glutaraldehyde. FTIR spectra confirmed the secondary structural alterations between CLEA-METs and chitin-crosslinked CLEA-METs. Thermal stability assays showed that chitin cross-linked CLEA-METs and CLEA-METs retained maximum enzyme activities of 95% and 80% at temperatures 55 degrees C and 60 degrees C, respectively. Storage stability assays showed that CLEA-METs retained 65% of their initial activity and chitin-immobilized CLEAs retained 88% of their activity. Moreover, scanning electron microscopy, transmission electron microscopy, and high content screening imaging technique revealed that chitin-immobilized CLEA-MET microspheres showed good monodispersity and mesoporous structure with the amorphous clusters of CLEA with few pores. Cytotoxicity analysis demonstrated that chitin-immobilized CLEA-MET significantly inhibited the proliferation of A549 cells up to 96.66% compared to free enzyme (72%) and CLEA-METs (76%). (C) 2019 Elsevier B.V. All rights reserved
机译:在该研究中,将L-甲硫氨酸酶(METS)从Pseudomonas Putida MTCC 9782中沉淀出来,用交联剂戊二醛交联,得到催化活性的不溶性酶。在测试的各种沉淀剂中,硫酸铵显示出最高的沉淀(80%)效率。采用双重响应统计概念,提供20种不同运行的软件来评估沉淀剂,交联剂浓度的作用和交联的持续时间。从所执行的不同20次运行中,在运行6(88.17U)中观察到最高酶活性:骨料尺寸为11.57μm,饱和硫酸铵的浓度为80%,戊二醛2mm,孵育期为12小时。获得了0.9754(酶活性)和0.9203(骨料大小)的R-2值,其显示了酶活性的实验性和预测值之间的增强关联。与甲壳素珠子共价交联的酶分子显示出与游离酶和与戊二醛交联的酶相比增加的活性。 FTIR光谱证实了CLEA-METS和甲壳素交联的CLEA-MET之间的二次结构改变。热稳定性测定表明,几丁质交联的CLEA-MET和CLEA-MET在55℃和60℃的温度下保留了95%和80%的最大酶活性。储存稳定性测定显示,CLEA-METS保留了65%的初始活性,并且依托键固定的植物保留了88%的活性。此外,扫描电子显微镜,透射电子显微镜和高含量筛查成像技术揭示了几丁质 - 固定的CLEA-Met微球,显示出良好的单反叠性和介孔结构,具有少量孔的无定形簇。细胞毒性分析表明,与游离酶(72%)和CLEA-MET(76%)相比,依锡固定的CLEA-MET显着抑制A549细胞的增殖高达96.66%。 (c)2019 Elsevier B.v.保留所有权利

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