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首页> 外文期刊>Current Pharmaceutical Biotechnology >Extracellular Production of the Oncolytic Enzyme, L-Asparaginase, by Newly Isolated Streptomyces sp. Strain NEAE-95 as Potential Microbial Cell Factories: Optimization of Culture Conditions Using Response Surface Methodology
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Extracellular Production of the Oncolytic Enzyme, L-Asparaginase, by Newly Isolated Streptomyces sp. Strain NEAE-95 as Potential Microbial Cell Factories: Optimization of Culture Conditions Using Response Surface Methodology

机译:新分离的链霉菌sp的溶瘤酶L-天冬酰胺酶的细胞外生产。菌株NEAE-95作为潜在的微生物细胞工厂:使用响应面方法优化培养条件

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L-asparaginase is an effective anti-neoplastic agent used in chemotherapy of acute lymphoblastic leukemia. One hundred and thirty actinomycete isolates were isolated from several soil samples collected from different localities in Egypt. All these isolates were purified and evaluated for their ability to produce L-asparaginase activity. Among them, strain NEAE-95 was selected and identified as Streptomyces parvus strain NEAE-95 based on morphological, cultural, physiological characteristics and 16S rRNA sequence. The sequence was deposited in the NCBI GenBank database under accession number KJ200341. L-asparaginase production by Streptomyces parvus NEAE-95 was optimized in shake flask culture. The Plackett-Burman statistical design was used for initial screening of sixteen factors for their significance on L-asparaginase production. Among the variables screened, incubation time, L-asparagine and yeast extract had significant effects on L-asparaginase production. The levels of these significant variables and their interaction effects were optimized by Box-Behnken statistical design. As a result, the maximal L-asparaginase production was achieved at the following fermentation conditions: g/L (dextrose 2, starch 20, L-asparagine 14, KNO_3 2, yeast extract 2, K_2HPO_42, MgSO_4.7H_2O 0.1, NaCl 0.1, FeSO_4.7H_2O 0.01), pH 7, temperature 30℃, agitation speed 200 rpm, inoculum size 2%, v/v and incubation time 8 days.
机译:L-天冬酰胺酶是用于急性淋巴细胞白血病化疗的有效抗肿瘤药。从埃及不同地区收集的几种土壤样品中分离出了一百三十种放线菌。纯化所有这些分离物并评估其产生L-天冬酰胺酶活性的能力。其中,根据形态,培养,生理特性和16S rRNA序列,选择NEAE-95菌株并鉴定为小链霉菌NEAE-95菌株。该序列以登录号KJ200341保藏在NCBI GenBank数据库中。在摇瓶培养中优化了链霉菌NEAE-95产生的L-天冬酰胺酶。使用Plackett-Burman统计设计方法初步筛选16种因子对L-天冬酰胺酶生产的重要性。在筛选的变量中,孵育时间,L-天冬酰胺和酵母提取物对L-天冬酰胺酶的产生具有显着影响。通过Box-Behnken统计设计优化了这些重要变量的水平及其交互作用。结果,在以下发酵条件下获得了最大的L-天冬酰胺酶产量:g / L(葡萄糖2,淀粉20,L-天冬酰胺14,KNO_3 2,酵母提取物2,K_2HPO_42,MgSO_4.7H_2O 0.1,NaCl 0.1, FeSO_4.7H_2O 0.01),pH 7,温度30℃,搅拌速度200 rpm,接种量2%,v / v,孵育时间8天。

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