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通过不同的统计方法优化土曲霉的抗氧化潜力。

Optimization of antioxidant potential of Aspergillus terreus through different statistical approaches.

机构信息

Microbial Technology Laboratory, Department of Microbiology, Guru Nanak Dev University, Amritsar 143005, India.

出版信息

Biotechnol Appl Biochem. 2010 Oct;57(2):77-86. doi: 10.1042/BA20100202.

Abstract

A three-step optimization strategy, which includes a one-factor-at-a-time classical method and different statistical approaches [Plackett-Burman design and RSM (response surface methodology)], were applied to optimize the antioxidant potential of Aspergillus terreus. Antioxidant activity was assayed by different procedures and compared with TPC (total phenolic content). Primarily, different carbon and nitrogen sources were screened by classical methods, which revealed sucrose and NaNO3 to be the most suitable. The significance of the components of Czapek Dox's medium with respect to antioxidant activity was evaluated with the Plackett-Burman design, which supported sucrose and NaNO3 to be the most significant. In a second step, sucrose and NaNO3 along with temperature were further taken as three variables for RSM to study their interaction. Response surface analysis showed 4% sucrose, 0.1% NaNO3 and an incubation temperature of 30 °C to be the optimal conditions. Under these conditions, the antioxidant potential assayed through the different procedures was 88.1, 74.9 and 70.2% scavenging effect for DPPH (1,1-diphenyl-2-picryl hydrazyl) radical, ferrous ion and nitric oxide ion respectively. The reducing power showed an absorbance of 2.0 with 71.5% activity for the FRAP (ferric reducing antioxidant power) assay. TPC under different physio-chemical conditions and antioxidant potential under various assay procedures correlated positively.

摘要

采用三步优化策略,包括单因素实验法和不同的统计方法(Plackett-Burman 设计和响应面法),优化土曲霉的抗氧化能力。抗氧化活性通过不同的方法进行测定,并与 TPC(总酚含量)进行比较。首先,通过经典方法筛选不同的碳源和氮源,结果表明蔗糖和 NaNO3 是最合适的。Plackett-Burman 设计评估了 Czapek Dox 培养基成分对抗氧化活性的重要性,结果表明蔗糖和 NaNO3 是最重要的。在第二步中,进一步将蔗糖和 NaNO3 以及温度作为 RSM 的三个变量来研究它们的相互作用。响应面分析表明,4%的蔗糖、0.1%的 NaNO3 和 30°C 的培养温度是最佳条件。在这些条件下,通过不同方法测定的抗氧化能力分别为 DPPH(1,1-二苯基-2-苦基肼)自由基、亚铁离子和一氧化氮离子的 88.1%、74.9%和 70.2%清除效果。FRAP(铁还原抗氧化能力)测定的还原力吸光度为 2.0,活性为 71.5%。在不同生理化学条件下的 TPC 与在各种测定方法下的抗氧化能力呈正相关。

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