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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Optimization of cell disruption methods for efficient recovery of bioactive metabolites via NMR of three freshwater microalgae (chlorophyta)
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Optimization of cell disruption methods for efficient recovery of bioactive metabolites via NMR of three freshwater microalgae (chlorophyta)

机译:通过三种淡水微藻(NMR)的NMR优化细胞破碎方法以有效回收生物活性代谢物

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摘要

This study demonstrates the use of NMR techniques coupled with chemometric analysis as a high throughput data mining method to identify and examine the efficiency of different disruption techniques tested on microalgae (Chlorella variabilis, Scenedesmus regularis and Ankistrodesmus gracilis). The yield and chemical diversity from the disruptions together with the effects of pre-oven and pre-freeze drying prior to disruption techniques were discussed. HCl extraction showed the highest recovery of oil compounds from the disrupted microalgae (up to 90%). In contrast, NMR analysis showed the highest intensity of bioactive metabolites obtained for homogenized extracts pre-treated with freeze-drying, indicating that homogenizing is a more favorable approach to recover bioactive substances from the disrupted microalgae. The results show the potential of NMR as a useful metabolic fingerprinting tool for assessing compound diversity in complex microalgae extracts. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究证明了将NMR技术与化学计量学分析相结合,可作为一种高通量数据挖掘方法来识别和检查在微藻上测试的各种干扰技术(小球藻(Chlorella variabilis),Scenedesmus Regularis和Ankistrodesmus gracilis)的效率。讨论了来自破坏的产量和化学多样性,以及破坏技术之前的烤箱预干燥和冷冻前干燥的影响。 HCl萃取显示从破坏的微藻中回收的油化合物最高(高达90%)。相反,NMR分析显示,经冷冻干燥预处理的均质提取物获得的最高生物活性代谢物强度,表明均质是从破裂的微藻中回收生物活性物质的更有利方法。结果表明,NMR作为评估复杂微藻提取物中化合物多样性的有用的代谢指纹分析工具的潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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