首页> 外文期刊>Journal of the Science of Food and Agriculture >Potential application of superparamagnetic nanoparticles for extraction of bacterial genomic DNA from contaminated food and environmental samples.
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Potential application of superparamagnetic nanoparticles for extraction of bacterial genomic DNA from contaminated food and environmental samples.

机译:超顺磁性纳米粒子在从受污染的食物和环境样品中提取细菌基因组DNA的潜在应用。

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摘要

Isolation of high-molecular-weight DNA is essential for many molecular biology applications. Owing to the presence of polymerase chain reaction (PCR) inhibitors, there is a scarcity of suitable protocols for PCR-ready DNA extraction from food and natural environments. The conventional chemical methods of DNA extraction are time consuming and laborious and the yield is very low. Thus the aim of this research was to develop a simple, rapid, cost-effective method of genomic DNA extraction from food (milk and fruit juice) and environmental (pond water) samples and to detect bacterial contaminants present in those samples. RESULTS: This approach is efficient for both Gram-positive and Gram-negative bacteria from all the studied samples. Herein super paramagnetic bare iron oxide nanoparticles were implemented for bacterial genomic DNA isolation. The method was also compared to the conventional phenol-chloroform method in the context of quality, quantity and timing process. This method took only half an hour or less to obtain high-molecular-weight purified DNA from minimum bacterial contamination. Additionally, the method was directly compatible to PCR amplification. CONCLUSION: The problem of availability of suitable generalized methods for DNA isolation from various samples including food and environmental has been solved by a nanobiotechnological approach that may prove to be extremely useful in biotechnological applications
机译:高分子量DNA的分离对于许多分子生物学应用而言至关重要。由于存在聚合酶链反应(PCR)抑制剂,因此缺乏从食物和自然环境中提取适合PCR的DNA的合适方案。 DNA提取的常规化学方法既费时又费力,并且产率很低。因此,本研究的目的是开发一种简单,快速且经济高效的方法,用于从食品(牛奶和果汁)和环境(池水)样品中提取基因组DNA,并检测其中存在的细菌污染物。结果:该方法对于所有研究样品的革兰氏阳性和革兰氏阴性细菌均有效。在本文中,实现了超顺磁性裸氧化铁纳米颗粒用于细菌基因组DNA分离。在质量,数量和时间安排方面,还将该方法与常规苯酚-氯仿方法进行了比较。该方法仅用了半个小时或更短的时间即可从最小的细菌污染中获得高分子量的纯化DNA。另外,该方法与PCR扩增直接相容。结论:已经通过纳米生物技术方法解决了从各种样品(包括食品和环境)中分离DNA的适当通用方法的可用性问题,该方法可能被证明在生物技术应用中非常有用

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