Magnetic nanoparticles: a promising component in RNA extraction process

F. Khatami, F. Najafi, F. Yari, R. Khavari-Nejad
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引用次数: 2

Abstract

Magnetic nanoparticles separation technology is a method for quick and easy extraction biomolecules such as proteins, DNA and RNA. The present work describes total RNA isolation procedure from transformed rose petals in our laboratory using magnetic nanoparticles as a solid phase absorbant. Petals are the main sources of secondary metabolites, i.e. carotenoids, anthocyanins, flavonoids and phenolic compounds, which interfere with nucleic acids isolation. The physical basis of this technique relies on the interaction with external magnetic fields, and therefore the magnetic moment of the particles and nucleic acid plays the main role. The present work showed that, quantity and quality of extracted RNA by magnetic procedure were higher than that of the conventional method in all tested samples. Additionally, preparing RNA samples, take less than 50 minutes as against several hours taken by common protocols. Furthermore, successful RNA isolation was found to follow-up reactions such as PCR amplification and restriction endonuclease digestion especially in colorful petals. The solid-phase extraction method for the isolation of RNA in this research offers several advantages over the conventional methods using phenol-chloroform extraction: it is convenient to use, rapid, time-saving and reducing the consumption of toxic organic solvents; therefore, making it more amenable to automation.
磁性纳米颗粒:RNA提取过程中有前景的组分
磁性纳米颗粒分离技术是一种快速、简便地提取蛋白质、DNA、RNA等生物分子的方法。目前的工作描述了总RNA分离程序从转化玫瑰花瓣在我们的实验室使用磁性纳米颗粒作为固相吸收剂。花瓣是次生代谢物的主要来源,即类胡萝卜素、花青素、类黄酮和酚类化合物,它们干扰核酸的分离。该技术的物理基础依赖于与外部磁场的相互作用,因此粒子和核酸的磁矩起主要作用。本研究表明,磁法提取的RNA的数量和质量均高于常规方法。此外,制备RNA样品需要不到50分钟,而普通方案需要几个小时。此外,在彩色花瓣中发现了成功的RNA分离,如PCR扩增和限制性内切酶酶切。本研究采用固相萃取法分离RNA,与传统的苯酚-氯仿萃取法相比,具有使用方便、快速、省时、减少有毒有机溶剂消耗等优点;因此,使它更适合自动化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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