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Selective separation of biomolecules by reversed micelles-extraction of proteins and nucleic acids-

机译:通过反胶束萃取蛋白质和核酸来选择性分离生物分子

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Reversed micelles,which are nanostructural moelcular assemblies formed by surfactant molecules in an organic solvent,are a promising separation tool for biomolecules such as amino acids,proteins and nucleic acids.In the separation by reversed micelles,biomolecules transfer from an aqueous soution into a reversed micellar phase through the interaction between surfactant moelcules and a target biomolecule:e.g.electrostatic interaction has been found to play an important role in the degree of extraction,and the design of reversed micelles often decides the success of separtion efficiency.In this article,we reviewed the recent investigation concerning the reversed micellar exraction techniques for biomolecules;mainly proteins and deoxyribonucleic acids (DNAs).We also describe the transfer mechanism of proteins through the protein-surfactant complexes at the liquid-liquid interface.DNAs were first demonstrated to be transferred from an aqueous solution to the reversed micellar phase by using a cationic surfactant.Furthermore,we introduce recent novel application of reversed micelles to the separation of biomolecules.
机译:反向胶束是由表面活性剂分子在有机溶剂中形成的纳米结构分子组装体,是一种很有前途的分离工具,用于分离氨基酸,蛋白质和核酸等生物分子。在通过反向胶束进行分离时,生物分子从水性胶体转移到反向胶束中。通过表面活性剂分子与目标生物分子之间的相互作用形成胶束相:例如,静电相互作用在萃取程度中起着重要作用,而反胶束的设计通常决定分离效率的成功。在本文中,我们进行了综述最近有关生物分子胶束反萃取技术的研究;主要是蛋白质和脱氧核糖核酸(DNA)。我们还描述了蛋白质在液-液界面上通过蛋白质表面活性剂复合物的转移机理。用usin将水溶液逆胶束相此外,我们介绍了反胶束在生物分子分离中的最新应用。

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