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Spatial localization of charged molecules by salt ions in oil-confined water microdroplets

机译:盐离子在油限水微量滴水中的带电分子的空间定位

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Cells contain more than 100 mM salt ions that are typically confined to dimensions of 5 to 10 micrometers by a hydrophobic cellular membrane. We found that in aqueous microdroplets having the same size as cells and that are confined in hydrocarbon oil, negatively charged molecules were distributed rather uniformly over the interior of the microdroplet, whereas positively charged molecules were localized at and near the surface. However, the addition of salt (NaCl) to the microdroplet caused all charged molecules to be localized near the oil-water interface. This salt-induced relocalization required less salt concentration in microdroplets compared to bulk water. Moreover, the localization became more prominent as the size of the microdroplet was reduced. The relocatization also critically depended on the type of oil. Our results imply that salt ions and different hydrophobic interfaces together may govern the local distribution of charged biomolecules in confined intracellular environments.
机译:细胞含有超过100mm的盐离子,其通过疏水性细胞膜通常限制在5至10微米的尺寸。我们发现,在具有与细胞的尺寸相同并且限制在烃油中的水性微量滴体中,带负电的分子相当均匀地分布在微滴的内部,而带正电荷的分子在表面附近局部局部化。然而,将盐(NaCl)添加到微滴水引起所有带电分子局部局部化在油水界面附近。与大量水相比,这种盐诱导的重定位化需要少于微型电池中的盐浓度。此外,随着微滴漏的尺寸减小,本地化变得更加突出。重新定位也依赖于油的类型。我们的结果意味着盐离子和不同的疏水接口在一起可以控制限制细胞内环境中带电生物分子的局部分布。

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