首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Translocation of alkali metal cations by lipophilic cyclodextrin derivatives through black lipid membranes.
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Translocation of alkali metal cations by lipophilic cyclodextrin derivatives through black lipid membranes.

机译:亲脂性环糊精衍生物通过黑色脂质膜转运碱金属阳离子。

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摘要

Lipophilic cyclodextrin (CD) derivatives, synthetic ionophores, were prepared to transport alkali metal cations across a black lipid membrane (BLM). The purpose of this study is to develop a new class of an artificial transportation system of alkali metal cations via bilayer lipid membranes, by using CD derivatives as a cation carrier. A lipophilic CD derivative incorporated into a BLM forms a complex with an alkali metal cation at one surface of the membrane. This charged complex migrates to the opposite side of the membrane and then releases the cation into the subphase. CD derivatives have various types of acyl groups as a complexing site and formed a 1:1 complex with the alkali metal cation. The complex formation was interpreted by an induced-fit mechanism. It is found that the ability of CD derivative for forming a complex and/or transporting cations across the BLM depends on the bulkiness of acyl groups. The conductivities of heptakis (2,6-di-O-propyl-3-O-propionyl)-beta-CD were higher than those of valinomycin regardless of sizes of cations. The order of the conductivity in all derivatives is Li+ < Na+ < K+ approximately = Rb+ approximately = Cs+, regardless of the types of acyl groups in the derivatives. The effects of alkali metal cation concentration in the aqueous phase and CD concentration in the membrane on the translocation are also discussed.
机译:亲脂性环糊精(CD)衍生物,合成的离子载体,已准备好通过黑色脂质膜(BLM)转运碱金属阳离子。这项研究的目的是通过使用CD衍生物作为阳离子载体,通过双层脂质膜开发一种新型的碱金属阳离子人工运输系统。掺入BLM中的亲脂性CD衍生物在膜的一个表面与碱金属阳离子形成络合物。这种带电荷的复合物迁移到膜的另一侧,然后将阳离子释放到亚相中。 CD衍生物具有各种类型的酰基作为络合位点,并与碱金属阳离子形成1:1的络合物。复合物的形成是通过诱导拟合机制来解释的。发现CD衍生物形成穿过BLM的复杂的和/或运输阳离子的能力取决于酰基的体积。无论阳离子的大小如何,七(2,6-二-O-丙基-3-O-丙酰基)-β-CD的电导率均高于缬氨霉素。在所有衍生物中,电导率的顺序为Li +

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