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Calixarene-mediated liquid membrane transport of choline conjugates 3: The effect of handle variation on neurotransmitter transport

机译:杯芳烃介导的胆碱结合物的液膜运输3:手柄变化对神经递质运输的影响

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摘要

Upper rim phosphonic acid functionalized calix[4]arene affects selective transport of multiple molecular payloads through a liquid membrane. The secret is in the attachment of a receptor-complementary handle to the payload. We find that the trimethylammonium ethylene group present in choline is one of several general handles for the transport of drug and drug-like species. Herein we compare the effect of handle variation against the transport of serotonin and dopamine. We find that several ionizable amine termini handles are sufficient for transport and identify two ideal candidates. Their performance is significantly enhanced in HEPES buffered solutions. This inquiry completes a series of 3 studies aimed at optimization of this strategy. In completion a new approach towards synthetic receptor mediated selective small molecule transport has emerged; future work in vesicular and cellular systems will follow.
机译:上边缘膦酸官能化的杯[4]芳烃影响多个分子有效负载通过液膜的选择性转运。秘诀在于将接收器互补的手柄连接到有效载荷上。我们发现胆碱中存在的三甲基铵乙烯基团是药物和类药物物种运输的几种一般处理方法之一。在本文中,我们比较了手柄变化对血清素和多巴胺转运的影响。我们发现几个可电离的胺末端手柄足以运输并确定了两个理想的候选对象。在HEPES缓冲解决方案中,它们的性能得到了显着增强。该调查完成了旨在优化该策略的3项研究系列。最后,出现了一种合成受体介导的选择性小分子转运的新方法。囊泡和细胞系统的未来工作将接follow而至。

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