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Amphiphiles capsaicin and triton X-100 regulate the chemotherapy drug colchicine’s membrane adsorption and ion pore formation potency

机译:两栖辣椒蛋白和Triton X-100调节化疗药物血清曲霉的膜吸附和离子孔形成效力

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摘要

Chemotherapy drugs (CDs), e.g. colchicine derivative thiocolchicoside (TCC) and taxol, have been found to physically bind with lipid bilayer membrane and induce ion pores. Amphiphiles capsaicin (Cpsn) and triton X-100 (TX100) are known to regulate lipid bilayer physical properties by altering bilayer elasticity and lipid monolayer curvature. Both CDs and amphiphiles are predicted to physically accommodate alongside lipids in membrane to exert their membrane effects. The effects of their binary accommodation in the lipid membrane are yet to be known. Firstly, we have performed experimental studies to inspect whether membrane adsorption of CDs (colchicine or TCC) gets regulated due to any membrane effects of Cpsn or TX100. We find that the aqueous phase presence of these amphiphiles, known to reduce the membrane stiffness, works towards enhancing the membrane adsorption of CDs. Our recently patented technology ‘direct detection method’ helps address the membrane adsorption mechanisms. Secondly, in electrophysiology records, we measured the amphiphile effects on the potency of ion channel induction due to CDs. We find that amphiphiles increase the CD induced channel induction potency. Specifically, the membrane conductance, apparently due to the ion channel induction by the TCC, increases substantially due to the Cpsn or TX100 induced alterations of the bilayer physical properties. Thus we may conclude that the binary presence of CDs and amphiphiles in lipid membrane may influence considerably in CD’s membrane adsorption, as well as the membrane effects, such as ion pore formation.
机译:化疗药物(CDS),例如已发现血清序列衍生物硫代糖苷(TCC)和紫杉醇与脂质双层膜和诱导离子孔进行物理结合。已知两双胶囊(CPSN)和TRITON X-100(TX100)通过改变双层弹性和脂质单层曲率来调节脂质双层物理性质。预计CD和两双层都预计将与膜中的脂质一起物理容纳以施加膜的效果。它们的二元容纳在脂质膜中的影响尚不知道。首先,我们已经进行了实验研究,以检查Cds的膜吸附是否受到CPSN或TX100的任何膜效应所受调节的。我们发现,已知减少膜刚度的这些两亲物的水相存在,适用于增强Cd的膜吸附。我们最近专利的技术'直接检测方法'有助于解决膜吸附机制。其次,在电生理记录中,我们测量了由于CDS引起的对离子通道诱导效力的两亲作用。我们发现两栖动物增加了CD诱导的通道感应效力。具体地,显然是由于TCC的离子通道感应显然是由于CPSN或TX100诱导的双层物理性质的改变而增加的基本上增加。因此,我们可以得出结论,脂质膜中CD和两亲物的二元存在可能在CD的膜吸附中大大影响,以及膜效应,例如离子孔形成。

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