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Hydrophobic double walled carbon nanotubes interaction with phopholipidic model membranes: 1H-, 2H-, 31P NMR and ESR study

机译:疏水性双壁碳纳米管与磷脂模型膜的相互作用:1H-,2H-,31P NMR和ESR研究

摘要

The interactions of carbon nanotubes synthesized by catalytic chemical vapour deposition with phospholipidic bilayers, mimicking biological membranes, have been investigated using solid state 31P- and 2H NMR, 1H- and 31P NMR in liquids and ESR studies. It was found that carbon nanotubes can integrate the bilayer, depending on the overall cohesion of the membrane used. Whereas no direct interaction can be observed in small unilamellar vesicles or directly in the presence of short-chained phospholipids, carbon nanotubes incorporate into the membrane of multibilayers. The result is a significant 2–3 K lowering of the transition temperature in multibilayers of dimyristoyl lecithins, which is more markedly associated with increased fluidity in the most superficial part of the membrane below the transition temperature (292–300 K range). However, no ionophoric property was found on large unilamellar vesicles.
机译:使用固态31P-和2H NMR,1H-和31P NMR在液体中和ESR研究中,研究了通过催化化学气相沉积法合成的碳纳米管与模仿生物膜的磷脂双层的相互作用。发现碳纳米管可以整合双层,这取决于所用膜的整体内聚力。尽管在小的单层囊泡中或在短链磷脂的存在下没有观察到直接相互作用,但碳纳米管并入了多层膜中。结果是二豆蔻酰卵磷脂的多层双层的转变温度显着降低了2-3 K,这与转变温度以下(292-300 K范围)膜最表层的流动性增加显着相关。然而,在大的单层囊泡上没有发现离子载体性质。

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