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Effect of Fe3O4 Nanoparticles on Mixed POPC/DPPC Monolayers at Air-Water Interface

机译:Fe3O4纳米颗粒对气-水界面混合POPC / DPPC单层的影响

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摘要

Fe3O4 nanoparticles (NPs) as a commonly used carrier in targeted drug delivery are widely used to carry drugs for the treatment of diseases. However, the mechanism of action of between Fe3O4 NPs and biological membranes is still unclear. Therefore, this article reports the influence of hydrophilic and hydrophobic Fe3O4 NPs on mixed 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) and 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) that were studied using the Langmuir-Blodgett (LB) film technique and an atomic force microscope (AFM). From surface pressure-area (π-A) isotherms, we have calculated the compression modulus. The results showed that hydrophobic Fe3O4 NPs enlarged the liquid-expanded (LE) and liquid-condensed (LC) phase of the mixed POPC/DPPC monolayers. The compressibility modulus of the mixed POPC/DPPC monolayer increases for hydrophilic Fe3O4 NPs, but the opposite happens for the hydrophobic Fe3O4 NPs. The adsorption of hydrophobic Fe3O4 NPs in mixed POPC/DPPC monolayers was much more than the hydrophilic Fe3O4 NPs. The interaction of hydrophilic Fe3O4 NPs with the head polar group of the mixed lipids increased the attraction force among the molecules, while the interaction of hydrophobic Fe3O4 NPs with the tail chain of the mixed lipids enhanced the repulsive force. The morphology of the monolayers was observed by AFM for validating the inferred results. This study is of great help for the application of Fe3O4 NPs in biological systems.
机译:Fe3O4纳米颗粒(NPs)作为靶向药物递送中常用的载体,被广泛用于携带用于治疗疾病的药物。然而,Fe3O4 NP与生物膜之间的作用机理仍不清楚。因此,本文报道了亲水性和疏水性Fe3O4 NPs对混合的1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(POPC)和1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱(DPPC)的影响使用Langmuir-Blodgett(LB)胶片技术和原子力显微镜(AFM)进行了研究。根据表面压力面积(π-A)等温线,我们计算了压缩模量。结果表明,疏水性Fe3O4 NPs扩大了POPC / DPPC混合单层的液相膨胀(LE)相和液相冷凝(LC)相。亲水的Fe3O4 NPs混合POPC / DPPC单层的压缩模量增加,而疏水的Fe3O4 NPs相反。混合的POPC / DPPC单层中疏水性Fe3O4 NPs的吸附远大于亲水性Fe3O4 NPs。亲水Fe 3 O 4 NPs与混合脂质的头极性基团的相互作用增加了分子间的吸引力,而疏水Fe 3的相互作用具有混合脂质尾链的 O 4 NP增强了排斥力。通过AFM观察单层的形态以验证推断的结果。该研究对于Fe 3 O 4 NP在生物系统中的应用有很大帮助。

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