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The antibacterial activity of p-tert-butylcalix[6]arene and its effect on a membrane model: molecular dynamics and Langmuir film studies

机译:p-叔丁基碱[6]芳烃的抗菌活性及其对膜模型的影响:分子动力学和朗米尔薄膜研究

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摘要

The antibacterial activity of a calixarene derivative, p-tert-butylcalix[6]arene (Calix6), was assessed and was shown not to inhibit the growth of E. coli, S. aureus and B. subtilis bacteria. With the aim of gaining more insights into the absence of antibacterial activity of Calix6, the interaction of this derivative with DPPG, a bacterial cell membrane lipid, was studied. Langmuir monolayers were used as the model membrane. Pure DPPG and pure Calix6 monolayers, as well as binary DPPG:Calix6 mixtures were studied using surface pressure measurements, compressional modulus, Brewster angle and fluorescence microscopies, ellipsometry, polarization-modulation infrared reflection absorption spectroscopy and molecular dynamics simulations. Thermodynamic properties of the mixed monolayers were additionally calculated using thermodynamic parameters. The analysis of isotherms showed that Calix6 significantly affects the DPPG monolayers, modifying the isotherm profile and increasing the molecular area, in agreement with the molecular dynamics simulations. The presence of Calix6 in the mixed monolayers decreased the interfacial elasticity, indicating that calixarene disrupts the strong intermolecular interactions of DPPG hindering its organization into a compact arrangement. At low molar ratios of Calix6, the DPPG:Calix6 interactions are preferentially attractive, due to the interactions between the hydrophobic tails of DPPG and the tert-butyl groups of Calix6. Increasing the proportion of calixarene generates repulsive interactions. Calix6 significantly affects the hydrophobic tail organization, which was confirmed by PM-IRRAS measurements. Calix6 appears to be expelled from the mixed films at a biologically relevant surface pressure, pi = 30 mN m(-1), indicating a low interaction with the cell membrane model related to the absence of antibacterial activity.
机译:评估Calixarene衍生物,P-Tert-Butylcalix [6]芳烃(CALIX6)的抗菌活性,并显示出不抑制大肠杆菌,金黄色葡萄球菌和B.枯草芽孢杆菌的生长。目的是,研究了对Calix6的抗菌活性的缺失,研究了这种衍生物与DPPG的相互作用,一种细菌细胞膜脂质。 Langmuir单层用作模型膜。使用表面压力测量,压缩模量,布鲁斯特角度和荧光显微镜,椭圆形,偏振调制红外反射吸收光谱和分子动力学模拟研究了纯DPPG和纯Calix6单层,以及二进制DPPG:Calix6混合物。使用热力学参数另外计算混合单层的热力学性质。等温线的分析表明,CALIX6与分子动力学模拟一致地显着影响DPPG单层,改变等温曲线并增加分子面积。 CALIX6在混合单层中的存在降低了界面弹性,表明钙喹扰坏了DPPG将其组织妨碍其组织的强分子间相互作用变为紧凑的布置。在Calix6的低摩尔比,DPPG:Calix6相互作用优先吸引,这是由于DPPG的疏水尾和Calix6的叔丁基之间的相互作用。增加钙喹的比例产生了令人厌恶的相互作用。 CALIX6显着影响疏水性尾部组织,由PM-IRRAS测量确认。 Calix6似乎是从所述混合膜以生物学相关的表面压力,PI = 30 MN米(-1)排出时,指示与相关的不存在抗菌活性的细胞膜模型的低的相互作用。

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    Univ Estadual Ponta Grossa Dept Chem BR-84030900 Ponta Grossa Parana Brazil;

    Univ Estadual Ponta Grossa Dept Phys BR-84030900 Ponta Grossa Parana Brazil;

    Univ Fed Tecnol Parana Acad Dept Math Campus Ponta Grossa BR-84016210 Ponta Grossa Parana Brazil;

    Univ Estadual Ponta Grossa Dept Chem BR-84030900 Ponta Grossa Parana Brazil;

    Univ Fed Rio Grande do Sul Dept Organ Chem BR-91501970 Porto Alegre RS Brazil;

    Univ Estadual Ponta Grossa Dept Chem BR-84030900 Ponta Grossa Parana Brazil;

    Univ Estadual Ponta Grossa Dept Phys BR-84030900 Ponta Grossa Parana Brazil;

    Univ Fed Sao Paulo Inst Ciencias Ambientais Quim &

    Farmaceut BR-09972970 Sao Paulo SP Brazil;

    Concordia Univ Dept Chem &

    Biochem 7141 Sherbrooke St West Montreal PQ H4B 1R6 Canada;

    Concordia Univ Dept Chem &

    Biochem 7141 Sherbrooke St West Montreal PQ H4B 1R6 Canada;

    Univ Estadual Ponta Grossa Dept Chem BR-84030900 Ponta Grossa Parana Brazil;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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