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Bronchial Mucus as a Complex Fluid: Molecular Interactions and Influence of Nanostructured Particles on Rheological and Transport Properties

机译:支气管粘液作为一种复杂的流体:分子相互作用和纳米结构粒子对流变学和传输性能的影响。

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Transport properties of bronchial mucus are investigated by two-stage experimental approach focused on: (a) rheological properties and (b) mass transfer rate through the stagnant layer of solutions of mucus components (mucine, DNA, proteins) and simulated multi-component mucus. Studies were done using thermostated horizontal diffusion cells with sodium cromoglycate and carminic acid as transferred solutes. Rheological properties of tested liquids was studied by a rotational viscometer and a cone-plate rheometer (dynamic method). First part of the studies demonstrated that inter-molecular interactions in these complex liquids influence both rheological and permeability characteristics. Transfer rate is governed not only by mucus composition and concentration but also by hydrophobic/hydrophilic properties of transported molecules. Second part was focused on the properties of such a layer in presence of selected nanostructured particles (different nanoclays and graphene oxide) which may be present in lungs after inhalation. It was shown that most of such particles increase visco-elasticity of the mucus and reduce the rate of mass transfer of model drugs. Measured effects may have adverse impact on health, since they will reduce mucociliary clearance in vivo and slow down drug penetration to the bronchial epithelium during inhalation therapy.
机译:通过两阶段实验方法研究了支气管粘液的转运特性,重点是:(a)流变特性和(b)通过粘液组分(粘液,DNA,蛋白质)和模拟多组分粘液溶液的停滞层的传质速率。使用恒温水平扩散池进行了研究,其中色甘酸钠和氨基甲酸为转移的溶质。通过旋转粘度计和锥板流变仪(动力学方法)研究了测试液体的流变特性。研究的第一部分证明了这些复杂液体中的分子间相互作用会影响流变特性和渗透特性。转移速率不仅取决于粘液的组成和浓度,还取决于所运输分子的疏水/亲水特性。第二部分着眼于在吸入后可能存在于肺中的选定纳米结构颗粒(不同的纳米粘土和氧化石墨烯)存在下这种层的性能。结果表明,大多数此类颗粒会增加粘液的粘弹性,并降低模型药物的质量转移速率。测得的效果可能会对健康产生不利影响,因为它们会降低吸入治疗期间的体内粘膜纤毛清除率并减慢药物对支气管上皮的渗透。

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