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首页> 外文期刊>Acta biomaterialia >A free-floating mucin layer to investigate the effect of the local microenvironment in lungs on mucin-nanoparticle interactions
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A free-floating mucin layer to investigate the effect of the local microenvironment in lungs on mucin-nanoparticle interactions

机译:一种自由浮动粘液层,以研究局部微环境在粘蛋白 - 纳米颗粒相互作用中的疗效

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Respiratory tract mucus represents an important barrier for pulmonary drug delivery. Understanding of mucin-nanoparticle interactions is a prerequisite for rational design of inhalable nanoparticles. In the present study, in order to establish a reliable quartz crystal microbalance with dissipation (QCM-D) approach to reveal the effect of the lung microenvironment on the mucin-nanoparticle interactions, we investigated the intrinsic features of the mucin layers immobilized onto sensors via chemical conjugation or physical adsorption by using atomic force microscopy (AFM) and QCM-D. Our results demonstrated that the covalently-grafted mucin layer responded more sensitively than the physically-adsorbed mucin layer to the local microenvironment shifting from PBS (pH 7.35 and ionic strength 30 mM) to PBS (pH 6.25 and ionic strength 150 mM) and resulted in a softer mucin layer with more hydrophobic areas exposed. Furthermore, using the QCM-D approach with the covalently-grafted mucin layer, we demonstrated the significant influence of the local microenvironment on the interaction of mucin with poly (lactic-co-glycolic acid)-based nanoparticles with different surface hydrophilicity. The present work underlines the QCM-D approach with a covalently-grafted mucin layer as a potent tool to elucidate the potential influence of local microenvironment on mucin-nanoparticle interactions.
机译:呼吸道粘液代表肺药递送的一个重要障碍。对粘蛋白 - 纳米粒子相互作用的理解是可吸入纳米颗粒的合理设计的先决条件。在本研究中,为了建立具有耗散(QCM-D)的可靠性石英晶体微稳定,揭示肺部微环境对粘蛋白 - 纳米粒子相互作用的影响,我们研究了固定在传感器上的粘蛋白层的内在特征使用原子力显微镜(AFM)和QCM-D通过化学缀合或物理吸附。我们的结果表明,共价嫁接的粘膜层比物理吸附的粘膜层更敏感地响应于局部微环境从PBS(pH 7.35和离子强度30mm)转移到PBS(pH6.25和离子强度150mm)并产生暴露具有更多疏水区域的软粘液层。此外,使用与共价接枝的粘蛋白层的QCM-D方法,我们证明了局部微环境对粘蛋白与具有不同表面亲水性的纳米颗粒的纳米粒子的相互作用的显着影响。本作者用共价接枝的粘蛋白层强调QCM-D方法作为效力工具,以阐明局部微环境对粘蛋白 - 纳米粒子相互作用的潜在影响。

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