首页> 美国卫生研究院文献>Journal of Biomechanical Engineering >Experimental and Numerical Models of Three-Dimensional Gravity-Driven Flow of Shear-Thinning Polymer Solutions Used in Vaginal Delivery of Microbicides
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Experimental and Numerical Models of Three-Dimensional Gravity-Driven Flow of Shear-Thinning Polymer Solutions Used in Vaginal Delivery of Microbicides

机译:用于阴道杀菌剂的剪切稀化聚合物溶液三维重力驱动流动的实验和数值模型

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摘要

HIV/AIDS is a growing global pandemic. A microbicide is a formulation of a pharmaceutical agent suspended in a delivery vehicle, and can be used by women to protect themselves against HIV infection during intercourse. We have developed a three-dimensional (3D) computational model of a shear-thinning power-law fluid spreading under the influence of gravity to represent the distribution of a microbicide gel over the vaginal epithelium. This model, accompanied by a new experimental methodology, is a step in developing a tool for optimizing a delivery vehicle's structure/function relationship for clinical application. We compare our model with experiments in order to identify critical considerations for simulating 3D free-surface flows of shear-thinning fluids. Here we found that neglecting lateral spreading, when modeling gravity-induced flow, resulted in up to 47% overestimation of the experimental axial spreading after 90 s. In contrast, the inclusion of lateral spreading in 3D computational models resulted in rms errors in axial spreading under 7%. In addition, the choice of the initial condition for shape in the numerical simulation influences the model's ability to describe early time spreading behavior. Finally, we present a parametric study and sensitivity analysis of the power-law parameters' influence on axial spreading, and to examine the impact of changing rheological properties as a result of dilution or formulation conditions. Both the shear-thinning index (n) and consistency (m) impacted the spreading length and deceleration of the moving front. The sensitivity analysis showed that gels with midrange m and n values (for the ranges in this study) would be most sensitive (over 8% changes in spreading length) to 10% changes (e.g., from dilution) in both rheological properties. This work is applicable to many industrial and geophysical thin-film flow applications of non-Newtonian fluids; in addition to biological applications in microbicide drug delivery.
机译:艾滋病毒/艾滋病是一种日益严重的全球大流行病。杀微生物剂是悬浮在分娩载体中的药剂制剂,妇女在性交时可用来保护自己免受HIV感染。我们已经开发了在重力作用下扩散的剪切稀化幂律流体的三维(3D)计算模型,以表示杀菌剂凝胶在阴道上皮细胞上的分布。该模型与新的实验方法相结合,是开发用于优化运输工具的结构/功能关系以用于临床应用的工具的一步。我们将我们的模型与实验进行比较,以确定模拟稀疏液的3D自由表面流动的关键考虑因素。在这里,我们发现,在对重力感应流进行建模时,忽略横向扩展会导致90 s后对实验轴向扩展的估计高出47%。相反,在3D计算模型中包含横向扩展会导致轴向扩展的均方根误差低于7%。此外,数值模拟中形状初始条件的选择会影响模型描述早期时间扩展行为的能力。最后,我们对幂律参数对轴向扩展的影响进行了参数研究和敏感性分析,并检查了稀释或配制条件对流变性质变化的影响。剪切稀化指数(n)和稠度(m)都影响移动前沿的扩展长度和减速度。敏感性分析表明,在两个流变性质上,具有中值m和n值(在本研究范围内)的凝胶将最敏感(铺展长度变化超过8%)至10%变化(例如,稀释引起)。这项工作适用于非牛顿流体的许多工业和地球物理薄膜流动应用;除了在杀微生物剂药物递送中的生物学应用。

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