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一种抗HIV杀微生物剂载体的腔内流动模型:弹性挤压与重力滑动相结合

A model of transluminal flow of an anti-HIV microbicide vehicle: Combined elastic squeezing and gravitational sliding.

作者信息

Szeri Andrew J, Park Su Chan, Verguet Stéphane, Weiss Aaron, Katz David F

出版信息

Phys Fluids (1994). 2008 Aug;20(8):83101. doi: 10.1063/1.2973188. Epub 2008 Aug 21.

Abstract

ELASTOHYDRODYNAMIC LUBRICATION OVER SOFT SUBSTRATES IS OF IMPORTANCE IN A NUMBER OF BIOMEDICAL PROBLEMS

From lubrication of the eye surface by the tear film, to lubrication of joints by synovial fluid, to lubrication between the pleural surfaces that protect the lungs and other organs. Such flows are also important for the drug delivery functions of vehicles for anti-HIV topical microbicides. These are intended to inhibit transmission into vulnerable mucosa, e.g., in the vagina. First generation prototype microbicides have gel vehicles, which spread after insertion and coat luminal surfaces. Effectiveness derives from potency of the active ingredients and completeness and durability of coating. Delivery vehicle rheology, luminal biomechanical properties, and the force due to gravity influence the coating mechanics. We develop a framework for understanding the relative importance of boundary squeezing and body forces on the extent and speed of the coating that results. A single dimensionless number, independent of viscosity, characterizes the relative influences of squeezing and gravitational acceleration on the shape of spreading in the Newtonian case. A second scale, involving viscosity, determines the spreading rate. In the case of a shear-thinning fluid, the Carreau number also plays a role. Numerical solutions were developed for a range of the dimensionless parameter and compared well with asymptotic theory in the limited case where such results can be obtained. Results were interpreted with respect to trade-offs between wall elasticity, longitudinal forces, bolus viscosity, and bolus volume. These provide initial insights of practical value for formulators of gel delivery vehicles for anti-HIV microbicidal formulations.

摘要

软质基底上的弹性流体动力润滑在许多生物医学问题中都很重要

从泪膜对眼表面的润滑,到滑液对关节的润滑,再到保护肺部和其他器官的胸膜表面之间的润滑。这种流动对于抗艾滋病毒局部杀菌剂载体的药物递送功能也很重要。这些杀菌剂旨在抑制病毒传播到易感染的黏膜,例如阴道。第一代原型杀菌剂有凝胶载体,插入后会扩散并覆盖管腔表面。其有效性源于活性成分的效力以及涂层的完整性和耐久性。递送载体的流变学、管腔生物力学特性以及重力都会影响涂层机制。我们建立了一个框架,以了解边界挤压和体力对所得涂层范围和速度的相对重要性。一个与粘度无关的单一无量纲数表征了牛顿流体情况下挤压和重力加速度对铺展形状的相对影响。第二个尺度涉及粘度,它决定了铺展速率。对于剪切变稀流体,卡雷au数也起作用。针对一系列无量纲参数开发了数值解,并在有限的情况下与渐近理论进行了很好的比较,在这种情况下可以得到这样的结果。结果根据壁弹性、纵向力、团块粘度和团块体积之间的权衡进行了解释。这些为抗艾滋病毒杀菌制剂的凝胶递送载体配方师提供了具有实际价值的初步见解。

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