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Modulation of the interstitial fluid pressure by high intensity focused ultrasound as a way to alter local fluid and solute movement: insights from a mathematical model

机译:高强度聚焦超声对组织液压力的调节以改变局部流体和溶质的运动:数学模型的见解

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摘要

High intensity focused ultrasound (HIFU) operated in thermal mode has been reported to reduce interstitial fluid pressure and improve the penetration of large macromolecules and nanoparticles in tumor and normal tissue. Little is understood about how the interstitial fluid pressure and velocity as well as the interstitial macromolecule transport are affected by HIFU exposure. A mathematical model is presented here which sheds light on the initial biophysical changes brought about HIFU. Our continuum model treats tissue as an effective poro-elastic material that reacts to elevated temperatures with a rapid drop in interstitial elastic modulus. Using parameters from the literature, the model is extrapolated to derive information on the effect in tumors, and to predict its impact on the convective and diffusive transport of macromolecular drugs. The model is first solved using an analytical approximation with step-wise changes at each boundary, and then solved numerically starting from a Gaussian beam approximation of the ultrasound treatment. Our results indicate that HIFU causes rapid drop in interstitial fluid pressure that may be exploited to facilitate convection of macromolecules from vasculature to the exposed region. However, following a short recovery period in which the interstitial fluid pressure is normalized, transport returns to normal and the advantages disappear over time. The results indicate that this effect is strongest for the delivery of large molecules and nanoparticles that are in the circulation at the time of treatment. The model may be easily applied to more complex situations involving effects on vascular permeability and diffusion.
机译:据报道,以热模式运行的高强度聚焦超声(HIFU)可以降低组织间液压力并提高大分子和纳米颗粒在肿瘤和正常组织中的渗透。对于HIFU暴露如何影响组织间的流体压力和速度以及组织间的大分子输运知之甚少。这里介绍了一个数学模型,该模型阐明了HIFU带来的初始生物物理变化。我们的连续体模型将组织视为有效的孔隙弹性材料,该材料可对升高的温度做出反应,并使间隙弹性模量迅速下降。使用文献中的参数,可以推断模型以得出有关肿瘤作用的信息,并预测其对大分子药物对流和扩散运输的影响。该模型首先使用在每个边界处具有逐步变化的解析逼近进行求解,然后从超声处理的高斯光束逼近开始进行数值求解。我们的结果表明,HIFU会引起组织液压力的快速下降,可以利用它来促进大分子从脉管系统到暴露区域的对流。但是,在将组织液压力标准化后的短暂恢复期之后,运输恢复正常,优势随时间消失。结果表明,这种作用对于治疗时循环中的大分子和纳米颗粒的递送最强。该模型可轻松应用于涉及血管通透性和扩散的更复杂情况。

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