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In vivo mimicking model for solid tumor towards hydromechanics of tissue deformation and creation of necrosis

机译:实体瘤体内模拟模型向组织变形和坏死形成的流体力学

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摘要

The present work addresses transvascular and interstitial fluid transport inside a solid tumor surrounded by normal tissue (close to an in vivo mimicking setup). In general, biological tissues behave like a soft porous material and show mechanical behavior towards the fluid motion through the interstitial space. In general, forces like viscous drag that are associated with the fluid flow may compress the tissue material. On the macroscopic level, we try to model the motion of fluids and macromolecules through the interstitial space of solid tumor and the normal tissue layer. The transvascular fluid transport is assumed to be governed by modified Starling’s law. The poroelastohydrodynamics (interstitial hydrodynamics and the deformation of tissue material) inside the tumor and normal tissue regions is modeled using linearized biphasic mixture theory. Correspondingly, the velocity distribution of fluid is coupled to the displacement field of the solid phase (mainly cellular phase and extracellular matrix) in both the normal and tumor tissue regions. The corresponding velocity field is used within the transport reaction equation for fluids and macromolecules through interstitial space to get the overall solute (e.g., nutrients, drug, and other macromolecules) distribution. This study justifies that the presence of the normal tissue layer plays a significant role in delaying/assisting necrosis inside the tumor tissue. It is observed that the exchange process of fluids and macromolecules across the interface of the tumor and normal tissue affects the effectiveness factor corresponding to the tumor tissue.
机译:本工作解决了由正常组织包围的实体瘤内部的血管和间质液运输(接近体内模拟装置)。通常,生物组织的行为像柔软的多孔材料,并表现出对通过间隙空间的流体运动的机械行为。通常,与流体流相关的诸如粘性阻力的力可以压缩组织材料。在宏观层面上,我们试图通过实体瘤和正常组织层的间隙空间来模拟流体和大分子的运动。假定经血管输液受修正的史达琳定律控制。使用线性双相混合理论对肿瘤和正常组织区域内的孔隙弹性流体动力学(间质流体动力学和组织材料的变形)进行建模。相应地,流体的速度分布与正常组织和肿瘤组织区域中的固相(主要是细胞相和细胞外基质)的位移场耦合。相应的速度场在通过间隙空间的流体和大分子的传输反应方程中使用,以获得整体溶质(例如营养素,药物和其他大分子)的分布。该研究证明正常组织层的存在在延迟/辅助肿瘤组织内坏死中起重要作用。观察到流体和大分子在肿瘤和正常组织的界面上的交换过程影响与肿瘤组织相对应的有效性因子。

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