实体瘤组织间液压力的建模

Jani Pusenjak, Damijan Miklavcic
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引用次数: 20

摘要

间质液压力(IFP)是阻碍大分子药物在实体肿瘤中摄取和分布的主要障碍之一。它已被证明可以降低体内抗肿瘤治疗中使用的不同大分子药物的有效性,另一方面,这些药物在体外条件下显示出非常好的抗肿瘤特性[L.T.陈晓明,陈晓明,陈晓明。微血管研究[j]。通过适当的模型,我们证明了实体瘤的不同生理特性与IFP之间的相关性。我们提出的模型与文献结果高度相关,因此很好地模拟了控制实体肿瘤流体动力学的生理过程。提出的模型的一个潜在用途是为未来的实验起草,这将导致更有效的化学或免疫治疗实体瘤。该模型也可用于解释有关IFP的不同实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of interstitial fluid pressure in solid tumor

Interstitial fluid pressure (IFP) is one of the main obstacles for macromolecular agents uptake and distribution in solid tumors. It has been demonstrated to reduce effectiveness of different macromolecular agents used in in vivo anti-tumor therapies, which on the other hand showed very good anti-tumor properties in in vitro conditions [L.T. Baxter, R.K. Jain, Microvascular Research 37 (1989) 77–104]. With an appropriate model we demonstrated the correlation between different physiological properties of solid tumor and IFP. The model which we present showed high correlation with results from literature and thus represents a good simulation of physiological processes that govern fluid dynamics in solid tumors. One of the potential uses of presented model is drafting of future experiments which would lead to more effective chemo- or immuno-therapy of solid tumors. This model could also serve as an aid to the interpretation of different experimental results concerning IFP.

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