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Integrating Models to Quantify Environment-Mediated Drug Resistance

机译:集成模型以量化环境介导的耐药性

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Drug resistance is the single most important driver of cancer treatment failure for modern targeted therapies, and the dialog between tumor and stroma has been shown to modulate the response to molecularly targeted therapies through proliferative and survival signaling. In this work, we investigate interactions between a growing tumor and its surrounding stroma and their role in facilitating the emergence of drug resistance. We used mathematical modeling as a theoretical framework to bridge between experimental models and scales, with the aim of separating intrinsic and extrinsic components of resistance in BRAF-mutated melanoma; the model describes tumor-stroma dynamics both with and without treatment. Integration of experimental data into our model revealed significant variation in either the intensity of stromal promotion or intrinsic tissue carrying capacity across animal replicates. (C)2017 AACR.
机译:耐药性是现代靶向疗法的癌症治疗失败的单一重要驾驶员,并且已经证明肿瘤和基质之间的对话通过增殖和存活信号调节对分子靶向疗法的响应。 在这项工作中,我们研究了肿瘤和周围种质之间的相互作用及其在促进耐药性的作用。 我们使用数学建模作为实验模型和尺度之间桥梁的理论框架,目的是在BRAF突变的黑色素瘤中分离抗性的内在和外在成分; 该模型描述了肿瘤 - 基质动态,无论是否有治疗。 实验数据对我们模型的整合揭示了在动物复制的基质促进或内在组织承载能力的强度的显着变化。 (c)2017年AACR。

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