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首页> 外文期刊>Frontiers in Physiology >Dosage and Dose Schedule Screening of Drug Combinations in Agent-Based Models Reveals Hidden Synergies
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Dosage and Dose Schedule Screening of Drug Combinations in Agent-Based Models Reveals Hidden Synergies

机译:在基于代理的模型中药物组合的剂量和剂量时间表筛选揭示了隐藏的协同作用

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The fungus Candida albicans is the most common causative agent of human fungal infections and better drugs or drug combination strategies are urgently needed. Here, we present an agent-based model of the interplay of C. albicans with the host immune system and with the microflora of the host. We took into account the morphological change of C. albicans from the yeast to hyphae form and its dynamics during infection. The model allowed us to follow the dynamics of fungal growth and morphology, of the immune cells and of microflora in different perturbing situations. We specifically focused on the consequences of microflora reduction following antibiotic treatment. Using the agent-based model, different drug types have been tested for their effectiveness, namely drugs that inhibit cell division and drugs that constrain the yeast-to-hyphae transition. Applied individually, the division drug turned out to successfully decrease hyphae while the transition drug leads to a burst in hyphae after the end of the treatment. To evaluate the effect of different drug combinations, doses, and schedules, we introduced a measure for the return to a healthy state, the infection score. Using this measure, we found that the addition of a transition drug to a division drug treatment can improve the treatment reliability while minimizing treatment duration and drug dosage. In this work we present a theoretical study. Although our model has not been calibrated to quantitative experimental data, the technique of computationally identifying synergistic treatment combinations in an agent based model exemplifies the importance of computational techniques in translational research.
机译:白色念珠菌是人类真菌感染的最常见病原体,迫切需要更好的药物或药物组合策略。在这里,我们介绍了白色念珠菌与宿主免疫系统和宿主菌群相互作用的基于代理的模型。我们考虑到白色念珠菌从酵母到菌丝形式的形态变化及其在感染过程中的动力学。该模型使我们能够在不同的扰动情况下跟踪真菌生长和形态,免疫细胞和微生物区系的动态。我们特别关注抗生素治疗后微生物区系减少的后果。使用基于代理的模型,已经测试了不同类型的药物的有效性,即抑制细胞分裂的药物和抑制酵母菌丝向菌丝过渡的药物。单独使用时,分割药物被证明可以成功减少菌丝,而过渡药物在治疗结束后导致菌丝破裂。为了评估不同药物组合,剂量和时间表的效果,我们引入了一种恢复健康状态的措施,即感染评分。使用该措施,我们发现在过渡药物治疗中添加过渡药物可以提高治疗可靠性,同时最大程度地减少治疗时间和药物剂量。在这项工作中,我们提出了一项理论研究。尽管我们的模型尚未针对定量实验数据进行校准,但在基于主体的模型中以计算方式识别协同治疗组合的技术例证了计算技术在翻译研究中的重要性。

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