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What Tumor Dynamics Modeling Can Teach us About Exploiting the Stem-Cell View for Better Cancer Treatment

机译:肿瘤动力学建模可以教我们如何利用干细胞视图更好地治​​疗癌症

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摘要

The cancer stem cell hypothesis is that in human solid cancers, only a small proportion of the cells, the cancer stem cells (CSCs), are self-renewing; the vast majority of the cancer cells are unable to sustain tumor growth indefinitely on their own. In recent years, discoveries have led to the concentration, if not isolation, of putative CSCs. The evidence has mounted that CSCs do exist and are important. This knowledge may promote better understanding of treatment resistance, create opportunities to test agents against CSCs, and open up promise for a fresh approach to cancer treatment. The first clinical trials of new anti-CSC agents are completed, and many others follow. Excitement is mounting that this knowledge will lead to major improvements, even breakthroughs, in treating cancer. However, exploitation of this phenomenon may be more successful if informed by insights into the population dynamics of tumor development. We revive some ideas in tumor dynamics modeling to extract some guidance in designing anti-CSC treatment regimens and the clinical trials that test them.
机译:癌症干细胞假说是,在人类实体癌症中,只有一小部分细胞,即癌症干细胞(CSC),是自我更新的。绝大多数癌细胞无法无限期地维持肿瘤的生长。近年来,发现导致了公认的CSC的集中(如果不是孤立的话)。有证据表明,CSC确实存在并且很重要。这些知识可能会增进对治疗抵抗力的了解,为抗CSC的药物测试创造机会,并为新的癌症治疗方法打开希望。新的抗CSC药物的第一批临床试验已经完成,随后还有许多其他试验。人们越来越兴奋地意识到,这种知识将导致癌症治疗方面的重大进步,甚至取得突破。但是,如果通过深入了解肿瘤发展的种群动态了解到这种现象的开发可能会更加成功。我们重振了肿瘤动力学模型中的一些思想,从而为设计抗CSC治疗方案和测试它们的临床试验提供了一些指导。

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