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Cancer cells exhibit clonal diversity in phenotypic plasticity

机译:癌细胞表现出表型可塑性的克隆多样性

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摘要

Phenotypic heterogeneity in cancers is associated with invasive progression and drug resistance. This heterogeneity arises in part from the ability of cancer cells to switch between phenotypic states, but the dynamics of this cellular plasticity remain poorly understood. Here we apply DNA barcodes to quantify and track phenotypic plasticity across hundreds of clones in a population of cancer cells exhibiting epithelial or mesenchymal differentiation phenotypes. We find that the epithelial-to-mesenchymal cell ratio is highly variable across the different clones in cancer cell populations, but remains stable for many generations within the progeny of any single clone—with a heritability of 0.89. To estimate the effects of combination therapies on phenotypically heterogeneous tumours, we generated quantitative simulations incorporating empirical data from our barcoding experiments. These analyses indicated that combination therapies which alternate between epithelial- and mesenchymal-specific treatments eventually select for clones with increased phenotypic plasticity. However, this selection could be minimized by increasing the frequency of alternation between treatments, identifying designs that may minimize selection for increased phenotypic plasticity. These findings establish new insights into phenotypic plasticity in cancer, and suggest design principles for optimizing the effectiveness of combination therapies for phenotypically heterogeneous tumours.
机译:癌症中的表型异质性与侵袭性进展和耐药性有关。这种异质性部分地由癌细胞在表型状态之间切换的能力而产生,但这种细胞可塑性的动态仍然明白很差。在这里,我们应用DNA条形码在表现出上皮或间充质分化表型的癌细胞群体中量化和跟踪数百个克隆的表型可塑性。我们发现上皮 - 间充质细胞比在癌细胞群中的不同克隆中具有高度变化,但在任何单一克隆的后代内的许多世代保持稳定 - 遗传性为0.89。为了估算组合疗法对表型异构肿瘤的影响,我们产生了从我们的条形码实验中包含经验数据的定量模拟。这些分析表明,在上皮和间充质特异性治疗之间交替的组合疗法最终选择具有增加的表型可塑性的克隆。然而,通过增加治疗之间的交替的频率,可以最小化该选择,识别可能最小化选择增加的表型可塑性的设计。这些调查结果在癌症中表达型可塑性建立了新的见解,并提出了优化表型异构肿瘤组合疗法的有效性的设计原则。

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