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Combined changes in Wnt signaling response and contact inhibition induce altered proliferation in radiation-treated intestinal crypts

机译:Wnt信号反应和接触抑制的综合变化诱导放射治疗的肠隐窝增殖改变

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Curative intervention is possible if colorectal cancer is identified early, underscoring the need to detect the earliest stages of malignant transformation. A candidate biomarker is the expanded proliferative zone observed in crypts before adenoma formation, also found in irradiated crypts. However, the underlying driving mechanism for this is not known. Wnt signaling is a key regulator of proliferation, and elevated Wnt signaling is implicated in cancer. Nonetheless, how cells differentiate Wnt signals of varying strengths is not understood. We use computational modeling to compare alternative hypotheses about how Wnt signaling and contact inhibition affect proliferation. Direct comparison of simulations with published experimental data revealed that the model that best reproduces proliferation patterns in normal crypts stipulates that proliferative fate and cell cycle duration are set by the Wnt stimulus experienced at birth. The model also showed that the broadened proliferation zone induced by tumorigenic radiation can be attributed to cells responding to lower Wnt concentrations and dividing at smaller volumes. Application of the model to data from irradiated crypts after an extended recovery period permitted deductions about the extent of the initial insult. Application of computational modeling to experimental data revealed how mechanisms that control cell dynamics are altered at the earliest stages of carcinogenesis.
机译:如果大肠癌可以及早发现,则可能进行治疗性干预,这突出了检测恶性转化最早阶段的需要。候选生物标志物是在腺瘤形成之前在隐窝中观察到的扩大的增生区,也可在受照射的隐窝中发现。但是,尚不知道其潜在的驱动机制。 Wnt信号传导是增殖的关键调节剂,并且升高的Wnt信号传导与癌症有关。然而,还不清楚细胞如何区分强度不同的Wnt信号。我们使用计算模型来比较有关Wnt信号传导和接触抑制如何影响增殖的其他假设。直接将模拟与已发布的实验数据进行比较,发现能以正常隐窝最佳再现繁殖模式的模型规定,增殖命运和细胞周期持续时间由出生时经历的Wnt刺激决定。该模型还表明,由致瘤性辐射诱导的增生区增宽可归因于细胞对较低的Wnt浓度作出反应并以较小的体积分裂。在延长的恢复期后,将模型应用于来自照射隐窝的数据,可以推断出初始损伤程度。将计算模型应用于实验数据揭示了在致癌作用的最早阶段如何改变控制细胞动力学的机制。

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