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Glial progenitor cell recruitment drives aggressive glioma growth: mathematical and experimental modelling

机译:胶质祖细胞募集驱动侵袭性胶质瘤生长:数学和实验模型

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摘要

Currently available glioma treatments remain unsuccessful at prolonging disease-free remission. Recent evidence suggests that tumour recruitment of glial progenitor cells by platelet-derived growth factor (PDGF) may play a role in the development and progression of these tumours. Building upon our recent experimental results and previous proliferation–invasion (PI) reaction–diffusion model, in this study, we created a proliferation–invasion–recruitment (PIR) model that includes a mechanism for progenitor cell recruitment, wherein paracrine PDGF signalling stimulates migration and proliferation of progenitors derived from the local brain environment. Parametrizing this mathematical model with data obtained from the PDGF-driven rat glioma model, we explored the consequences of recruitment, using the PIR model to compare the effects of high versus low PDGF secretion rates on tumour growth and invasion dynamics. The mathematical model predicts correlation between high levels of recruitment and both increased radial velocity of expansion on magnetic resonance imaging and less diffusely invasive edges. Thus, the PIR model predicts that PDGF levels correlate with tumour aggressiveness, and results are consistent with both human and experimental data, demonstrating that the effects of progenitor cell recruitment provide a novel mechanism to explain the variability in the rates of proliferation and dispersion observed in human gliomas.
机译:目前可用的神经胶质瘤治疗在延长无病缓解方面仍未成功。最近的证据表明,血小板衍生的生长因子(PDGF)对神经胶质祖细胞的肿瘤募集可能在这些肿瘤的发生和发展中起作用。基于我们最近的实验结果和先前的增殖-入侵(PI)反应-扩散模型,我们在本研究中创建了一个增殖-入侵-募集(PIR)模型,该模型包括祖细胞募集的机制,其中旁分泌PDGF信号刺激迁移局部脑环境产生的祖细胞的增殖和增殖。使用从PDGF驱动的大鼠神经胶质瘤模型获得的数据对这个数学模型进行参数化,我们探索了募集的后果,使用PIR模型比较了高和低PDGF分泌率对肿瘤生长和侵袭动力学的影响。该数学模型预测了征募的高水平与磁共振成像上径向扩张速度的增加和扩散性浸润边缘的减少之间的相关性。因此,PIR模型预测PDGF的水平与肿瘤的侵袭性相关,并且结果与人类和实验数据都一致,表明祖细胞募集的作用提供了一种新颖的机制来解释在小鼠体内观察到的增殖和分散速率的变化。人类神经胶质瘤。

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