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Nonlinear ghost waves accelerate the progression of high-grade brain tumors

机译:非线性鬼波加速高级脑肿瘤的进展

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We study a reduced continuous model describing the evolution of high grade gliomas in response to hypoxic events through the interplay of different cellular phenotypes. We show that hypoxic events, even when sporadic and/or limited in space, may have a crucial role on the acceleration of high grade gliomas growth. Our modeling approach is based on two cellular phenotypes. One of them is more migratory and a second one is more proliferative. Transitions between both phenotypes are driven by the local oxygen values, assumed in this simple model to be uniform. Surprisingly, even very localized in time hypoxia events leading to transient migratory populations have the potential to accelerate the tumor's invasion speed up to speeds close to those of the migratory phenotype. The high invasion speed persists for times much longer than the lifetime of the hypoxic event. Moreover, the phenomenon is observed both when the migratory cells form a persistent wave of cells located on the invasion front and when they form a evanescent "ghost" wave disappearing after a short time by decay to the more proliferative phenotype.
机译:我们研究了一种简化的连续模型,该模型描述了通过不同细胞表型之间相互作用对缺氧事件作出反应的高级神经胶质瘤的演变。我们表明,即使在零星的和/或空间有限的情况下,缺氧事件也可能对加速高级神经胶质瘤的生长起关键作用。我们的建模方法基于两种细胞表型。其中之一更易迁徙,第二个更易扩散。这两个表型之间的转变是由局部氧值驱动的,在此简单模型中假定该值是均匀的。令人惊讶的是,即使是在时间上非常局限的低氧事件也会导致短暂的迁徙种群,有可能加速肿瘤的侵袭速度,使其达到接近于迁徙表型的速度。高入侵速度持续的时间比缺氧事件的寿命长得多。此外,当迁移细胞形成位于入侵前沿的细胞的持续波时,以及当它们形成消失的“幽灵”波,它们在短时间内因衰老而消失时,都观察到了该现象,直至衰变成更具增殖性的表型。

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