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Fingering instabilities in tissue invasion: an active fluid model

机译:组织侵犯中的指法不稳定性:一种活跃的液体模型

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摘要

Metastatic tumours often invade healthy neighbouring tissues by forming multicellular finger-like protrusions emerging from the cancer mass. To understand the mechanical context behind this phenomenon, we here develop a minimalist fluid model of a self-propelled, growing biological tissue. The theory involves only four mechanical parameters and remains analytically trackable in various settings. As an application of the model, we study the evolution of a two-dimensional circular droplet made of our active and expanding fluid, and embedded in a passive non-growing tissue. This system could be used to model the evolution of a carcinoma in an epithelial layer. We find that our description can explain the propensity of tumour tissues to fingering instabilities, as conditioned by the magnitude of active traction and the growth kinetics. We are also able to derive predictions for the tumour size at the onset of metastasis, and for the number of subsequent invasive fingers. Our active fluid model may help describe a wider range of biological processes, including wound healing and developmental patterning.
机译:转移性肿瘤通常通过形成从癌块中出现的多细胞手指状突起而侵入健康的邻近组织。为了了解这种现象背后的机械环境,我们在这里建立了一个自我推进的,正在生长的生物组织的极简流体模型。该理论仅涉及四个机械参数,并且在各种设置下仍可分析地跟踪。作为该模型的应用,我们研究了由我们的主动和膨胀流体构成的二维圆形液滴的演化过程,该液滴嵌入了无源的非生长组织中。该系统可用于模拟上皮层癌的演变。我们发现我们的描述可以解释肿瘤组织对指法不稳定性的倾向,这取决于主动牵引的大小和生长动力学。我们还能够得出转移开始时的肿瘤大小以及随后的侵袭性手指数目的预测。我们的活动液模型可能有助于描述更广泛的生物学过程,包括伤口愈合和发育模式。

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