Haemodynamic-dependent arrest of circulating tumour cells at large blood vessel bifurcations as new model for metastasis

大血管分叉处循环肿瘤细胞的血流动力学依赖性停滞作为转移的新模型

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作者:Carlos Casas-Arozamena #, Alberto Otero-Cacho #, Bastian Carnero, Cristina Almenglo, Maria Aymerich, Lorena Alonso-Alconada, Alba Ferreiros, Alicia Abalo, Carmen Bao-Varela, Maria Teresa Flores-Arias, Ezequiel Alvarez, Alberto P Munuzuri, Miguel Abal

Abstract

Homing of circulating tumour cells (CTC) at distant sites represents a critical event in metastasis dissemination. In addition to physical entrapment, probably responsible of the majority of the homing events, the vascular system provides with geometrical factors that govern the flow biomechanics and impact on the fate of the CTC. Here we mathematically explored the distribution of velocities and the corresponding streamlines at the bifurcations of large blood vessel and characterized an area of low-velocity at the carina of bifurcation that favours the residence of CTC. In addition to this fluid physics effect, the adhesive capabilities of the CTC provide with a biological competitive advantage resulting in a marginal but systematic arrest as evidenced by dynamic in vitro recirculation in Y-microchannels and by perfusion in in vivo mice models. Our results also demonstrate that viscosity, as a main determinant of the Reynolds number that define flow biomechanics, may be modulated to limit or impair CTC accumulation at the bifurcation of blood vessels, in agreement with the apparent positive effect observed in the clinical setting by anticoagulants in advanced oncology disease.

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