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. 2023 Feb;22(1):297-308.
doi: 10.1007/s10237-022-01649-3. Epub 2022 Oct 26.

Simulation of a tumor cell flowing through a symmetric bifurcated microvessel

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Simulation of a tumor cell flowing through a symmetric bifurcated microvessel

Lanlan Xiao et al. Biomech Model Mechanobiol. 2023 Feb.

Abstract

Microvessel bifurcations serve as the major sites of tumor cell adhesion and further extravasation. In this study, the movement, deformation, and adhesion of a circulating tumor cell flowing in a symmetric microvessel with diverging and converging bifurcations were simulated by dissipative particle dynamics combined with a spring-based network model. Effects of the initial position of the CTC, externally-applied acceleration and the presence of RBCs on the motion of the CTC were investigated. The results demonstrated that the CTC released at the centerline of the parent vessel would attach to the vessel wall when arriving at the apex of diverging bifurcation and slide into the daughter branch determined by its centroid deflection and finally form firm adhesion at relatively lower flow rates. As the external acceleration increases, the increasing shear force enlarges the contact area for the adherent CTC on the one hand and reduces the residence time on the other hand. With the presence of RBCs in the bloodstream, the collision between the adherent tumor cell at the diverging bifurcation and flowing RBCs promotes the firm adhesion of CTC at lower flow rates.

Keywords: CTC; Cell adhesion; Dissipative particle dynamics; Diverging and converging bifurcations.

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References

    1. Alon R, Chen SQ, Puri KD, Finger EB, Springer TA (1997) The kinetics of L-selectin tethers and the mechanics of selectin-mediated rolling. J Cell Biol 138:1169–1180. https://doi.org/10.1083/jcb.138.5.1169 - DOI
    1. Barber JO, Restrepo JM, Secomb TW (2011) Simulated red blood cell motion in microvessel bifurcations: effects of cell-cell interactions on cell partitioning cardiovasc. Eng Technol 2:349–360. https://doi.org/10.1007/s13239-011-0064-4 - DOI
    1. Boey SK, Boal DH, Discher DE (1998) Simulations of the erythrocyte cytoskeleton at large deformation. I Microscopic Models Biophys J 75:1573–1583
    1. Dao M, Li J, Suresh S (2006) Molecularly based analysis of deformation of spectrin network and human erythrocyte. Mater Sci Eng C 26:1232–1244. https://doi.org/10.1016/j.msec.2005.08.020 - DOI
    1. Dembo M, Torney DC, Saxman K, Hammer D (1988) The reaction-limited kinetics of membrane-to-surface adhesion and detachment. Proc R Soc Ser B-Bio 234:55–83

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