• Title of article

    Numerical Study of a Centrifugal Platform for the Inertial Separation of Circulating Tumor Cells Using Contraction- Expansion Array Microchannels

  • Author/Authors

    Ebrahimi, Sh Faculty of New Sciences and Technologies - University of Tehran - Tehran, Iran , Tahmasebipour, M Faculty of New Sciences and Technologies - University of Tehran - Tehran, Iran

  • Pages
    14
  • From page
    647
  • To page
    660
  • Abstract
    Label-free inertial separation of the circulating tumor cells (CTCs) has attracted significant attention recently. The present study proposed a centrifugal platform for the inertial separation of the CTCs from the white blood cells. Particle trajectories of the contraction-expansion array (CEA) microchannels were analyzed by the finite element method. Four expansion geometries (i.e., circular, rectangular, trapezoidal, and triangular) were compared to explore their differences in separation possibilities. Different operational and geometrical parameters were investigated to achieve maximum separation efficiency. Results indicated that the trapezoidal CEA microchannel with ten expansions and a 100 μm channel depth had the best separation performance at an angular velocity of 100 rad/s. Reynolds number of 47 was set as the optimum value to apply minimum shear stress on the CTCs leading to 100% efficiency and 95% purity. Furthermore, the proposed system was simulated for whole blood by considering the red blood cells.
  • Keywords
    Numerical simulation , Centrifugal microfluidic system , Inertial microfluidic , Lab-on-a-disk , CEA microchannel
  • Journal title
    Archives of Razi Institute
  • Serial Year
    2022
  • Record number

    2730152