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Anales (Asociación Física Argentina)

versión impresa ISSN 0327-358Xversión On-line ISSN 1850-1168

Resumen

GUZMAN VAZQUEZ, L.; MINO, G. L.; BANCHIO, A. J.  y  MARCONI, V. I.. EFFICIENT MICRODEVICES DESIGNS FOR CHOANOFLAGELLATES SEPARATION. An. AFA [online]. 2023, vol.34, n.4, pp.2-2. ISSN 0327-358X.  http://dx.doi.org/10.31527/analesafa.2023.34.4.87.

Choanoflagellates are microorganisms of great interest in evolutionary biology because they are considered to be the closest living relatives to animals. In their unicellular form, they developed phenotypes with different swimming stra-tegies and the ability to produce sexual gametes. Based on the work of Sparacino et al., J. Phys. D: Appl. Phys. (2020), new designs of microfluidic devices were proposed and explored with consideration to both microfabrication restrictions and microscopy observation limitations. Through a phenomenological model, adapted to the dynamics of unicellular choanoflagellates in an asymmetric microdevice, it was possible to separate the fast cells, reconcentrating them up to 8 times. It was observed in a temporal window independent of the geometry, minimizing the biological variation of the samples. Furthermore, new biotechnological applications were explored to model different biological behaviors related to the taxis responses experienced by a cell. It was noted that populations with lower change of direction are efficiently concentrated in the proposed microdevice.

Palabras clave : choanoflagellates; sorter; microfluidics; confinement.

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