Two-step acoustophoresis separation of live tumor cells from whole blood Journal Article


Authors: Undvall Anand, E.; Magnusson, C.; Lenshof, A.; Ceder, Y.; Lilja, H.; Laurell, T.
Article Title: Two-step acoustophoresis separation of live tumor cells from whole blood
Abstract: There is an unmet clinical need to extract living circulating tumor cells (CTCs) for functional studies and in vitro expansion to enable drug testing and predict responses to therapy in metastatic cancer. Here, we present a novel two-step acoustophoresis (A2) method for isolation of unfixed, viable cancer cells from red blood cell (RBC) lysed whole blood. The A2 method uses an initial acoustofluidic preseparation step to separate cells based on their acoustic mobility. This acoustofluidic step enriches viable cancer cells in a central outlet, but a significant number of white blood cells (WBCs) remain in the central outlet fraction due to overlapping acoustophysical properties of these viable cells. A subsequent purging step was employed to remove contaminating WBCs through negative selection acoustophoresis with anti-CD45-functionalized negative acoustic contrast particles. We processed 1 mL samples of 1:1 diluted RBC lysed whole blood mixed with 10 000 DU145 cells through the A2 method. Additional experiments were performed using 1000 DU145 cells spiked into 1.5 × 106 WBCs in 1 mL of buffer to further elucidate the dynamic range of the method. Using samples with 10 000 DU145 cells, we obtained 459 ± 188-fold depletion of WBC and 42% recovery of viable cancer cells. Based on spiked samples with 1000 DU145 cells, our cancer cell recovery was 28% with 247 ± 156-fold WBC depletion corresponding to a depletion efficacy of ≥99.5%. The novel A2 method provides extensive elimination of WBCs combined with the gentle recovery of viable cancer cells suitable for downstream functional analyses and in vitro culture. © 2021 The Authors. Published by American Chemical Society
Keywords: cytology; blood; tumors; molecular biology; in-vitro; diseases; cancer cells; acoustophoresis; whole blood; cells; recovery; tumour cells; red blood cell; white blood cells; purging; circulating tumour cells; du-145 cells; vitro expansion
Journal Title: Analytical Chemistry
Volume: 93
Issue: 51
ISSN: 0003-2700
Publisher: American Chemical Society  
Date Published: 2021-12-28
Start Page: 17076
End Page: 17085
Language: English
DOI: 10.1021/acs.analchem.1c04050
PROVIDER: scopus
PMCID: PMC8717332
PUBMED: 34913344
DOI/URL:
Notes: Article -- Export Date: 1 February 2022 -- Source: Scopus
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  1. Hans Gosta Lilja
    345 Lilja