2012
DOI: 10.1021/ac301723s
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Microfluidic, Label-Free Enrichment of Prostate Cancer Cells in Blood Based on Acoustophoresis

Abstract: Circulating tumor cells (CTC) are shed in peripheral blood at advanced metastatic stages of solid cancers. Surface-marker-based detection of CTC predicts recurrence and survival in colorectal, breast, and prostate cancer. However, scarcity and variation in size, morphology, expression profile, and antigen exposure impairs reliable detection and characterization of CTC. We have developed a non-contact, label-free microfluidic acoustophoresis method to separate prostate cancer cells from white blood cells (WBC) … Show more

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Cited by 306 publications
(302 citation statements)
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“…Acoustophoresis Chip Size Acoustic pre-alignment and separation (Antfolk et al, 2015a(Antfolk et al, , 2015bAugustsson et al, 2012) (continued on next page)…”
Section: Vortex Sizementioning
confidence: 99%
“…Acoustophoresis Chip Size Acoustic pre-alignment and separation (Antfolk et al, 2015a(Antfolk et al, , 2015bAugustsson et al, 2012) (continued on next page)…”
Section: Vortex Sizementioning
confidence: 99%
“…By actuating the transducer at a resonance frequency of the cavity, an acoustic standing-wave field can be established in the channel cross section in the y-z plane, which is typically a few hundred micrometers in the width W and height H, leading to fundamental resonance frequencies on the order of 1-10 MHz. These systems are well characterized [4,[25][26][27][28] and are used in various biomedical applications, for example, the enrichment of circulating tumor cells in blood [14,29].…”
Section: Model Systemsmentioning
confidence: 99%
“…samples including blood, [20][21][22][23] raw milk, 24 circulating tumor cells, 25,26 and yeast. 27 For bulk acoustic waves (BAW) microchannel acoustophoresis is usually carried out in the 1-10 MHz frequency range and particles are focused along a single dimension.…”
Section: Introductionmentioning
confidence: 99%