Literature DB >> 19594154

Acoustic whole blood plasmapheresis chip for prostate specific antigen microarray diagnostics.

Andreas Lenshof1, Asilah Ahmad-Tajudin, Kerstin Järås, Ann-Margret Swärd-Nilsson, Lena Aberg, György Marko-Varga, Johan Malm, Hans Lilja, Thomas Laurell.   

Abstract

The generation of high quality plasma from whole blood is of major interest for many biomedical analyses and clinical diagnostic methods. However, it has proven to be a major challenge to make use of microfluidic separation devices to process fluids with high cell content, such as whole blood. Here, we report on an acoustophoresis based separation chip that prepares diagnostic plasma from whole blood linked to a clinical application. This acoustic separator has the capacity to sequentially remove enriched blood cells in multiple steps to yield high quality plasma of low cellular content. The generated plasma fulfills the standard requirements (<6.0 x 10(9) erythrocytes/L) recommended by the Council of Europe. Further, we successfully linked the plasmapheresis microchip to our previously developed porous silicon sandwich antibody microarray chip for prostate specific antigen (PSA) detection. PSA was detected by good linearity (R(2) > 0.99) in the generated plasma via fluorescence readout without any signal amplification at clinically relevant levels (0.19-21.8 ng/mL).

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Year:  2009        PMID: 19594154     DOI: 10.1021/ac9013572

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  30 in total

1.  Development and validation of a low cost blood filtration element separating plasma from undiluted whole blood.

Authors:  Alexandra Homsy; Peter D van der Wal; Werner Doll; Roland Schaller; Stefan Korsatko; Maria Ratzer; Martin Ellmerer; Thomas R Pieber; Andreas Nicol; Nico F de Rooij
Journal:  Biomicrofluidics       Date:  2012-03-15       Impact factor: 2.800

2.  Microfluidic platform for separation and extraction of plasma from whole blood using dielectrophoresis.

Authors:  Crispin Szydzik; Khashayar Khoshmanesh; Arnan Mitchell; Christian Karnutsch
Journal:  Biomicrofluidics       Date:  2015-12-29       Impact factor: 2.800

3.  Optofluidics incorporating actively controlled micro- and nano-particles.

Authors:  Aminuddin A Kayani; Khashayar Khoshmanesh; Stephanie A Ward; Arnan Mitchell; Kourosh Kalantar-Zadeh
Journal:  Biomicrofluidics       Date:  2012-07-18       Impact factor: 2.800

4.  Phaseguide-assisted blood separation microfluidic device for point-of-care applications.

Authors:  Linfeng Xu; Hun Lee; Mariana Vanderlei Brasil Pinheiro; Phil Schneider; Deekshitha Jetta; Kwang W Oh
Journal:  Biomicrofluidics       Date:  2015-01-21       Impact factor: 2.800

5.  Cell trapping in Y-junction microchannels: A numerical study of the bifurcation angle effect in inertial microfluidics.

Authors:  Scott J Hymel; Hongzhi Lan; Hideki Fujioka; Damir B Khismatullin
Journal:  Phys Fluids (1994)       Date:  2019-08-09       Impact factor: 3.521

6.  Representative subsampling of sedimenting blood.

Authors:  Bhargav Rallabandi; Janine K Nunes; Antonio Perazzo; Sergey Gershtein; Howard A Stone
Journal:  Proc Math Phys Eng Sci       Date:  2019-07-24       Impact factor: 2.704

7.  Capillary flow of blood in a microchannel with differential wetting for blood plasma separation and on-chip glucose detection.

Authors:  M Sneha Maria; P E Rakesh; T S Chandra; A K Sen
Journal:  Biomicrofluidics       Date:  2016-09-22       Impact factor: 2.800

8.  Engineering fluid flow using sequenced microstructures.

Authors:  Hamed Amini; Elodie Sollier; Mahdokht Masaeli; Yu Xie; Baskar Ganapathysubramanian; Howard A Stone; Dino Di Carlo
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

9.  Acoustophoretic sorting of viable mammalian cells in a microfluidic device.

Authors:  Allen H J Yang; H Tom Soh
Journal:  Anal Chem       Date:  2012-12-06       Impact factor: 6.986

10.  Elastomeric negative acoustic contrast particles for affinity capture assays.

Authors:  Kevin W Cushing; Menake E Piyasena; Nick J Carroll; Gian C Maestas; Beth Ann López; Bruce S Edwards; Steven W Graves; Gabriel P López
Journal:  Anal Chem       Date:  2013-02-05       Impact factor: 6.986

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