Literature DB >> 18375483

Microfluidic leukocyte isolation for gene expression analysis in critically ill hospitalized patients.

Aman Russom1, Palaniappan Sethu, Daniel Irimia, Michael N Mindrinos, Steve E Calvano, Iris Garcia, Celeste Finnerty, Cynthia Tannahill, Amer Abouhamze, Julie Wilhelmy, M Cecilia López, Henry V Baker, David N Herndon, Stephen F Lowry, Ronald V Maier, Ronald W Davis, Lyle L Moldawer, Ronald G Tompkins, Mehmet Toner.   

Abstract

BACKGROUND: Microarray technology is becoming a powerful tool for diagnostic, therapeutic, and prognostic applications. There is at present no consensus regarding the optimal technique to isolate nucleic acids from blood leukocyte populations for subsequent expression analyses. Current collection and processing techniques pose significant challenges in the clinical setting. Here, we report the clinical validation of a novel microfluidic leukocyte nucleic acid isolation technique for gene expression analysis from critically ill, hospitalized patients that can be readily used on small volumes of blood.
METHODS: We processed whole blood from hospitalized patients after burn injury and severe blunt trauma according to the microfluidic and standard macroscale leukocyte isolation protocol. Side-by-side comparison of RNA quantity, quality, and genome-wide expression patterns was used to clinically validate the microfluidic technique.
RESULTS: When the microfluidic protocol was used for processing, sufficient amounts of total RNA were obtained for genome-wide expression analysis from 0.5 mL whole blood. We found that the leukocyte expression patterns from samples processed using the 2 protocols were concordant, and there was less variability introduced as a result of harvesting method than there existed between individuals.
CONCLUSIONS: The novel microfluidic approach achieves leukocyte isolation in <25 min, and the quality of nucleic acids and genome expression analysis is equivalent to or surpasses that obtained from macroscale approaches. Microfluidics can significantly improve the isolation of blood leukocytes for genomic analyses in the clinical setting.

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Year:  2008        PMID: 18375483      PMCID: PMC4011019          DOI: 10.1373/clinchem.2007.099150

Source DB:  PubMed          Journal:  Clin Chem        ISSN: 0009-9147            Impact factor:   8.327


  24 in total

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2.  Whole blood and leukocyte RNA isolation for gene expression analyses.

Authors:  Robert J Feezor; Henry V Baker; Michael Mindrinos; Doug Hayden; Cynthia L Tannahill; Bernard H Brownstein; Adrian Fay; Sandra MacMillan; Jason Laramie; Wenzhong Xiao; Lyle L Moldawer; J Perren Cobb; Krzysztof Laudanski; Carol L Miller-Graziano; Ronald V Maier; David Schoenfeld; Ronald W Davis; Ronald G Tompkins
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Review 5.  Blood-on-a-chip.

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Review 6.  Validation of the riboleukogram to detect ventilator-associated pneumonia after severe injury.

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