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Microfluidics
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===Molecular biology=== In addition to microarrays, biochips have been designed for two-dimensional [[electrophoresis]],<ref name= Fan>{{cite book|vauthors = Fan H, Das C, Chen H|veditors = Herold KE, Rasooly A|year=2009|chapter=Two-Dimensional Electrophoresis in a Chip|title=Lab-on-a-Chip Technology: Biomolecular Separation and Analysis|publisher=Caister Academic Press|isbn= 978-1-904455-47-9 }}</ref> [[transcriptome]] analysis,<ref name= BontouxN>{{cite book|vauthors = Bontoux N, Dauphinot L, Potier MC|veditors = Herold KE, Rasooly A|year=2009|chapter=Elaborating Lab-on-a-Chips for Single-cell Transcriptome Analysis|title=Lab-on-a-Chip Technology: Biomolecular Separation and Analysis|publisher=Caister Academic Press|isbn= 978-1-904455-47-9 }}</ref> and [[Polymerase chain reaction|PCR]] amplification.<ref name= Cadync>{{cite book|vauthors = Cady NC|year=2009|chapter=Microchip-based PCR Amplification Systems|title=Lab-on-a-Chip Technology: Biomolecular Separation and Analysis|publisher=Caister Academic Press|isbn= 978-1-904455-47-9}}</ref> Other applications include various electrophoresis and [[liquid chromatography]] applications for proteins and [[DNA]], cell separation, in particular, blood cell separation, protein analysis, cell manipulation and analysis including cell viability analysis<ref name="pubs.rsc.org"/> and [[microorganism]] capturing.<ref name="Herold2"/>
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