Matches in SemOpenAlex for { <https://semopenalex.org/work/W2035585320> ?p ?o ?g. }
- W2035585320 endingPage "303" @default.
- W2035585320 startingPage "297" @default.
- W2035585320 abstract "Dielectrophoresis (DEP) is a powerful tool to manipulate cells and molecules in microfluidic chips. However, few practical applications using DEP exist. An immediate practical application of a carbon-electrode DEP system, in removing PCR inhibitors from a sample, is reported in this work. We use a high throughput carbon-electrode DEP system to trap yeast cells from a natural sample (fermented grape must) and then in situ remove contaminants that interfere with PCR analysis. Retrieval of this enriched and purified yeast population from the DEP system then allows for a significant increase of sensitivity during PCR analysis. Furthermore, the fact that DEP can discriminate between viable and non-viable cells minimizes the number of false positives commonly obtained when using PCR alone. Experimental results provide clear evidence that the carbon-electrode DEP-based sample preparation step can readily and effectively clean environmental samples from natural contaminants and improve PCR sensitivity." @default.
- W2035585320 created "2016-06-24" @default.
- W2035585320 creator A5007037971 @default.
- W2035585320 creator A5009624389 @default.
- W2035585320 creator A5034451967 @default.
- W2035585320 creator A5052161335 @default.
- W2035585320 creator A5052802508 @default.
- W2035585320 creator A5062751496 @default.
- W2035585320 date "2013-05-01" @default.
- W2035585320 modified "2023-10-10" @default.
- W2035585320 title "Increasing PCR sensitivity by removal of polymerase inhibitors in environmental samples by using dielectrophoresis" @default.
- W2035585320 cites W1619968654 @default.
- W2035585320 cites W1893516527 @default.
- W2035585320 cites W1972125392 @default.
- W2035585320 cites W1973837906 @default.
- W2035585320 cites W1989190729 @default.
- W2035585320 cites W2008749961 @default.
- W2035585320 cites W2013318782 @default.
- W2035585320 cites W2014669231 @default.
- W2035585320 cites W2037903801 @default.
- W2035585320 cites W2040481053 @default.
- W2035585320 cites W2043312067 @default.
- W2035585320 cites W2044454351 @default.
- W2035585320 cites W2044751486 @default.
- W2035585320 cites W2046166714 @default.
- W2035585320 cites W2048814332 @default.
- W2035585320 cites W2051364294 @default.
- W2035585320 cites W2051747385 @default.
- W2035585320 cites W2053185702 @default.
- W2035585320 cites W2056856262 @default.
- W2035585320 cites W2057269807 @default.
- W2035585320 cites W2059024717 @default.
- W2035585320 cites W2059246376 @default.
- W2035585320 cites W2075554390 @default.
- W2035585320 cites W2077505423 @default.
- W2035585320 cites W2082747618 @default.
- W2035585320 cites W2086000117 @default.
- W2035585320 cites W2088528347 @default.
- W2035585320 cites W2096239012 @default.
- W2035585320 cites W2096490589 @default.
- W2035585320 cites W2103745857 @default.
- W2035585320 cites W2110192334 @default.
- W2035585320 cites W2111267412 @default.
- W2035585320 cites W2117851496 @default.
- W2035585320 cites W2133318440 @default.
- W2035585320 cites W2134486103 @default.
- W2035585320 cites W2137953535 @default.
- W2035585320 cites W2141099428 @default.
- W2035585320 cites W2145476810 @default.
- W2035585320 cites W2151831738 @default.
- W2035585320 cites W2152126319 @default.
- W2035585320 cites W2167903799 @default.
- W2035585320 cites W2168198735 @default.
- W2035585320 cites W2305057282 @default.
- W2035585320 cites W4239637714 @default.
- W2035585320 cites W76426679 @default.
- W2035585320 doi "https://doi.org/10.1016/j.bios.2012.12.049" @default.
- W2035585320 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23337260" @default.
- W2035585320 hasPublicationYear "2013" @default.
- W2035585320 type Work @default.
- W2035585320 sameAs 2035585320 @default.
- W2035585320 citedByCount "21" @default.
- W2035585320 countsByYear W20355853202014 @default.
- W2035585320 countsByYear W20355853202015 @default.
- W2035585320 countsByYear W20355853202016 @default.
- W2035585320 countsByYear W20355853202017 @default.
- W2035585320 countsByYear W20355853202018 @default.
- W2035585320 countsByYear W20355853202019 @default.
- W2035585320 countsByYear W20355853202020 @default.
- W2035585320 countsByYear W20355853202021 @default.
- W2035585320 countsByYear W20355853202022 @default.
- W2035585320 crossrefType "journal-article" @default.
- W2035585320 hasAuthorship W2035585320A5007037971 @default.
- W2035585320 hasAuthorship W2035585320A5009624389 @default.
- W2035585320 hasAuthorship W2035585320A5034451967 @default.
- W2035585320 hasAuthorship W2035585320A5052161335 @default.
- W2035585320 hasAuthorship W2035585320A5052802508 @default.
- W2035585320 hasAuthorship W2035585320A5062751496 @default.
- W2035585320 hasConcept C104317684 @default.
- W2035585320 hasConcept C106825181 @default.
- W2035585320 hasConcept C112570922 @default.
- W2035585320 hasConcept C144024400 @default.
- W2035585320 hasConcept C147789679 @default.
- W2035585320 hasConcept C149923435 @default.
- W2035585320 hasConcept C171250308 @default.
- W2035585320 hasConcept C17525397 @default.
- W2035585320 hasConcept C185592680 @default.
- W2035585320 hasConcept C18903297 @default.
- W2035585320 hasConcept C192562407 @default.
- W2035585320 hasConcept C2778576202 @default.
- W2035585320 hasConcept C2779222958 @default.
- W2035585320 hasConcept C2908647359 @default.
- W2035585320 hasConcept C43617362 @default.
- W2035585320 hasConcept C49105822 @default.
- W2035585320 hasConcept C55493867 @default.
- W2035585320 hasConcept C8673954 @default.
- W2035585320 hasConcept C86803240 @default.
- W2035585320 hasConceptScore W2035585320C104317684 @default.