Matches in SemOpenAlex for { <https://semopenalex.org/work/W2552533047> ?p ?o ?g. }
- W2552533047 endingPage "12286" @default.
- W2552533047 startingPage "12279" @default.
- W2552533047 abstract "Desorption atmospheric pressure photoionization (DAPPI) allows surface analysis in the open atmosphere and is thus an appropriate method for the direct coupling of thin-layer chromatography (TLC) and mass spectrometry (MS). Here, the capability of DAPPI-MS for ionizing and detecting lipids, namely, cholesterol, triacylglycerols, 1,2-diol diesters, wax esters, cholesteryl esters, and hydrocarbons, from TLC and high-performance thin-layer chromatography (HPTLC) plates in MS and MS2 modes was tested. Limits of detection for lipid standards separated using normal-phase (NP)-TLC and NP-HPTLC were established. TLC/DAPPI-MS was applied for lipids of vernix caseosa, a white creamy proteolipid biofilm that progressively coats the fetus during the last trimester of the pregnancy, and plant oils including caraway, parsley, safflower, and jojoba oils. Various lipids were identified by means of high resolution/accurate mass measurement of Orbitrap and comparison of the retardation factors with standards. Lipid class separation was carried out on the NP-HPTLC plates, whereas individual triacylglycerol and wax ester species were separated on the reversed-phase HPTLC plates. DAPPI-MS was found to be a simple, rapid, and efficient approach for detecting lipids separated by TLC." @default.
- W2552533047 created "2016-11-30" @default.
- W2552533047 creator A5003140284 @default.
- W2552533047 creator A5010402623 @default.
- W2552533047 creator A5017789448 @default.
- W2552533047 creator A5057573030 @default.
- W2552533047 creator A5058682142 @default.
- W2552533047 creator A5062434369 @default.
- W2552533047 creator A5084020094 @default.
- W2552533047 date "2016-12-02" @default.
- W2552533047 modified "2023-10-17" @default.
- W2552533047 title "Thin-Layer Chromatography/Desorption Atmospheric Pressure Photoionization Orbitrap Mass Spectrometry of Lipids" @default.
- W2552533047 cites W1116202197 @default.
- W2552533047 cites W1722972467 @default.
- W2552533047 cites W1899616717 @default.
- W2552533047 cites W1966455351 @default.
- W2552533047 cites W1968932633 @default.
- W2552533047 cites W1969295131 @default.
- W2552533047 cites W1974203321 @default.
- W2552533047 cites W1976674493 @default.
- W2552533047 cites W1976713468 @default.
- W2552533047 cites W1977439802 @default.
- W2552533047 cites W1978027605 @default.
- W2552533047 cites W1979077193 @default.
- W2552533047 cites W1982129195 @default.
- W2552533047 cites W1990141551 @default.
- W2552533047 cites W1998225381 @default.
- W2552533047 cites W1998985163 @default.
- W2552533047 cites W2000550366 @default.
- W2552533047 cites W2002022160 @default.
- W2552533047 cites W2003807000 @default.
- W2552533047 cites W2009900164 @default.
- W2552533047 cites W2017632668 @default.
- W2552533047 cites W2018931537 @default.
- W2552533047 cites W2026084020 @default.
- W2552533047 cites W2030278229 @default.
- W2552533047 cites W2031393421 @default.
- W2552533047 cites W2033928858 @default.
- W2552533047 cites W2042323290 @default.
- W2552533047 cites W2044882956 @default.
- W2552533047 cites W2049593244 @default.
- W2552533047 cites W2052923805 @default.
- W2552533047 cites W2053386548 @default.
- W2552533047 cites W2056987759 @default.
- W2552533047 cites W2059467478 @default.
- W2552533047 cites W2065194410 @default.
- W2552533047 cites W2081185113 @default.
- W2552533047 cites W2091422866 @default.
- W2552533047 cites W2095670452 @default.
- W2552533047 cites W2106511392 @default.
- W2552533047 cites W2109982207 @default.
- W2552533047 cites W2112295939 @default.
- W2552533047 cites W2150536952 @default.
- W2552533047 cites W2151132277 @default.
- W2552533047 cites W2166813071 @default.
- W2552533047 cites W2186250298 @default.
- W2552533047 cites W2295744485 @default.
- W2552533047 cites W2313472843 @default.
- W2552533047 cites W2325287303 @default.
- W2552533047 cites W2326035626 @default.
- W2552533047 cites W4239539285 @default.
- W2552533047 cites W828263579 @default.
- W2552533047 doi "https://doi.org/10.1021/acs.analchem.6b03465" @default.
- W2552533047 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28193018" @default.
- W2552533047 hasPublicationYear "2016" @default.
- W2552533047 type Work @default.
- W2552533047 sameAs 2552533047 @default.
- W2552533047 citedByCount "16" @default.
- W2552533047 countsByYear W25525330472017 @default.
- W2552533047 countsByYear W25525330472018 @default.
- W2552533047 countsByYear W25525330472019 @default.
- W2552533047 countsByYear W25525330472020 @default.
- W2552533047 countsByYear W25525330472021 @default.
- W2552533047 countsByYear W25525330472023 @default.
- W2552533047 crossrefType "journal-article" @default.
- W2552533047 hasAuthorship W2552533047A5003140284 @default.
- W2552533047 hasAuthorship W2552533047A5010402623 @default.
- W2552533047 hasAuthorship W2552533047A5017789448 @default.
- W2552533047 hasAuthorship W2552533047A5057573030 @default.
- W2552533047 hasAuthorship W2552533047A5058682142 @default.
- W2552533047 hasAuthorship W2552533047A5062434369 @default.
- W2552533047 hasAuthorship W2552533047A5084020094 @default.
- W2552533047 hasConcept C108454664 @default.
- W2552533047 hasConcept C145148216 @default.
- W2552533047 hasConcept C148065180 @default.
- W2552533047 hasConcept C153033020 @default.
- W2552533047 hasConcept C162356407 @default.
- W2552533047 hasConcept C178790620 @default.
- W2552533047 hasConcept C185592680 @default.
- W2552533047 hasConcept C190196608 @default.
- W2552533047 hasConcept C198291218 @default.
- W2552533047 hasConcept C2780841973 @default.
- W2552533047 hasConcept C43617362 @default.
- W2552533047 hasConcept C51884965 @default.
- W2552533047 hasConceptScore W2552533047C108454664 @default.
- W2552533047 hasConceptScore W2552533047C145148216 @default.
- W2552533047 hasConceptScore W2552533047C148065180 @default.
- W2552533047 hasConceptScore W2552533047C153033020 @default.