Matches in SemOpenAlex for { <https://semopenalex.org/work/W2025830010> ?p ?o ?g. }
- W2025830010 endingPage "225" @default.
- W2025830010 startingPage "217" @default.
- W2025830010 abstract "Some plant species are known to cause calcium intoxification in grazing animals. This has been attributed to the presence of vitamin D3-like activity. However, research into the presence of vitamin D3 in plants has been limited. One reason for this may be limitations in the analytical methods available for unambiguous detection and quantification of vitamin D3. This paper presents a new method for determining vitamin D3 and its sterol precursors. The method is based on saponification and extraction followed by solid phase clean-up of the compounds from plant leaves and detection by APCI-MS. Recoveries ranged from 101% to 114% and precision from 3% to 12%. Detection limits were 2–8 ng/g fresh weight for the substances tested. In a pilot study we found that Solanum glaucohyllum Desf. and Solanum lycopersicum L. produced vitamin D3 after UV-treatment. The preliminary results presented suggest that vitamin D3 formation in plants is dependent on light exposure." @default.
- W2025830010 created "2016-06-24" @default.
- W2025830010 creator A5010657520 @default.
- W2025830010 creator A5043693934 @default.
- W2025830010 creator A5049748974 @default.
- W2025830010 creator A5049840690 @default.
- W2025830010 creator A5087588857 @default.
- W2025830010 date "2011-11-01" @default.
- W2025830010 modified "2023-09-25" @default.
- W2025830010 title "LC–MS/MS with atmospheric pressure chemical ionisation to study the effect of UV treatment on the formation of vitamin D3 and sterols in plants" @default.
- W2025830010 cites W1686152953 @default.
- W2025830010 cites W1967098430 @default.
- W2025830010 cites W1975756448 @default.
- W2025830010 cites W1983561739 @default.
- W2025830010 cites W1988018262 @default.
- W2025830010 cites W1997008368 @default.
- W2025830010 cites W2023765050 @default.
- W2025830010 cites W2024339367 @default.
- W2025830010 cites W2028784365 @default.
- W2025830010 cites W2033777621 @default.
- W2025830010 cites W2037101319 @default.
- W2025830010 cites W2050108361 @default.
- W2025830010 cites W2050439504 @default.
- W2025830010 cites W2054453697 @default.
- W2025830010 cites W2063768776 @default.
- W2025830010 cites W2070527101 @default.
- W2025830010 cites W2071533438 @default.
- W2025830010 cites W2072061217 @default.
- W2025830010 cites W2083452229 @default.
- W2025830010 cites W2086205601 @default.
- W2025830010 cites W2119537261 @default.
- W2025830010 cites W2122817408 @default.
- W2025830010 cites W2163507707 @default.
- W2025830010 cites W2168310063 @default.
- W2025830010 cites W2169574577 @default.
- W2025830010 doi "https://doi.org/10.1016/j.foodchem.2011.04.029" @default.
- W2025830010 hasPublicationYear "2011" @default.
- W2025830010 type Work @default.
- W2025830010 sameAs 2025830010 @default.
- W2025830010 citedByCount "32" @default.
- W2025830010 countsByYear W20258300102012 @default.
- W2025830010 countsByYear W20258300102013 @default.
- W2025830010 countsByYear W20258300102014 @default.
- W2025830010 countsByYear W20258300102015 @default.
- W2025830010 countsByYear W20258300102016 @default.
- W2025830010 countsByYear W20258300102017 @default.
- W2025830010 countsByYear W20258300102018 @default.
- W2025830010 countsByYear W20258300102019 @default.
- W2025830010 countsByYear W20258300102020 @default.
- W2025830010 countsByYear W20258300102021 @default.
- W2025830010 countsByYear W20258300102022 @default.
- W2025830010 countsByYear W20258300102023 @default.
- W2025830010 crossrefType "journal-article" @default.
- W2025830010 hasAuthorship W2025830010A5010657520 @default.
- W2025830010 hasAuthorship W2025830010A5043693934 @default.
- W2025830010 hasAuthorship W2025830010A5049748974 @default.
- W2025830010 hasAuthorship W2025830010A5049840690 @default.
- W2025830010 hasAuthorship W2025830010A5087588857 @default.
- W2025830010 hasConcept C107872376 @default.
- W2025830010 hasConcept C124490489 @default.
- W2025830010 hasConcept C134018914 @default.
- W2025830010 hasConcept C145148216 @default.
- W2025830010 hasConcept C148065180 @default.
- W2025830010 hasConcept C15761196 @default.
- W2025830010 hasConcept C178790620 @default.
- W2025830010 hasConcept C185592680 @default.
- W2025830010 hasConcept C198291218 @default.
- W2025830010 hasConcept C2776940978 @default.
- W2025830010 hasConcept C2781083041 @default.
- W2025830010 hasConcept C28781525 @default.
- W2025830010 hasConcept C31903555 @default.
- W2025830010 hasConcept C43617362 @default.
- W2025830010 hasConcept C4725764 @default.
- W2025830010 hasConcept C51884965 @default.
- W2025830010 hasConcept C55493867 @default.
- W2025830010 hasConcept C59822182 @default.
- W2025830010 hasConcept C86803240 @default.
- W2025830010 hasConceptScore W2025830010C107872376 @default.
- W2025830010 hasConceptScore W2025830010C124490489 @default.
- W2025830010 hasConceptScore W2025830010C134018914 @default.
- W2025830010 hasConceptScore W2025830010C145148216 @default.
- W2025830010 hasConceptScore W2025830010C148065180 @default.
- W2025830010 hasConceptScore W2025830010C15761196 @default.
- W2025830010 hasConceptScore W2025830010C178790620 @default.
- W2025830010 hasConceptScore W2025830010C185592680 @default.
- W2025830010 hasConceptScore W2025830010C198291218 @default.
- W2025830010 hasConceptScore W2025830010C2776940978 @default.
- W2025830010 hasConceptScore W2025830010C2781083041 @default.
- W2025830010 hasConceptScore W2025830010C28781525 @default.
- W2025830010 hasConceptScore W2025830010C31903555 @default.
- W2025830010 hasConceptScore W2025830010C43617362 @default.
- W2025830010 hasConceptScore W2025830010C4725764 @default.
- W2025830010 hasConceptScore W2025830010C51884965 @default.
- W2025830010 hasConceptScore W2025830010C55493867 @default.
- W2025830010 hasConceptScore W2025830010C59822182 @default.
- W2025830010 hasConceptScore W2025830010C86803240 @default.
- W2025830010 hasIssue "1" @default.
- W2025830010 hasLocation W20258300101 @default.