Matches in SemOpenAlex for { <https://semopenalex.org/work/W2783222743> ?p ?o ?g. }
- W2783222743 endingPage "220" @default.
- W2783222743 startingPage "213" @default.
- W2783222743 abstract "This study was aimed at understanding why dietary polyphenols with a catechol skeleton tend to exhibit cancer chemopreventive activity by using a catechol-type stilbene (3,4-DHS) as a model molecule. Only a short-term cooperation of 3,4-DHS and exogenous Cu(II) exhibited a strong preferential ability to kill HepG2 cells over normal L02 cells. Mechanism studies reveal that this 3,4-DHS/Cu(II) system could produce extracellularly reactive oxygen species (ROS) and o-quinone through two sequential proton loss electron transfer followed by diffusion of ROS into cells, leading to higher intracellular accumulation of ROS, preferential disruption of redox homeostasis and more effective mitochondria-dependent apoptosis as well as necrosis of HepG2 cells than L-02 cells. This work provides further evidence that dietary catechol-type molecules show chemopreventive activity by virtue of their copper-dependent prooxidant action." @default.
- W2783222743 created "2018-01-26" @default.
- W2783222743 creator A5015195367 @default.
- W2783222743 creator A5063818470 @default.
- W2783222743 creator A5067394802 @default.
- W2783222743 creator A5074040876 @default.
- W2783222743 creator A5078332800 @default.
- W2783222743 date "2018-06-01" @default.
- W2783222743 modified "2023-09-27" @default.
- W2783222743 title "ROS-driven and preferential killing of HepG2 over L-02 cells by a short-term cooperation of Cu(II) and a catechol-type resveratrol analog" @default.
- W2783222743 cites W1025135529 @default.
- W2783222743 cites W1964641978 @default.
- W2783222743 cites W1968962983 @default.
- W2783222743 cites W1969524738 @default.
- W2783222743 cites W1972779889 @default.
- W2783222743 cites W1973324444 @default.
- W2783222743 cites W1977178308 @default.
- W2783222743 cites W1989131731 @default.
- W2783222743 cites W2008902243 @default.
- W2783222743 cites W2010716981 @default.
- W2783222743 cites W2028897202 @default.
- W2783222743 cites W2028905776 @default.
- W2783222743 cites W2030591331 @default.
- W2783222743 cites W2039507504 @default.
- W2783222743 cites W2045617306 @default.
- W2783222743 cites W2049854103 @default.
- W2783222743 cites W2050550285 @default.
- W2783222743 cites W2051400101 @default.
- W2783222743 cites W2057737846 @default.
- W2783222743 cites W2079588482 @default.
- W2783222743 cites W2089618033 @default.
- W2783222743 cites W2090530405 @default.
- W2783222743 cites W2096245406 @default.
- W2783222743 cites W2119115728 @default.
- W2783222743 cites W2125063590 @default.
- W2783222743 cites W2132878122 @default.
- W2783222743 cites W2140968862 @default.
- W2783222743 cites W2144542772 @default.
- W2783222743 cites W2144752848 @default.
- W2783222743 cites W2154012797 @default.
- W2783222743 cites W2154587590 @default.
- W2783222743 cites W2157567077 @default.
- W2783222743 cites W2164610670 @default.
- W2783222743 cites W2165062754 @default.
- W2783222743 cites W2606371978 @default.
- W2783222743 doi "https://doi.org/10.1016/j.foodchem.2018.01.069" @default.
- W2783222743 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29412913" @default.
- W2783222743 hasPublicationYear "2018" @default.
- W2783222743 type Work @default.
- W2783222743 sameAs 2783222743 @default.
- W2783222743 citedByCount "20" @default.
- W2783222743 countsByYear W27832227432019 @default.
- W2783222743 countsByYear W27832227432020 @default.
- W2783222743 countsByYear W27832227432021 @default.
- W2783222743 countsByYear W27832227432022 @default.
- W2783222743 countsByYear W27832227432023 @default.
- W2783222743 crossrefType "journal-article" @default.
- W2783222743 hasAuthorship W2783222743A5015195367 @default.
- W2783222743 hasAuthorship W2783222743A5063818470 @default.
- W2783222743 hasAuthorship W2783222743A5067394802 @default.
- W2783222743 hasAuthorship W2783222743A5074040876 @default.
- W2783222743 hasAuthorship W2783222743A5078332800 @default.
- W2783222743 hasConcept C12554922 @default.
- W2783222743 hasConcept C178790620 @default.
- W2783222743 hasConcept C185592680 @default.
- W2783222743 hasConcept C190283241 @default.
- W2783222743 hasConcept C2776816829 @default.
- W2783222743 hasConcept C2777713698 @default.
- W2783222743 hasConcept C2780643102 @default.
- W2783222743 hasConcept C28859421 @default.
- W2783222743 hasConcept C48349386 @default.
- W2783222743 hasConcept C55493867 @default.
- W2783222743 hasConcept C55904794 @default.
- W2783222743 hasConcept C79879829 @default.
- W2783222743 hasConcept C86803240 @default.
- W2783222743 hasConcept C95444343 @default.
- W2783222743 hasConceptScore W2783222743C12554922 @default.
- W2783222743 hasConceptScore W2783222743C178790620 @default.
- W2783222743 hasConceptScore W2783222743C185592680 @default.
- W2783222743 hasConceptScore W2783222743C190283241 @default.
- W2783222743 hasConceptScore W2783222743C2776816829 @default.
- W2783222743 hasConceptScore W2783222743C2777713698 @default.
- W2783222743 hasConceptScore W2783222743C2780643102 @default.
- W2783222743 hasConceptScore W2783222743C28859421 @default.
- W2783222743 hasConceptScore W2783222743C48349386 @default.
- W2783222743 hasConceptScore W2783222743C55493867 @default.
- W2783222743 hasConceptScore W2783222743C55904794 @default.
- W2783222743 hasConceptScore W2783222743C79879829 @default.
- W2783222743 hasConceptScore W2783222743C86803240 @default.
- W2783222743 hasConceptScore W2783222743C95444343 @default.
- W2783222743 hasFunder F4320321001 @default.
- W2783222743 hasLocation W27832227431 @default.
- W2783222743 hasLocation W27832227432 @default.
- W2783222743 hasOpenAccess W2783222743 @default.
- W2783222743 hasPrimaryLocation W27832227431 @default.
- W2783222743 hasRelatedWork W1882356554 @default.
- W2783222743 hasRelatedWork W1966703963 @default.
- W2783222743 hasRelatedWork W2115788076 @default.