Matches in SemOpenAlex for { <https://semopenalex.org/work/W1990963151> ?p ?o ?g. }
- W1990963151 endingPage "650" @default.
- W1990963151 startingPage "641" @default.
- W1990963151 abstract "In this work we proposed a model for in vitro interaction of fenitrothion (FEN) with calf thymus-DNA by combination of multispectroscopic and two dimensional molecular modeling (ONIOM) methods. The circular dichroism results showed that FEN changes the conformation of B-DNA and caused some changes to C-DNA form. The FT-IR results confirmed a partial intercalation between FEN and edges of all base pairs. The competitive fluorescence, using methylene blue as fluorescence probe, in the presence of increasing amounts of FEN, revealed that FEN is able to release the non-intercalated methylene blue from the DNA. The weak chemical shift and peak broadening of 1H NMR spectrum of FEN in the presence of DNA confirmed a non-intercalation mode. The 31P NMR showed that FEN interacts more with DNA via its –NO2 moiety. The ONIOM, based on the hybridization of QM/MM (DFT, 6.31++G (d,p)/UFF) methodology, was also performed by Gaussian 2003 package. The results revealed that the interaction is base sequence dependent, and FEN interacts more with AT base sequences." @default.
- W1990963151 created "2016-06-24" @default.
- W1990963151 creator A5036491342 @default.
- W1990963151 creator A5057296536 @default.
- W1990963151 creator A5060689062 @default.
- W1990963151 creator A5065504753 @default.
- W1990963151 creator A5072496842 @default.
- W1990963151 date "2013-03-01" @default.
- W1990963151 modified "2023-09-27" @default.
- W1990963151 title "Proposed model for in vitro interaction between fenitrothion and DNA, by using competitive fluorescence, 31P NMR, 1H NMR, FT-IR, CD and molecular modeling" @default.
- W1990963151 cites W1597848417 @default.
- W1990963151 cites W1968047242 @default.
- W1990963151 cites W1968188042 @default.
- W1990963151 cites W1968344479 @default.
- W1990963151 cites W1976978738 @default.
- W1990963151 cites W1978752808 @default.
- W1990963151 cites W1980509414 @default.
- W1990963151 cites W1981816428 @default.
- W1990963151 cites W1986364363 @default.
- W1990963151 cites W1987976696 @default.
- W1990963151 cites W1988088434 @default.
- W1990963151 cites W1998870875 @default.
- W1990963151 cites W2002002218 @default.
- W1990963151 cites W2004085289 @default.
- W1990963151 cites W2005796784 @default.
- W1990963151 cites W2007170751 @default.
- W1990963151 cites W2007376743 @default.
- W1990963151 cites W2007544197 @default.
- W1990963151 cites W2009403154 @default.
- W1990963151 cites W2009828990 @default.
- W1990963151 cites W2010567978 @default.
- W1990963151 cites W2012759885 @default.
- W1990963151 cites W2013063519 @default.
- W1990963151 cites W2013180679 @default.
- W1990963151 cites W2014726403 @default.
- W1990963151 cites W2017003126 @default.
- W1990963151 cites W2026039024 @default.
- W1990963151 cites W2026332374 @default.
- W1990963151 cites W2028410253 @default.
- W1990963151 cites W2028483076 @default.
- W1990963151 cites W2029515088 @default.
- W1990963151 cites W2035692534 @default.
- W1990963151 cites W2038281856 @default.
- W1990963151 cites W2040367759 @default.
- W1990963151 cites W2042848995 @default.
- W1990963151 cites W2046187817 @default.
- W1990963151 cites W2047612220 @default.
- W1990963151 cites W2052597254 @default.
- W1990963151 cites W2054470442 @default.
- W1990963151 cites W2056613332 @default.
- W1990963151 cites W2057147465 @default.
- W1990963151 cites W2057232940 @default.
- W1990963151 cites W2060131149 @default.
- W1990963151 cites W2063406653 @default.
- W1990963151 cites W2065623337 @default.
- W1990963151 cites W2066706024 @default.
- W1990963151 cites W2069866944 @default.
- W1990963151 cites W2072741235 @default.
- W1990963151 cites W2073070163 @default.
- W1990963151 cites W2074496936 @default.
- W1990963151 cites W2082106291 @default.
- W1990963151 cites W2083837680 @default.
- W1990963151 cites W2086752889 @default.
- W1990963151 cites W2092457598 @default.
- W1990963151 cites W2092706848 @default.
- W1990963151 cites W2092735168 @default.
- W1990963151 cites W2092827016 @default.
- W1990963151 cites W2094744332 @default.
- W1990963151 cites W210711751 @default.
- W1990963151 cites W2113725372 @default.
- W1990963151 cites W2121256782 @default.
- W1990963151 cites W2129095402 @default.
- W1990963151 cites W2131486232 @default.
- W1990963151 cites W2137370347 @default.
- W1990963151 cites W2137573906 @default.
- W1990963151 cites W2141429657 @default.
- W1990963151 cites W2150157042 @default.
- W1990963151 cites W2168432978 @default.
- W1990963151 cites W2169473323 @default.
- W1990963151 cites W2312578576 @default.
- W1990963151 doi "https://doi.org/10.1016/j.tiv.2012.11.004" @default.
- W1990963151 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23153512" @default.
- W1990963151 hasPublicationYear "2013" @default.
- W1990963151 type Work @default.
- W1990963151 sameAs 1990963151 @default.
- W1990963151 citedByCount "24" @default.
- W1990963151 countsByYear W19909631512013 @default.
- W1990963151 countsByYear W19909631512014 @default.
- W1990963151 countsByYear W19909631512015 @default.
- W1990963151 countsByYear W19909631512016 @default.
- W1990963151 countsByYear W19909631512017 @default.
- W1990963151 countsByYear W19909631512018 @default.
- W1990963151 countsByYear W19909631512019 @default.
- W1990963151 countsByYear W19909631512021 @default.
- W1990963151 countsByYear W19909631512022 @default.
- W1990963151 crossrefType "journal-article" @default.
- W1990963151 hasAuthorship W1990963151A5036491342 @default.
- W1990963151 hasAuthorship W1990963151A5057296536 @default.