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Molecular Pharmaceutics|July 5, 2013
An expert system to predict the forced degradation of organic moleculesAlexis D C Parenty, William G Button, Martin A Ott
The Journal of Organic Chemistry|October 8, 2009
Fine tuning reactivity: synthesis and isolation of 1,2,3,12b-tetrahydroimidazo[1,2-f]phenanthridinesCraig J Richmond, Roslyn M Eadie, Alexis D C Parenty, et al.
Organic Letters|May 16, 2007
A general and efficient five-step one-pot procedure leading to nitrogen-bridgehead heterocycles containing an imidazole ringAlexis D C Parenty, Yu-Fei Song, Craig J Richmond, et al.
Biophysical Chemistry|June 6, 2006
Microcalorimetry of interaction of dihydro-imidazo-phenanthridinium (DIP)-based compounds with duplex DNAKevin M Guthrie, Alexis D C Parenty, Louise V Smith, et al.
Journal of the American Chemical Society|September 4, 2008
Realization of a "lockable" molecular switch via pH- and redox-modulated cyclizationCraig J Richmond, Alexis D C Parenty, Yu-Fei Song, et al.
The Journal of Organic Chemistry|September 18, 2004
General one-pot, three-step methodology leading to an extended class of N-heterocyclic cations: spontaneous nucleophilic addition, cyclization, and hydride lossAlexis D C Parenty, Louise V Smith, Alexandra L Pickering, et al.
Chemical Communications (Cambridge, England)|July 2, 2009
A new C-C bond forming annulation reaction leading to pH switchable heterocyclesPhilip J Kitson, Alexis D C Parenty, Craig J Richmond, et al.
Chembiochem : a European Journal of Chemical Biology|October 13, 2006
Dihydroimidazophenanthridinium (DIP)-based DNA binding agents with tuneable structures and biological activityLouise V Smith, Alexis D C Parenty, Kevin M Guthrie, et al.
Chemical Communications (Cambridge, England)|March 7, 2006
Discovery of an imidazo-phenanthridine synthon produced in a 'five-step one-pot reaction' leading to a new family of heterocycles with novel physical propertiesAlexis D C Parenty, Kevin M Guthrie, Yu-Fei Song, et al.
Journal of Medicinal Chemistry|July 8, 2005
Highly stable phenanthridinium frameworks as a new class of tunable DNA binding agents with cytotoxic propertiesAlexis D C Parenty, Louise V Smith, Kevin M Guthrie, et al.
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