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Journal of Medicinal Chemistry|October 1, 1982
Potential antitumor agents. 37. Organophosphorus derivatives of 9-anilinoacridineG W Rewcastle, B C Baguley, B F CainBritish Journal of Cancer|October 1, 1979
Radiosensitization of E. coli B/r by 9-anilinoacridinesP B Roberts, W A Denny, B F CainJournal of Medicinal Chemistry|January 1, 1986
Potential antitumor agents. 45. Synthesis, DNA-binding interaction, and biological activity of triacridine derivativesG J Atwell, B C Baguley, D Wilmanska, et al.Journal of Medicinal Chemistry|November 21, 1998
DNA-Directed alkylating agents. 7. Synthesis, DNA interaction, and antitumor activity of bis(hydroxymethyl)- and bis(carbamate)-substituted pyrrolizines and imidazolesG J Atwell, J Y Fan, K Tan, et al.Journal of Medicinal Chemistry|May 1, 1988
Potential antitumor agents. 56. "Minimal" DNA-intercalating ligands as antitumor drugs: phenylquinoline-8-carboxamidesG J Atwell, C D Bos, B C Baguley, et al.Anti-Cancer Drug Design|August 1, 1989
Synthesis and anti-tumour activity of topologically-related analogues of flavoneacetic acidG J Atwell, G W Rewcastle, B C Baguley, et al.Journal of Medicinal Chemistry|April 1, 1987
Potential antitumor agents. 48. 3'-Dimethylamino derivatives of amsacrine: redox chemistry and in vivo solid tumor activityG J Atwell, G W Rewcastle, B C Baguley, et al.Journal of Medicinal Chemistry|April 1, 1987
Potential antitumor agents. 50. In vivo solid-tumor activity of derivatives of N-[2-(dimethylamino)ethyl]acridine-4-carboxamideG J Atwell, G W Rewcastle, B C Baguley, et al.Journal of Medicinal Chemistry|April 1, 1987
Potential antitumor agents. 49. 5-substituted derivatives of N-[2-(dimethylamino)ethyl]-9-aminoacridine-4-carboxamide with in vivo solid-tumor activityW A Denny, G J Atwell, G W Rewcastle, et al.Journal of Medicinal Chemistry|May 1, 1987
Relationships between DNA-binding kinetics and biological activity for the 9-aminoacridine-4-carboxamide class of antitumor agentsL P Wakelin, G J Atwell, G W Rewcastle, et al.Pageof 7