Potential antitumor agents. 47. 3'-Methylamino analogs of amsacrine with in vivo solid tumor activity
作者:Graham J. Atwell、Bruce C. Baguley、Graeme J. Finlay、Gordon W. Rewcastle、William A. Denny
DOI:10.1021/jm00159a035
日期:1986.9
antileukemic agent amsacrine with a 3'-methylamino group provides a compound (3) with a broader spectrum of action, including in vivo activityagainst experimental solidtumors. The synthesis, physicochemical properties, and biological activity of a series of acridine-substituted analogues of 3 are described. The compounds show higher levels of DNA binding, water solubility, and in vivo solidtumor activity
Facile, economical and direct synthesis of 9-anilinoacridines
作者:Khalid M. Khan、Nosheen A. Rao、Zia-Ullah、Muhammad Ali、Shahnaz Perveen、Muhammad Iqbal Choudhary、Atta-Ur-Rahman、Wolfgang Voelter
DOI:10.1080/14786410601129887
日期:2009.1.10
Acridines are well-known group of compounds with a wide variety of biological properties. We describe herein an expeditious approach to prepare anilinoacridine derivatives from mefenamic acid. It is the first report of a one-pot approach to anilinoacridines in good to excellent yields.
Potential antitumor agents. 48. 3'-Dimethylamino derivatives of amsacrine: redox chemistry and in vivo solid tumor activity
作者:Graham J. Atwell、Gordon W. Rewcastle、Bruce C. Baguley、William A. Denny
DOI:10.1021/jm00387a012
日期:1987.4
Structure-activity relationships for a series of acridine-substituted 3'-N(CH3)2 derivatives of the clinical antileukemic drug amsacrine (1) are reported. The parent (unsubstituted) compound 3 has activity against the Lewis lung solid tumor that is superior to amsacrine (1), the new clinical amsacrine analogue 4, and the recently developed 3'-NHCH3 derivative 2. Although the compounds generally bind less well to DNA and are less dose potent in vivo than either their amsacrine (3'-OCH3) or 3'-NHCH3 analogues, they show very high levels of antitumor activity, with the 4-OCH3 derivative capable of effecting 100% cures of the Lewis lung solid tumor. The broad structure-activity relationships for acridine substitution more closely resemble those of the amsacrine than the 3'-NHCH3 series, with 4-substituted and 4,5-disubstituted compounds showing the highest activity.
ATWELL G. J.; BAGULEY B. C.; FINLAY G. J.; REWCASTLE G. W.; DENNY W. A., J. MED. CHEM., 29,(1986) N 9, 1769-1776
作者:ATWELL G. J.、 BAGULEY B. C.、 FINLAY G. J.、 REWCASTLE G. W.、 DENNY W. A.
DOI:——
日期:——
Khan, Khalid Mohammed; Ali, Muhammad; Ambreen, Nida, Journal of the Chemical Society of Pakistan, 2013, vol. 35, # 1, p. 202 - 205