Adenosine deaminase inhibitors. Synthesis and biological evaluation of aralkyladenines (ARADS)
摘要:
Several 9-aralkyladenines have been prepared and their ADA inhibitory activity was determined. A minimum of two carbon atoms separating the aromatic ring from the adenine-bearing carbon (C3') was found essential for potent activity. (C) 1998 Elsevier Science Ltd. All rights reserved.
Adenosine Deaminase Inhibitors: Synthesis and Biological Evaluation of Unsaturated, Aromatic, and Oxo Derivatives of (+)-erythro-9-(2‘S-Hydroxy-3‘R-nonyl)adenine [(+)-EHNA]
摘要:
The synthesis and biological evaluation of three classes of chain-modified derivatives of(+)EHNA are described. Among the 5',6'-unsaturated derivatives, the Z-isomer was the most potent inhibitor of adenosine deaminase (ADA) but 3-fold less active than (+)-EHNA. Several 9-aralkyladenines (ARADs) have been prepared, and their inhibitory activity was determined. A minimum of two carbon atoms separating the aromatic ring from the adenine-bearing carbon (C-3') was found to be essential for ADA activity equal to or slightly greater than that of (+)EHNA. Finally, replacement of the C-5' carbon with an oxygen resulted in reduced potency.
Adenosine deaminase inhibitors. Synthesis and biological evaluation of aralkyladenines (ARADS)
作者:Mark A. Curtis、Vaibhav Varkhedkar、Palle V.P. Pragnacharyulu、Elie Abushanab
DOI:10.1016/s0960-894x(98)00291-1
日期:1998.7
Several 9-aralkyladenines have been prepared and their ADA inhibitory activity was determined. A minimum of two carbon atoms separating the aromatic ring from the adenine-bearing carbon (C3') was found essential for potent activity. (C) 1998 Elsevier Science Ltd. All rights reserved.
Adenosine Deaminase Inhibitors: Synthesis and Biological Evaluation of Unsaturated, Aromatic, and Oxo Derivatives of (+)-<i>e</i><i>rythro</i>-9-(2‘<i>S</i>-Hydroxy-3‘<i>R</i>-nonyl)adenine [(+)-EHNA]
作者:Palle V. P. Pragnacharyulu、Vaibhav Varkhedkar、Mark A. Curtis、I. F. Chang、Elie Abushanab
DOI:10.1021/jm0002533
日期:2000.11.1
The synthesis and biological evaluation of three classes of chain-modified derivatives of(+)EHNA are described. Among the 5',6'-unsaturated derivatives, the Z-isomer was the most potent inhibitor of adenosine deaminase (ADA) but 3-fold less active than (+)-EHNA. Several 9-aralkyladenines (ARADs) have been prepared, and their inhibitory activity was determined. A minimum of two carbon atoms separating the aromatic ring from the adenine-bearing carbon (C-3') was found to be essential for ADA activity equal to or slightly greater than that of (+)EHNA. Finally, replacement of the C-5' carbon with an oxygen resulted in reduced potency.