Biava M, Fioravanti R, Porretta G C, Frachey G, Mencarelli P, Sleiter G, Perazzi M E, Simonetti N, Villa A
Dipartimento di Studi di Chimica e Tecnologia delle Sostanze Biologicamente Attive, Università La Sapienza, Roma, Italy.
Farmaco. 1995 Jun;50(6):431-8.
Owing to the increasing need of drugs for the treatment of a variety of fungal and bacterial opportunistic infections, a study has been started with the aim of synthesizing structures amenable to a number of easily-to-perform structural modifications in order to meet the requirement of bypassing resistance phenomena. This paper reports on the synthesis of several N-(alpha-azaheteroaryl)-substituted 2,5-dimethyl-pyrroles bearing in one beta-position (or in both beta-positions) aminomethyl groups, introduced via a Mannich reaction. Electronic and steric effects by the N-(azaheteroaryl) substituents and the 2- and 5-methyl groups on the course of the Mannich reaction are discussed along with the results of in vitro tests against many Candida species, some bacteria, and several pathogenic plant fungi.
由于治疗各种真菌和细菌机会性感染的药物需求不断增加,已启动一项研究,旨在合成适合进行多种易于操作的结构修饰的结构,以满足绕过耐药现象的要求。本文报道了通过曼尼希反应引入的几个在一个β-位(或两个β-位)带有氨甲基的N-(α-氮杂芳基)取代的2,5-二甲基吡咯的合成。讨论了N-(氮杂芳基)取代基以及2-和5-甲基对曼尼希反应过程的电子和空间效应,以及针对多种念珠菌、一些细菌和几种致病植物真菌的体外测试结果。