Rosen T, Chu D T, Lico I M, Fernandes P B, Marsh K, Shen L, Cepa V G, Pernet A G
Abbott Laboratories, Illinois 60064.
J Med Chem. 1988 Aug;31(8):1598-611. doi: 10.1021/jm00403a020.
The quinolonecarboxylic acids constitute a class of extremely potent and orally active broad-spectrum antibacterial agents. These compounds have been shown to inhibit DNA gyrase, a key enzyme in bacterial DNA replication. The 7-(3-aminopyrrolidinyl)quinolone A-60969 (1) is a particularly potent member of this class and is currently undergoing clinical evaluation. We have studied a series of enantiomerically homogeneous (4S)-7-(4-amino-2-substituted-pyrrolidinyl)quinolones in an effort to utilize the 2-position of the pyrrolidine moiety to improve upon the solubility and pharmacokinetic properties of this class of compounds while still maintaining potent antibacterial activity. We have found that the absolute stereochemistry at the 2-position of the pyrrolidine ring is critical to the maintenance of such activity. In this paper, we report the full details of the asymmetric synthesis and the in vitro and in vivo structure-activity relationships of this series of compounds as well as the physiochemical properties, such as water solubility and log P, associated with the structural modifications. We also discuss the pharmacokinetic properties of several of these compounds in mice and the pharmacokinetics of 59, which has the best overall properties of agents in this study, in dog.
喹诺酮羧酸是一类极具效力且口服活性的广谱抗菌剂。这些化合物已被证明能抑制DNA回旋酶,这是细菌DNA复制中的一种关键酶。7-(3-氨基吡咯烷基)喹诺酮A-60969(1)是该类中一种特别有效的成员,目前正在进行临床评估。我们研究了一系列对映体纯的(4S)-7-(4-氨基-2-取代-吡咯烷基)喹诺酮,试图利用吡咯烷部分的2-位来改善这类化合物的溶解性和药代动力学性质,同时仍保持强效抗菌活性。我们发现吡咯烷环2-位的绝对立体化学对于维持这种活性至关重要。在本文中,我们报告了该系列化合物的不对称合成以及体外和体内构效关系的全部细节,以及与结构修饰相关的物理化学性质,如水溶性和log P。我们还讨论了其中几种化合物在小鼠体内的药代动力学性质以及在本研究中具有最佳综合性质的59在犬体内的药代动力学。