Rochdi M, Delort A M, Guyot J, Sancelme M, Gibot S, Gourcy J G, Dauphin G, Gumila C, Vial H, Jeminet G
Université Blaise Pascal, U.R.A. 485 du C.N.R.S., Laboratoire de Synthèse et Etude de Systèmes à Intérêt Biologique, Aubière, France.
J Med Chem. 1996 Jan 19;39(2):588-95. doi: 10.1021/jm9505829.
Eight derivatives of monensin with a modified C25-C26 moiety were synthesized. Their ionophore properties were studied on human erythrocytes by measuring Na+ influx with 23Na NMR and concomitant K+ and H+ efflux by potentiometry. Modification of OH-26 led to inversion of selectivity of transport in favor of K+/Na+ in comparison with monensin. This selectivity disappeared by suppression of the C26-OH moiety. Finally the ionophore ability was lost if the head-to-tail chelation of the monensin skeleton was prevented by blocking the terminal OH-25 and -26 functions. All the compounds were inactive on Gram-negative bacteria and fungi. MIC measured on Bacillus cereus showed that derivatives with increased K+/Na+ selectivity were clearly the most active against Bacillus growth. Most of the compounds showed potential antimalarial properties in the nanomolar range when tested in vitro against Plasmodium falciparum. The IC50S measured were correlated with the whole Na+ and K+ transport efficiency rather than with the ionic selectivity. In both cases determination of initial fluxes of transport for both cations (Na+ and K+) was necessary to investigate the relationship between biological and ionophore properties.
合成了8种C25 - C26部分修饰的莫能菌素衍生物。通过用23Na NMR测量Na+内流以及用电位法测量伴随的K+和H+外流,在人红细胞上研究了它们的离子载体特性。与莫能菌素相比,OH - 26的修饰导致运输选择性反转,有利于K+/Na+。通过抑制C26 - OH部分,这种选择性消失。最后,如果通过封闭末端OH - 25和 - 26功能来阻止莫能菌素骨架的头尾螯合,离子载体能力就会丧失。所有化合物对革兰氏阴性菌和真菌均无活性。对蜡样芽孢杆菌测定的MIC表明,具有增加的K+/Na+选择性的衍生物对芽孢杆菌生长的活性明显最高。在体外针对恶性疟原虫进行测试时,大多数化合物在纳摩尔范围内显示出潜在的抗疟特性。测得的IC50与整个Na+和K+运输效率相关,而不是与离子选择性相关。在这两种情况下,确定两种阳离子(Na+和K+)的初始运输通量对于研究生物学特性和离子载体特性之间的关系是必要的。