Singh B, Lesher G Y, Pluncket K C, Pagani E D, Bode D C, Bentley R G, Connell M J, Hamel L T, Silver P J
Sterling Winthrop Pharmaceuticals Research Division, Rensselaer, New York 12144.
J Med Chem. 1992 Dec 25;35(26):4858-65. doi: 10.1021/jm00104a012.
Two series of medorinone (3) analogs were prepared by modifications at C(2) and C(5). The C(2)-series was prepared from 2-chloro-5-methyl-1,6-naphthyridine (4) by replacement of the chloro group with various nucleophiles. The C(5)-series was prepared from 5-acyl-6-[2-(dimethylamino)-ethenyl]-2(1H)-pyridinone (11), 5-bromo-1,6-naphthyridin-2(1H)-one (17), and 1,3-diketones 19 and 27. 1,6-Naphthyridin-2(1H)-ones are novel inhibitors of cAMP PDE III. Modification of the carbonyl group of 3 or N-methylation at N(1) resulted in a dramatic loss of enzyme activity. Absence of the C(5)-methyl group of medorinone (3) or its shift to C(3) or C(7) also resulted in reduced activity. Substitution at C(3) also diminished activity. However, substitution at C(5) by a wide variety of substituents led to improvement of enzyme activity and several C(5)-substituted analogs were more potent than milrinone.
通过对C(2)和C(5)进行修饰,制备了两系列的米力农(3)类似物。C(2)系列是由2-氯-5-甲基-1,6-萘啶(4)通过用各种亲核试剂取代氯原子制备而成。C(5)系列是由5-酰基-6-[2-(二甲基氨基)-乙烯基]-2(1H)-吡啶酮(11)、5-溴-1,6-萘啶-2(1H)-酮(17)以及1,3-二酮19和27制备而成。1,6-萘啶-2(1H)-酮是新型的环磷酸腺苷磷酸二酯酶III(cAMP PDE III)抑制剂。对3的羰基进行修饰或在N(1)处进行N-甲基化会导致酶活性急剧丧失。米力农(3)的C(5)-甲基缺失或其迁移至C(3)或C(7)也会导致活性降低。在C(3)处进行取代也会降低活性。然而,在C(5)处用多种取代基进行取代会提高酶活性,并且几种C(5)-取代的类似物比米力农更具效力。