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Coumarins and pyranocoumarins, potential novel pharmacophores for inhibition of measles virus replication.

机译:香豆素和吡喃香豆素是潜在的抑制麻疹病毒复制的新型药效团。

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A series of coumarin and pyranocoumarin analogues were evaluated in vitro for antiviral efficacy against measles virus (MV), strain Chicago. Of the 22 compounds tested for inhibition, six were found to have selectivity indices greater than 10. These were compounds 5-hydroxy-7-propionyloxy-4-propylcoumarin (2a), 5,7-bis(tosyloxy)-4-propylcoumarin (7); 5-hydroxy-4-propyl-7-tosyloxy-coumarin (8); 6,6-dimethyl-9-propionyloxy-4-propyl-2H,6H-benzo[1,2-b:3,4-b']dipyran-2-on e (9); 6,6-dimethyl-9-pivaloyloxy-4-propyl-2H,6H-benzo[1,2-b:3,4-b']dipyran-2-one (10); and 7,8-cis-10,11,12-trans-4-propyl-6,6,10,11-tetramethyl-7,8,9-trihydroxy-2H, 6H,12H-benzo[1 ,2-b:3,4-b':5,6-b'']tripyran-2-one (18). Three of the active drugs were propyl coumarin analogues (2a, 7 and 8), two were dipyranone or chromeno-coumarins (9 and 10), and one was a benzotripyranone with a coumarin nucleus (18). Some appeared to be rather specific and potent inhibitors of MV with EC50 values ranging from 0.2 to 50 microg/ml and the majority of the EC50 values being less than 5 pg/ml. The compounds inhibited an additional nine strains of MV, and in virucidal tests the drugs did not physically disrupt the virion to inhibit virus replication. The inhibitory activity for one of the compounds tested (7) was somewhat dependent on virus concentration and it was still active when added to cells up to 24 h after virus exposure. When used in combination with ribavirin, compound 7 appeared not to profoundly affect the antiviral efficacy of ribavirin or its cell-associated toxicity. However, a slightly antagonistic MV-inhibitory effect was observed at the highest concentration of ribavirin used in combination with most concentrations of compound 7 tested. This and related compounds may be valuable leads in the development of a potent and selective class of MV inhibitors that could be used in future in the clinic.
机译:在体外评估了一系列香豆素和吡喃香豆素类似物对麻疹病毒(MV)芝加哥菌株的抗病毒功效。在测试的22种抑制性化合物中,有6种的选择性指数大于10。这些化合物是5-羟基-7-丙酰氧基-4-丙基香豆素(2a),5,7-双(甲苯氧基)-4-丙基香豆素( 7); 5-羟基-4-丙基-7-甲苯磺酰香豆素(8);在e上的6,6-二甲基-9-丙酰氧基-4-丙基-2H,6H-苯并[1,2-b:3,4-b']双吡喃-2-(9); 6,6-二甲基-9-新戊酰氧基-4-丙基-2H,6H-苯并[1,2-b:3,4-b']双吡喃-2-酮(10);和7,8-顺式10,11,12-反式-4-丙基-6,6,10,11-四甲基-7,8,9-三羟基-2H,6H,12H-苯并[1,2-b :3,4-b':5,6-b''] tripyran-2-one(18)。三种活性药物是丙基香豆素类似物(2a,7和8),两种是双吡喃酮或色诺香豆素(9和10),一种是带有香豆素核的苯并三甲基吡喃酮(18)。一些似乎是相当特异性和有效的MV抑制剂,其EC 50值在0.2至50μg/ ml之间,并且大多数EC 50值小于5pg / ml。这些化合物还抑制了另外9种MV菌株,在杀病毒测试中,这些药物并未物理破坏病毒体以抑制病毒复制。对一种测试化合物(7)的抑制活性在某种程度上取决于病毒的浓度,并且在暴露于病毒后24小时内添加到细胞中时仍然具有活性。当与利巴韦林联合使用时,化合物7似乎并未深刻影响利巴韦林的抗病毒功效或其与细胞相关的毒性。然而,在最高浓度的利巴韦林与大多数浓度的受试化合物7结合使用时,观察到了轻微的拮抗MV抑制作用。该化合物和相关化合物可能是开发有效和选择性类别的MV抑制剂的有价值的先导,可在未来的临床中使用。

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