Costantino L, Rastelli G, Vescovini K, Cignarella G, Vianello P, Del Corso A, Cappiello M, Mura U, Barlocco D
J Med Chem. 1996 Oct 25;39(22):4396-405. doi: 10.1021/jm960124f.
Three new series of tricyclic pyridazinones have been synthesized and tested in vitro in order to assess (i) their ability to inhibit aldose reductase enzyme (ALR2) and (ii) their specificity toward the target enzyme with respect to other related oxidoreductases, such as aldehyde reductase, sorbitol dehydrogenase, and glutathione reductase. The inhibitory capability of the most effective compounds (IC50 values ranging from 6.44 to 12.6 microM) appears to be associated with a rather significant specificity for ALR2. Molecular mechanics and molecular dynamic calculations performed on the ALR2-inhibitor complex give indications of specific interaction sites responsible for the binding, thus providing information for the design of new inhibitors with improved affinity for the enzyme.
已合成了三个新系列的三环哒嗪酮,并进行了体外测试,以评估:(i)它们抑制醛糖还原酶(ALR2)的能力;(ii)相对于其他相关氧化还原酶,如醛还原酶、山梨醇脱氢酶和谷胱甘肽还原酶,它们对目标酶的特异性。最有效化合物的抑制能力(IC50值范围为6.44至12.6 microM)似乎与对ALR2具有相当显著的特异性有关。对ALR2-抑制剂复合物进行的分子力学和分子动力学计算给出了负责结合的特定相互作用位点的指示,从而为设计对该酶具有更高亲和力的新抑制剂提供了信息。