Locher H H, Schlunegger H, Hartman P G, Angehrn P, Then R L
Pharma Division, F. Hoffmann-La Roche Ltd, Basel, Switzerland.
Antimicrob Agents Chemother. 1996 Jun;40(6):1376-81. doi: 10.1128/AAC.40.6.1376.
Epiroprim (EPM; Ro 11-8958) is a new selective inhibitor of microbial dihydrofolate reductase. EPM displayed excellent activity against staphylococci, enterococci, pneumococci, and streptococci which was considerably better than that of trimethoprim (TMP). EPM was also active against TMP-resistant strains, although the MICs were still relatively high. Its combination with dapsone (DDS) was synergistic and showed as in vitro activity superior to that of the TMP combination with sulfamethoxazole (SMZ). The EPM-DDS (ratio, 1:19) combination inhibited more than 90% of all important gram-positive pathogens at a concentration of 2 + 38 micrograms/ml. Only a few highly TMP-resistant staphylococci and enterococci were not inhibited. EPM was also more active than TMP against Moraxella catarrhalis, Neisseria meningitidis, and Bacteroides spp., but it was less active than TMP against all other gram-negative bacteria tested. Atypical mycobacteria were poorly susceptible to EPM, but the combination with DDS was synergistic and active at concentrations most probably achievable in biological fluids (MICs from 0.25 +/- 4.75 to 4 + 76 micrograms/ml). EPM and the EPM-DDS combination were also highly active against experimental staphylococcal infections in a mouse septicemia model. The combination EPM-DDS has previously been shown to exhibit activity in Pneumocystis carinii and Toxoplasma models and, as shown in the present study, also shows good activity against a broad range of bacteria including many strains resistant to TMP and TMP-SMZ.
依匹罗普明(EPM;Ro 11-8958)是一种新型的微生物二氢叶酸还原酶选择性抑制剂。EPM对葡萄球菌、肠球菌、肺炎球菌和链球菌显示出优异的活性,比甲氧苄啶(TMP)的活性要好得多。EPM对TMP耐药菌株也有活性,尽管其最低抑菌浓度(MIC)仍然相对较高。它与氨苯砜(DDS)联合使用具有协同作用,体外活性优于TMP与磺胺甲恶唑(SMZ)的联合使用。EPM-DDS(比例为1:19)组合在浓度为2 + 38微克/毫升时能抑制90%以上的所有重要革兰氏阳性病原体。只有少数高度耐TMP的葡萄球菌和肠球菌未被抑制。EPM对卡他莫拉菌、脑膜炎奈瑟菌和拟杆菌属的活性也比TMP高,但对所有其他测试的革兰氏阴性菌的活性低于TMP。非典型分枝杆菌对EPM的敏感性较差,但与DDS联合使用具有协同作用,在生物体液中最可能达到的浓度下有活性(MIC为0.25 +/- 4.75至4 + 76微克/毫升)。在小鼠败血症模型中,EPM和EPM-DDS组合对实验性葡萄球菌感染也有很高的活性。先前已证明EPM-DDS组合在卡氏肺孢子虫和弓形虫模型中具有活性,如本研究所示,它对包括许多耐TMP和TMP-SMZ菌株在内的多种细菌也有良好的活性。