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甘氨酰环素N,N-二甲基甘氨酰胺米诺环素和N,N-二甲基甘氨酰胺-6-去甲基-6-脱氧四环素对诺卡氏菌属及快速生长分枝杆菌的四环素耐药菌株的活性。

Activities of the glycylcyclines N,N-dimethylglycylamido-minocycline and N,N-dimethylglycylamido-6-demethyl-6-deoxytetracycline against Nocardia spp. and tetracycline-resistant isolates of rapidly growing mycobacteria.

作者信息

Brown B A, Wallace R J, Onyi G

机构信息

Department of Microbiology, University of Texas Health Center, Tyler 75710, USA.

出版信息

Antimicrob Agents Chemother. 1996 Apr;40(4):874-8. doi: 10.1128/AAC.40.4.874.

Abstract

Susceptibilities to the new semisynthetic tetracycline (Tet) compounds N,N-dimethylglycylamido-minocycline (DMG-MINO) and N,N-dimethylglycylamido-6-demethyl-6-deoxytetracycline (DMG-DMDOT) were compared with those to doxycycline, minocycline, and Tet for 198 Tet-resistant (Tetr) and 33 Tet-susceptible (Tets) clinical isolates of rapidly growing mycobacteria (RGM) including the Mycobacterium fortuitum group, Mycobacterium abscessus, Mycobacterium chelonae, and Mycobacterium mucogenicum and 68 isolates belonging to six taxa of Nocardia spp. All Tetr RGM were highly susceptible to the glycylcyclines. The MICs at which 50 and 90% of isolates are inhibited were < or = 0.125 and < or = 0.25 microgram/ml, respectively, for DMG-DMDOT and < or = 0.25 and 1 microgram/ml, respectively, for DMG-MINO. The MIC of DMG-DMDOT at which 50% of Tetr strains are inhibited was the same as that for Tets strains for each of the four taxa of RGM. The new agents were less active against Nocardia spp. MICs of DMG-DMDOT were comparable to those of minocycline except for the MICs for Nocardia brasiliensis sensu stricto, the new taxon Nocardia pseudobrasiliensis, and some isolates of Nocardia nova, against which they were four- to eightfold more active. The MICs of DMG-DMDOT were consistently lower than those of DMG-MINO for RGM. This class of drugs offers exciting therapeutic potential for RGM and for selected species of Nocardia.

摘要

将新的半合成四环素(Tet)化合物N,N - 二甲基甘氨酰胺米诺环素(DMG - MINO)和N,N - 二甲基甘氨酰胺 - 6 - 去甲基 - 6 - 脱氧四环素(DMG - DMDOT)的药敏性与强力霉素、米诺环素和四环素对198株耐四环素(Tetr)和33株四环素敏感(Tets)的快速生长分枝杆菌(RGM)临床分离株进行了比较,这些分离株包括偶然分枝杆菌组、脓肿分枝杆菌、龟分枝杆菌和产黏液分枝杆菌,以及属于诺卡菌属六个分类单元的68株分离株。所有耐四环素的RGM对甘氨环素高度敏感。对于DMG - DMDOT,分别有50%和90%分离株被抑制时的MIC≤0.125和≤0.25微克/毫升,对于DMG - MINO则分别为≤0.25和1微克/毫升。对于四种RGM分类单元中的每一种,50%耐四环素菌株被抑制时DMG - DMDOT的MIC与四环素敏感菌株的相同。新药物对诺卡菌属的活性较低。除了严格意义上的巴西诺卡菌、新分类单元假巴西诺卡菌和一些新星诺卡菌分离株外,DMG - DMDOT的MIC与米诺环素的相当,对这些菌株它们的活性高4至8倍。对于RGM,DMG - DMDOT的MIC始终低于DMG - MINO的MIC。这类药物为RGM和某些诺卡菌属物种提供了令人兴奋的治疗潜力。

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