Hazumi N, Fuse A, Matsuda K, Hashizume T, Sanada M
Tsukuba Research Institute, Banyu Pharmaceutical Co., Ltd., Japan.
Antimicrob Agents Chemother. 1995 Mar;39(3):702-6. doi: 10.1128/AAC.39.3.702.
The mechanism of the enhanced activity of BO-2727 against imipenem-resistant Pseudomonas aeruginosa was studied by using a set of four isogenic strains derived from beta-lactamase-deficient P. aeruginosa PAO4089 (blaJ blaP). Complementation of the blaJ and blaP mutations conferred greater resistance to biapenem, panipenem, and imipenem than to BO-2727 and meropenem, most notably in the outer membrane protein D2-deficient strain. The higher levels of resistance to biapenem, panipenem, and imipenem can be explained by the slow but significant hydrolysis by beta-lactamase, whereas the reduced levels of resistance to BO-2727 and meropenem would be attributable to their stability in the presence of high levels of beta-lactamase and the fact that they cause only low induction of beta-lactamase. It is also noted that the activity of BO-2727 against the beta-lactamase-deficient strain was less affected by the loss of the D2 porin than was that of meropenem, indicating that BO-2727 in comparison with meropenem can overcome an intrinsic resistance caused by the loss of D2. Moreover, comparative in vitro resistance studies have shown that BO-2727 and meropenem selected fewer resistant cells than other carbapenems. In conclusion, BO-2727 exhibited improved activity against imipenem-resistant P. aeruginosa, probably because of its ability to overcome loss of the D2 porin and beta-lactamase hydrolysis.
通过使用一组源自β-内酰胺酶缺陷型铜绿假单胞菌PAO4089(blaJ blaP)的四株同基因菌株,研究了BO - 2727对亚胺培南耐药铜绿假单胞菌增强活性的机制。blaJ和blaP突变的互补赋予对比阿培南、帕尼培南和亚胺培南更高的耐药性,比对BO - 2727和美罗培南的耐药性更高,最显著的是在外膜蛋白D2缺陷型菌株中。对比阿培南、帕尼培南和亚胺培南较高水平的耐药性可通过β-内酰胺酶缓慢但显著的水解来解释,而对BO - 2727和美罗培南较低水平的耐药性则归因于它们在高水平β-内酰胺酶存在下的稳定性以及它们仅引起β-内酰胺酶低诱导的事实。还注意到,与美罗培南相比,BO - 2727对β-内酰胺酶缺陷型菌株的活性受D2孔蛋白缺失的影响较小,这表明与美罗培南相比,BO - 2727可以克服由D2缺失引起的内在耐药性。此外,体外比较耐药性研究表明,与其他碳青霉烯类药物相比,BO - 2727和美罗培南选择的耐药细胞较少。总之,BO - 2727对亚胺培南耐药铜绿假单胞菌表现出改善的活性,可能是因为它能够克服D2孔蛋白的缺失和β-内酰胺酶水解。