Pagani L, Landini P, Luzzaro F, Debiaggi M, Romero E
Istituto di Microbiologia, Facoltà di Medicina e Chirurgia, Università di Pavia, Italy.
Microbiologica. 1990 Jan;13(1):43-53.
The emergence of resistance to imipenem and other beta-lactams by Pseudomonas aeruginosa was investigated with two pairs of isolates. Two of these isolates were susceptible to imipenem and other beta-lactam antibiotics, such as moxalactam, ceftriaxone and cefotaxime, while the other two had developed resistance to those antibiotics during imipenem therapy. So far imipenem-resistant isolates have not demonstrated cross-resistance to other beta-lactam agents. We examined in these clinical isolates the possible mechanisms of resistance due to permeability modifications, either in outer membrane proteins (porins) or to LPS (lipopolysaccharides) complex. Particularly we analysed possible modification of physico-chemical properties of outer membrane proteins, such as changes in their hydrophobicity and electrical charge. beta-lactamase production was also studied. Results showed that resistance to imipenem may be related to loss or modifications in hydrophobicity of an outer membrane protein of about 46 Kdal; other modifications concerned hydrophobicity of the porin OMP F and, in one strain, the LPS complex appears to be responsible for resistance to other beta-lactam antibiotics together in combination with the production of beta-lactamases.
利用两对铜绿假单胞菌分离株研究了其对亚胺培南和其他β-内酰胺类抗生素耐药性的出现情况。其中两对分离株中的两株对亚胺培南和其他β-内酰胺类抗生素敏感,如拉氧头孢、头孢曲松和头孢噻肟,而另外两株在亚胺培南治疗期间对这些抗生素产生了耐药性。到目前为止,耐亚胺培南的分离株尚未表现出对其他β-内酰胺类药物的交叉耐药性。我们在这些临床分离株中研究了由于外膜蛋白(孔蛋白)或脂多糖(LPS)复合物通透性改变导致耐药的可能机制。特别是我们分析了外膜蛋白物理化学性质的可能改变,如它们疏水性和电荷的变化。还研究了β-内酰胺酶的产生情况。结果表明,对亚胺培南的耐药性可能与一种约46Kdal的外膜蛋白疏水性的丧失或改变有关;其他改变涉及孔蛋白OMP F的疏水性,并且在一株菌株中,LPS复合物似乎与β-内酰胺酶的产生共同导致对其他β-内酰胺类抗生素的耐药性。