首页> 外文OA文献 >Suppression of intrinsic resistance to penicillins in Staphylococcus aureus by polidocanol, a dodecyl polyethyleneoxid ether.
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Suppression of intrinsic resistance to penicillins in Staphylococcus aureus by polidocanol, a dodecyl polyethyleneoxid ether.

机译:通过十二烷基聚环氧乙烷醚多多酚抑制金黄色葡萄球菌对青霉素的内在抗性。

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摘要

With polidocanol, it was possible to reduce the MIC as well as the MBC of methicillin, oxacillin, penicillin G, and ampicillin against resistant staphylococci. The strongest effects were obtained with methicillin and oxacillin. All strains tested could be resensitized to these penicillins independent of the original resistance levels. Polidocanol was not inhibitory by itself for Staphylococcus aureus. Furthermore, it did not inhibit the activity of staphylococcal beta-lactamase. This permits the conclusion that an intrinsic resistance mechanism is affected by this substance. Its action cannot be simply explained by an improved accessibility of the penicillin targets as uptake, and binding of methicillin and penicillin G in resistant cells was not changed by polidocanol. On the other hand, the lysis induced by combinations of this substance with small amounts of a penicillin was antagonized by chloramphenicol. This suggests that autolytic enzymes are involved in the polidocanol effect and possibly in the intrinsic resistance mechanism itself. Before polidocanol can trigger lysis, the penicillin must act first in some way. As could be seen with a susceptible strain, the resulting lysis did not exceed that obtained with penicillins alone. Thus, polidocanol does not exhibit an independent lytic mechanism but obviously is able to substitute penicillins in their lytic action.
机译:使用多多酚,可以降低甲氧西林,奥沙西林,青霉素G和氨苄青霉素对耐药葡萄球菌的MIC以及MBC。甲氧西林和奥沙西林的作用最强。所有测试的菌株均可独立于原始抗药性水平而对这些青霉素重新敏化。聚泊多醇本身不抑制金黄色葡萄球菌。此外,它不抑制葡萄球菌β-内酰胺酶的活性。这可以得出结论,固有抵抗机制受该物质影响。它的作用不能简单地通过青霉素靶标的吸收性得到改善而简单地解释,并且多西多醇不会改变耐药细胞中甲氧西林和青霉素G的结合。另一方面,该物质与少量青霉素的结合所引起的裂解被氯霉素所拮抗。这表明自溶酶参与了多多酚的作用,并可能参与了内在抗性机制本身。在青霉酚可以触发裂解之前,青霉素必须首先以某种方式起作用。从易感菌株可以看出,所得裂解不超过单独使用青霉素获得的裂解。因此,多多酚醇没有显示出独立的溶解机理,但是显然能够在其溶解作用中替代青霉素。

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