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宿主防御增强对青霉素处理的金黄色葡萄球菌的杀伤作用:阿莫西林、氯唑西林和萘夫西林在体外及实验性乳腺炎中的作用

Enhanced killing of penicillin-treated S. aureus by host defences: effects of amoxycillin, cloxacillin and nafcillin in vitro and in experimental mastitis.

作者信息

Craven N, Williams M R, Anderson J C

出版信息

Comp Immunol Microbiol Infect Dis. 1982;5(4):447-56. doi: 10.1016/0147-9571(82)90071-6.

Abstract

The effects of pretreatment of Staphylococcus aureus with subMIC or 10 x MIC amoxycillin, cloxacillin and nafcillin on subsequent killing by bovine neutrophils or sensitivity to lysostaphin were examined in vitro, using penicillinase positive and negative strains. All penicillins increased the susceptibility of S. aureus to bovine neutrophils; with amoxycillin this was most marked with the penicillinase negative strain. Cloxacillin pretreatment was significantly more effective than nafcillin or amoxycillin in some tests and equally effective in others. The sensitivity of S. aureus to lysostaphin was increased following cloxacillin or nafcillin exposure. In a mouse model of mastitis, more cloxacillin and nafcillin-treated S. aureus (at 1/4 MIC) were killed than untreated bacteria 1 hr after infection but by 4 hr no differences were found. No differences were seen after intramammary infection with 10 x MIC penicillin-treated S. aureus. In glands with established chronic mastitis both cloxacillin and nafcillin at high doses failed to kill staphylococci. These findings indicate that prior exposure to penicillins increases staphylococcal susceptibility to killing by neutrophils but following phagocytosis, intracellular bacteria are protected from the lethal action of penicillins.

摘要

使用青霉素酶阳性和阴性菌株,在体外研究了用亚抑菌浓度(subMIC)或10倍抑菌浓度(10 x MIC)的阿莫西林、氯唑西林和萘夫西林对金黄色葡萄球菌进行预处理后,其随后被牛中性粒细胞杀灭的情况或对溶葡萄球菌素的敏感性。所有青霉素均增加了金黄色葡萄球菌对牛中性粒细胞的敏感性;对于阿莫西林,这种情况在青霉素酶阴性菌株中最为明显。在某些试验中,氯唑西林预处理比萘夫西林或阿莫西林显著更有效,而在其他试验中效果相当。氯唑西林或萘夫西林处理后,金黄色葡萄球菌对溶葡萄球菌素的敏感性增加。在乳腺炎小鼠模型中,感染后1小时,与未处理的细菌相比,更多经氯唑西林和萘夫西林处理(1/4 MIC)的金黄色葡萄球菌被杀死,但到4小时时未发现差异。用10倍抑菌浓度青霉素处理的金黄色葡萄球菌进行乳腺内感染后未观察到差异。在已形成慢性乳腺炎的腺体中,高剂量的氯唑西林和萘夫西林均未能杀死葡萄球菌。这些发现表明,预先接触青霉素会增加葡萄球菌对中性粒细胞杀灭作用的敏感性,但在吞噬作用后,细胞内细菌受到保护,免受青霉素的致死作用。

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