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白细胞水解酶对细菌的影响 VIII. 白细胞提取物、溶菌酶、酶“鸡尾酒”和青霉素对体外金黄色葡萄球菌和 A 组链球菌溶解的联合作用。

The effect of leukocyte hydrolases on bacteria VIII. The combined effect of leukocyte extracts, lysozyme, enzyme "cocktails," and penicillin on the lysis ofStaphylococcus aureus and group a streptococci in vitro.

机构信息

Department of Oral Biology, Faculty of Dental Medicine, Hebrew University-Hadassah Medical Center, Jerusalem, Israel.

出版信息

Inflammation. 1976 Dec;1(4):371-407. doi: 10.1007/BF00920338.

Abstract

Cultures ofStaphylococcus aureus, which are harvested from the stationary phase of growth, are extremely resistant to lysis by extracts of human blood leukocytes. Such bacteria are, however, rendered susceptible to bacteriolysis when cultivated in the presence of subinhibitory concentrations of penicillin G, nafcillin, or cloxacillin (0.05μg/ml). The lytic effect of the leukocyte extracts on the penicillin-grown bacteria is further augmented by the addition of egg-white lysozyme. Staphylococci, which are harvested from the logarithmic phase of growth in ordinary media, are susceptible to lysis by leukocyte extracts, maximal lysis being achieved with about 100μg/ml of leukocyte extracts. On the other hand, penicillin-grown staphylococci are lysed by much smaller amounts of leukocyte extracts (20μg/ml), and much shorter periods of incubation are needed to achieve maximal lysis. Similar results are obtained when the leukocyte extracts are substituted by a cocktail of lytic agents which contain crude trypsin, lysolecithin, and lysozyme. Lysis of the staphylococci by the leukocyte extracts, fortified by lysozyme, is optimal at pH 5.0 and is accompanied by the solubilization of the bulk of glucosamine, known to be mostly concentrated in the peptidoglycan of the cell wall. Penicillin-grown staphylococci are also more susceptible than controls to lysis by a mixture of histone and lysozyme. The lysis, by leukocyte extracts and by the cocktail of both regular and penicillin-grown staphylococci, is strongly inhibited to the same extent by heparin, liquoid, histone, protamine sulfate, IgG, and human serum. On the other hand, no inhibition of lysis is achieved by chloramphenicol, streptomycin, erythromycin, KCN, HgCl2, or by neutral polyelectrolytes. Group A streptococci, which are extremely resistant to degradation by leukocyte extracts or by the cocktail, when harvested from any phase of growth, also become susceptible to lysis by leukocyte extracts or by the cocktail when grown in the presence of small amounts of penicillin (0.004-0.008μ/ml). Bacteriolysis became even more pronounced when the reaction mixtures were incubated at 41 °C, a temperature likely to develop in patients with streptococcal infections. Electron-microscope examination of the staphylococci following treatment with leukocyte enzymes and penicillin revealed that both cell wall and cytoplasmic structures were severely damaged by the lytic agents. The mechanisms by which penicillin exposes the bacterial cell walls to cleavage by leukocyte extracts is discussed, and the phenomenon of enhanced susceptibility to lysis by leukocyte enzymes is related to the role played by undegraded bacterial constituents in the initiation of chronic inflammatory lesions.

摘要

从静止期生长收获的金黄色葡萄球菌培养物对人白细胞提取物的裂解具有极强的抗性。然而,当在亚抑菌浓度的青霉素 G、萘夫西林或氯唑西林(0.05μg/ml)存在下培养时,这些细菌对细菌溶解变得敏感。白细胞提取物对青霉素生长细菌的溶菌作用通过添加蛋清溶菌酶进一步增强。从普通培养基的对数生长期收获的葡萄球菌容易被白细胞提取物溶解,用约 100μg/ml 的白细胞提取物可实现最大溶解。另一方面,青霉素生长的葡萄球菌用较少量的白细胞提取物(20μg/ml)溶解,并且需要较短的孵育时间才能达到最大溶解。当用包含粗胰蛋白酶、溶磷脂酶和溶菌酶的溶酶体混合物代替白细胞提取物时,可获得类似的结果。用溶菌酶强化的白细胞提取物对葡萄球菌的溶解在 pH 5.0 时最佳,并伴随着大部分集中在细胞壁肽聚糖中的葡萄糖胺的溶解。与对照相比,青霉素生长的葡萄球菌对组蛋白和溶菌酶混合物的溶解也更敏感。白细胞提取物和常规和青霉素生长的葡萄球菌混合物的裂解均受到肝素、液态、组蛋白、鱼精蛋白硫酸盐、IgG 和人血清的强烈抑制。另一方面,氯霉素、链霉素、红霉素、KCN、HgCl2 或中性聚电解质不能抑制裂解。从任何生长阶段收获的 A 组链球菌对白细胞提取物或混合物的降解非常抵抗,当在小剂量青霉素(0.004-0.008μ/ml)存在下生长时,也变得容易被白细胞提取物或混合物溶解。当反应混合物在 41°C 下孵育时,裂解变得更加明显,这是链球菌感染患者可能出现的温度。用白细胞酶和青霉素处理葡萄球菌后进行电子显微镜检查发现,细胞壁和细胞质结构都受到溶菌剂的严重破坏。讨论了青霉素使细菌细胞壁暴露于白细胞提取物裂解的机制,并将白细胞酶的溶解敏感性增强与未降解细菌成分在启动慢性炎症病变中所起的作用联系起来。

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