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通过黏附试验和双聚合物水相系统研究腐生葡萄球菌和表皮葡萄球菌的表面特性。

Surface properties of Staphylococcus saprophyticus and Staphylococcus epidermidis as studied by adherence tests and two-polymer, aqueous phase systems.

作者信息

Colleen S, Hovelius B, Wieslander A, Mårdh P A

出版信息

Acta Pathol Microbiol Scand B. 1979 Dec;87(6):321-8. doi: 10.1111/j.1699-0463.1979.tb02446.x.

Abstract

S. saprophyticus is an established pathogen in man, devoided of characteristics associated with pathogenicity in Staphylococcus aureus. The ability of this species to attach to cells from regions, viz. the urinary tract, where it acts as an invador and to cells from areas where it is known as a commensal, was compared to its behaviour in this respect with another staphylococcal species, viz. S. epidermidis. S. saprophyticus showed a preferenital adherence to human exfoliated urogenital cells, when compared with its ability to attach to skin and buccal cells from man and also when compared with procine cells from these regions. The profound ability to adhere to human exfoliated urogenital epithelial cells by far exceeded that of S. epidermidis, while no such species difference was found when testing porcine cells (S. saprophyticus is unknown as a urogenital tract pathogen in pigs). When studied in a two-polymer, aqueous phase system, S. saprophyticus and S. epidermidis were found to have a negative surface charge at pH 7.2, but the former carried a considerably higher surface charge density. Both staphylococcal species exhibited a poor hydrophobic interaction liability. These physico-chemical surface characteristics are briefly discussed with regard to the differential bacteria-cell interactions of these species.

摘要

腐生葡萄球菌是人类的一种既定病原体,缺乏与金黄色葡萄球菌致病性相关的特征。将该菌种附着于来自尿路等区域的细胞(在这些区域它作为入侵者)以及来自已知其为共生菌区域的细胞的能力,与其在这方面与另一种葡萄球菌菌种即表皮葡萄球菌的行为进行了比较。与它附着于人类皮肤和颊细胞的能力相比,以及与来自这些区域的猪细胞相比,腐生葡萄球菌表现出对人类脱落的泌尿生殖细胞的优先黏附性。其黏附人类脱落的泌尿生殖上皮细胞的强大能力远远超过表皮葡萄球菌,而在测试猪细胞时未发现这种菌种差异(腐生葡萄球菌在猪中并非泌尿生殖道病原体)。在双聚合物水相系统中进行研究时,发现腐生葡萄球菌和表皮葡萄球菌在pH 7.2时表面带负电荷,但前者携带的表面电荷密度要高得多。两种葡萄球菌菌种的疏水相互作用倾向都很差。针对这些菌种不同的细菌 - 细胞相互作用,简要讨论了这些物理化学表面特征。

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