Vielfort Katarina, Sjölinder Hong, Roos Stefan, Jonsson Hans, Aro Helena
Department of Medical Biochemistry and Microbiology, Biomedical Centre, Uppsala University, S-751 23, Uppsala, Sweden.
Microbes Infect. 2008 Oct;10(12-13):1325-34. doi: 10.1016/j.micinf.2008.07.032. Epub 2008 Aug 9.
Lactobacilli are normal inhabitants of our microbiota and are known to protect against pathogens. Neisseria gonorrhoeae is a human specific pathogenic bacterium that colonises the urogenital tract where it causes gonorrhoea. In this study we analysed early interactions between lactobacilli and gonococci and investigated how they compete for adherence to human epithelial cervical cells. We show that lactobacilli adhere at various levels and that the number of adherent bacteria does not correlate to the level of protection against gonococcal infection. Protection against gonococcal adhesion varied between Lactobacillus species. Lactobacillus crispatus, Lactobacillus gasseri and Lactobacillus reuteri were capable of reducing gonococcal adherence while Lactobacillus rhamnosus was not. Lactobacillus strains of vaginal origin had the best capacity to remain attached to the host cell during gonococcal adherence. Further, we show that gonococci and lactobacilli interact with each other with resultant lactobacilli incorporation into the gonococcal microcolony. Hence, gonococci bind to colonised lactobacilli and this complex frequently detaches from the epithelial cell surface, resulting in reduced bacterial colonisation. Also, purified gonococcal pili are capable of removing adherent lactobacilli from the cell surface. Taken together, we reveal novel data regarding gonococcal and lactobacilli competition for adherence that will benefit future gonococcal prevention and treatments.
乳酸杆菌是我们微生物群的正常寄居菌,已知其具有抵御病原体的作用。淋病奈瑟菌是一种人类特异性病原菌,可定植于泌尿生殖道并引发淋病。在本研究中,我们分析了乳酸杆菌与淋球菌之间的早期相互作用,并研究了它们如何竞争黏附于人类宫颈上皮细胞。我们发现,乳酸杆菌在不同水平上黏附,且黏附细菌的数量与抵御淋球菌感染的保护水平无关。不同乳酸杆菌种类对淋球菌黏附的保护作用有所不同。卷曲乳酸杆菌、加氏乳酸杆菌和罗伊氏乳酸杆菌能够减少淋球菌的黏附,而鼠李糖乳酸杆菌则不能。来自阴道的乳酸杆菌菌株在淋球菌黏附期间保持附着于宿主细胞的能力最强。此外,我们还表明,淋球菌与乳酸杆菌相互作用,导致乳酸杆菌被纳入淋球菌微菌落。因此,淋球菌与已定植的乳酸杆菌结合,这种复合物经常从上皮细胞表面脱离,从而减少细菌定植。而且,纯化的淋球菌菌毛能够从细胞表面去除黏附的乳酸杆菌。综上所述,我们揭示了关于淋球菌与乳酸杆菌竞争黏附的新数据,这将有利于未来淋病的预防和治疗。