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Can a specific sub-group of biofilm- forming Gardnerella vaginalis strains be the real causative agent of bacterial vaginosis?

机译:形成生物膜的阴道加德纳菌菌株的特定亚组可以成为细菌性阴道病的真正病因吗?

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摘要

In the past half century, bacterial vaginosis (BV) has been a controversial topic in medical microbiology, and despite the wealth of information on this topic, the etiological agent has not yet been definitively identified [1]. The first advances on BV pointed Gardnerella vaginalis as the infectious causative agent of BV [2] but soon after it was found that G. vaginalis was also present in healthy women [3]. Additionally, G. vaginalis was not able to cause BV consistently. Furthermore, other microorganisms started to be associated with BV, and this resulted in a shift in the paradigm to that of a multispecies infection. However, epidemiological data revealed inconsistencies with this latter theory [4]. A couple of years ago the first descriptions of multispecies biofilm communities were described in BV [5]. Interestingly, G. vaginalis was present in most cases and accounted for the majority of the biofilm biomass. Further studies demonstrated that biofilm-forming G. vaginalis presented higher tolerance to external stresses [6]. Taking these data into consideration, we hypothesized that strains of G. vaginalis that were able to form biofilms could be the causative agent of BV. To test our hypothesis, we isolated more than 30 bacterial species from BV patients and also several strains of G. vaginalis from healthy women, and tested biofilm forming ability, initial adhesion to human vaginal cells, cytotoxicity activity, antimicrobial resistance and gene expression of know virulent genes. Our results revealed that G. vaginalis outcompeted all the other bacterial species in the initial adhesion to the epithelial cells. Furthermore, when comparing BV-associated G. vaginalis strains to strains isolated from healthy women, we found that all 7strains from BV were more virulent than the 7 strains colonizing healthy women, as measured by the higher cytotoxicity and the higher initial adhesion to epithelial cells. No significant differences were found in antimicrobial resistance profiles. Interestingly, no significant differences in expression of known virulence genes were detected, suggesting that the higher virulence of the BV-associated G. vaginalis was due to a yet unknown virulence determinant. We then tested virulent G. vaginalis against other known BV-associated anaerobe pathogens, namely Mobiluncus mulieris, Atopobium vaginae, Prevotella bivia and Fusobacteria nucleatum in mixed biofilm formation quantification. Interestingly, while the other tested anaerobes did not reveal a higher initial adhesion, they did enhance biofilm formation by G. vaginalis. Overall, our data suggests that virulent variants of G. vaginalis have the potential to be the etiological agent of BV, while acknowledging that other anaerobes do enhance G. vaginalis virulence.
机译:在过去的半个世纪中,细菌性阴道病(BV)在医学微生物学中一直是一个有争议的话题,尽管有关该话题的信息很多,但尚未明确确定病原体[1]。 BV的第一个进展指出阴道加德纳菌是BV的传染病病原体[2],但不久之后,人们发现健康女性中也存在阴道加德纳菌[3]。此外,阴道加德纳菌不能持续引起BV。此外,其他微生物开始与BV相关,这导致范式向多物种感染的范式转移。然而,流行病学数据显示与后一种理论不一致[4]。几年前,在BV中描述了多物种生物膜群落的最初描述[5]。有趣的是,在大多数情况下都存在阴道加德纳菌,占生物膜生物量的大部分。进一步的研究表明,形成生物膜的阴道加德纳菌对外部压力表现出更高的耐受性[6]。考虑到这些数据,我们假设能够形成生物膜的阴道G.菌株可能是BV的病原体。为了检验我们的假设,我们从BV患者中分离了30多种细菌,还从健康女性中分离了几株阴道加德纳菌,并测试了生物膜形成能力,对人阴道细胞的初始粘附力,细胞毒性活性,抗菌素耐药性和已知的基因表达毒性基因。我们的结果表明,阴道粘膜芽孢杆菌在与上皮细胞的初始粘附中胜过所有其他细菌。此外,当将BV相关的阴道加德纳菌菌株与从健康女性中分离出的菌株进行比较时,我们发现,BV的所有7个菌株比定居健康女性的7个菌株更具毒性,这是通过较高的细胞毒性和对上皮细胞的较高初始粘附性来衡量的。在抗菌素耐药性方面没有发现显着差异。有趣的是,未检测到已知毒力基因表达的显着差异,这表明与BV相关的阴道加德纳菌更高的毒力是由于尚未确定的毒力决定因素。然后,我们在混合生物膜形成定量分析中,针对其他已知的BV相关厌氧菌病原体,即Mobiluncus mulieris,阴道Atopobium,Bivo小球藻和Fusobacteria nucleatum,测试了有毒的G.阴道菌。有趣的是,虽然其他测试的厌氧菌没有显示出更高的初始粘附力,但它们确实增强了阴道加德纳菌的生物膜形成。总体而言,我们的数据表明,阴道加德纳菌的强毒变异体有可能成为BV的病原体,同时也认识到其他厌氧菌确实会增强阴道加德纳菌的毒力。

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