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首页> 外文期刊>Journal of Molecular Biology >The Double Life of Group B Streptococcus: Asymptomatic Colonizer and Potent Pathogen
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The Double Life of Group B Streptococcus: Asymptomatic Colonizer and Potent Pathogen

机译:B组链球菌的双重寿命:无症状的殖民机和有效病原体

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Group B streptococcus (GBS) is a p-hemolytic gram-positive bacterium that colonizes the lower genital tract of approximately 18% of women globally as an asymptomatic member of the gastrointestinal and/or vaginal flora. If established in other host niches, however, GBS is highly pathogenic. During pregnancy, ascending GBS infection from the vagina to the intrauterine space is associated with preterm birth, stillbirth, and fetal injury. In addition, vertical transmission of GBS during or after birth results in life-threatening neonatal infections, including pneumonia, sepsis, and meningitis. Although the mechanisms by which GBS traffics from the lower genital tract to vulnerable host niches are not well understood, recent advances have revealed that many of the same bacterial factors that promote asymptomatic vaginal carriage also facilitate dissemination and virulence. Furthermore, highly pathogenic GBS strains have acquired unique factors that enhance survival in invasive niches. Several host factors also exist that either subdue GBS upon vaginal colonization or alternatively permit invasive infection. This review summarizes the GBS and host factors involved in GBS's state as both an asymptomatic colonizer and an invasive pathogen. Gaining a better understanding of these mechanisms is key to overcoming the challenges associated with vaccine development and identification of novel strategies to mitigate GBS virulence.
机译:B组链球菌(GBS)是一种溶血性革兰氏阳性细菌,其将大约18%的女性作为胃肠道和/或阴道菌群的无症状成员殖民地殖民。然而,如果在其他宿主的核仁中建立,GBS是高致病性的。在怀孕期间,将GBS从阴道到宫内空间的升序与早产,死产和胎损伤有关。此外,在出生期间或之后GBS的垂直传播导致危及生命的新生儿感染,包括肺炎,败血症和脑膜炎。虽然GBS流量从下生殖道对脆弱的宿主利用群体的机制尚不清楚,但最近的进步揭示了促进无症状阴道摩托车的许多相同的细菌因素也有助于传播和毒力。此外,高致病性GBS菌株已经获得了增强侵袭性核仁局部生存的独特因素。还存在几个宿主因子,即阴道殖民化或允许侵入性感染后的GBS。本综述总结了GBS状态,作为无症状殖民机和侵入性病原体的GBS状态涉及的GBS和宿主因子。更好地了解这些机制是克服与疫苗开发相关挑战的关键,并鉴定降低GBS毒力的新策略。

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