The Cervicovaginal Mucus Barrier.

IF 4.9 2区 生物学 International Journal of Molecular Sciences Pub Date : 2020-11-04 DOI:10.3390/ijms21218266
Guillaume Lacroix, Valérie Gouyer, Frédéric Gottrand, Jean-Luc Desseyn
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引用次数: 49

Abstract

Preterm births are a global health priority that affects 15 million babies every year worldwide. There are no effective prognostic and therapeutic strategies relating to preterm delivery, but uterine infections appear to be a major cause. The vaginal epithelium is covered by the cervicovaginal mucus, which is essential to health because of its direct involvement in reproduction and functions as a selective barrier by sheltering the beneficial lactobacilli while helping to clear pathogens. During pregnancy, the cervical canal is sealed with a cervical mucus plug that prevents the vaginal flora from ascending toward the uterine compartment, which protects the fetus from pathogens. Abnormalities of the cervical mucus plug and bacterial vaginosis are associated with a higher risk of preterm delivery. This review addresses the current understanding of the cervicovaginal mucus and the cervical mucus plug and their interactions with the microbial communities in both the physiological state and bacterial vaginosis, with a focus on gel-forming mucins. We also review the current state of knowledge of gel-forming mucins contained in mouse cervicovaginal mucus and the mouse models used to study bacterial vaginosis.

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宫颈阴道粘液屏障。
早产是全球卫生重点问题,每年影响全世界1500万婴儿。没有有效的预后和治疗策略,有关早产,但子宫感染似乎是一个主要原因。阴道上皮被宫颈阴道粘液覆盖,这对健康至关重要,因为它直接参与生殖,并作为一个选择性屏障,通过庇护有益的乳酸菌,同时帮助清除病原体。在怀孕期间,宫颈管被宫颈粘液塞密封,以防止阴道菌群上升到子宫腔室,从而保护胎儿免受病原体的侵害。宫颈粘液塞异常和细菌性阴道病与早产风险较高有关。本文综述了目前对宫颈阴道粘液和宫颈粘液塞的认识,以及它们在生理状态和细菌性阴道病中与微生物群落的相互作用,重点是凝胶形成的粘蛋白。我们还回顾了目前对小鼠宫颈阴道粘液中含有的凝胶形成粘蛋白的了解状况以及用于研究细菌性阴道病的小鼠模型。
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10.70%
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13472
审稿时长
1.7 months
期刊介绍: The International Journal of Molecular Sciences (ISSN 1422-0067) provides an advanced forum for chemistry, molecular physics (chemical physics and physical chemistry) and molecular biology. It publishes research articles, reviews, communications and short notes. Our aim is to encourage scientists to publish their theoretical and experimental results in as much detail as possible. Therefore, there is no restriction on the length of the papers or the number of electronics supplementary files. For articles with computational results, the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material (including animated pictures, videos, interactive Excel sheets, software executables and others).
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