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The multiple antibacterial activities of the bladder epithelium

机译:膀胱上皮的多种抗菌活性

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摘要

The urinary tract is subject to frequent challenges from the gut microflora. Indeed, up to 40% of women will experience at least one urinary tract infection (UTI) during their lifetime. Uropathogenic Escherichia coli (UPEC) contribute to an overwhelming majority of these cases and they typically initiate UTIs by invading the superficial epithelium that lines the bladder lumen. In addition to serving as an effective barrier to noxious agents found in urine, bladder epithelial cells (BECs) play a key physiological role in regulating bladder volume to accommodate urine flow. UPEC appear to coopt this latter property to circumvent this normally impregnable epithelial barrier. However, in spite of this shortcoming, recent studies suggest that BECs possess several immune mechanisms to combat bacterial invasion including expulsion of invading bacteria back into the bladder lumen following infection. These antibacterial activities of BECs are triggered and coordinated by sensory molecules located on the epithelial cell membrane and within the cells. Although, they are the primary targets of microbial attack, BECs appear to be equipped with a diverse repertoire of defense schemes to fend off many of these microbial challenges.
机译:尿道经常受到肠道菌群的挑战。实际上,多达40%的女性在其一生中会经历至少一种尿路感染(UTI)。致病性大肠埃希氏菌(UPEC)导致了绝大多数此类病例,它们通常通过侵入衬在膀胱腔内的表皮上皮来引发UTI。膀胱上皮细胞(BEC)除了可作为尿液中有害物质的有效屏障外,在调节膀胱容量以适应尿流方面起着关键的生理作用。 UPEC似乎采用了后者的这种特性来规避这种通常不可穿透的上皮屏障。但是,尽管有这个缺点,最近的研究表明,BEC具有几种抵抗细菌入侵的免疫机制,包括在感染后将入侵细菌驱回膀胱腔。 BEC的这些抗菌活性由位于上皮细胞膜上和细胞内的感觉分子触发和协调。尽管它们是微生物攻击的主要目标,但BEC似乎配备了多种防御方案,可以抵御许多此类微生物挑战。

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