生物
肺炎克雷伯菌
胃肠道
微生物学
免疫系统
巨噬细胞
体内
免疫学
肺炎
染色体易位
脂质体
肠上皮
体外
上皮
医学
内科学
大肠杆菌
生物技术
生物化学
基因
遗传学
作者
Hitoshi Tsugawa,Shogo Tsubaki,Rika Tanaka,Sho Nashimoto,Jin Imai,Juntaro Matsuzaki,Katsuto Hozumi
标识
DOI:10.1016/j.micinf.2024.105371
摘要
Pathobionts are commensal intestinal microbiota capable of causing systemic infections under specific conditions, such as environmental changes or aging. However, it is unclear how pathobionts are recognized by the intestinal mucosal immune system under physiological conditions. This study demonstrates that the gut pathobiont Klebsiella pneumoniae causes injury to the epithelium and translocates to the liver in specific pathogen-free mice treated with clodronate-liposomes that depleted macrophages. In the clodronate-liposome-treated mice, indigenous classical K. pneumoniae (cKp) with non-K1/K2 capsular serotypes were isolated from the liver, indicating that gut commensal cKp translocated from the gastrointestinal tract to the liver due to the depletion of intestinal macrophages. Oral inoculation of isolated cKp to clodronate-liposome-treated mice significantly reduced the survival rates compared to that of non-treated mice. Our findings demonstrate that intestinal mucosal macrophages play a pivotal role in sensing commensal cKp and suppressing their translocation to the liver. This study demonstrates that clodronate-liposome-treated mouse models are effective for screening and evaluating drugs that prevent the translocation of cKp to the liver, providing new insights into the development of preventive protocols against K. pneumoniae infection.
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