Commensal consortia decolonize Enterobacteriaceae via ecological control

共生菌通过生态控制使肠杆菌科细菌去定殖

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作者:Munehiro Furuichi #, Takaaki Kawaguchi #, Marie-Madlen Pust #, Keiko Yasuma-Mitobe #, Damian R Plichta, Naomi Hasegawa, Takashi Ohya, Shakti K Bhattarai, Satoshi Sasajima, Yoshimasa Aoto, Timur Tuganbaev, Mizuki Yaginuma, Masahiro Ueda, Nobuyuki Okahashi, Kimiko Amafuji, Yuko Kiridoshi, Kayoko Sugit

Abstract

Persistent colonization and outgrowth of potentially pathogenic organisms in the intestine can result from long-term antibiotic use or inflammatory conditions, and may perpetuate dysregulated immunity and tissue damage1,2. Gram-negative Enterobacteriaceae gut pathobionts are particularly recalcitrant to conventional antibiotic treatment3,4, although an emerging body of evidence suggests that manipulation of the commensal microbiota may be a practical alternative therapeutic strategy5-7. Here we isolated and down-selected commensal bacterial consortia from stool samples from healthy humans that could strongly and specifically suppress intestinal Enterobacteriaceae. One of the elaborated consortia, comprising 18 commensal strains, effectively controlled ecological niches by regulating gluconate availability, thereby re-establishing colonization resistance and alleviating Klebsiella- and Escherichia-driven intestinal inflammation in mice. Harnessing these activities in the form of live bacterial therapies may represent a promising solution to combat the growing threat of proinflammatory, antimicrobial-resistant Enterobacteriaceae infection.

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