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◆ Annual Review of Food Science and Technology2026-02-02· Probiotic

Functional Diversity of Probiotic Effector Molecules: Insights into Their Role in Improving Gut Health

Xi Bai, Yizhi Jing, Mengya Zhang, Liang Zhao, Yifan Hao, Zhengyuan Zhai

原始摘要(英文原文)· Original abstract
Probiotics exert many effects through probiotic effector molecules (PEMs), which are secreted or surface-associated bioactive compounds. Key classes of PEMs include bacterial glycan polymers (e.g., exopolysaccharides), surface proteins and pili, secreted peptides and enzymes, extracellular vesicles, and small-molecule metabolites. These bioactive compounds mediate host-microbe crosstalk, reinforcing epithelial barrier integrity, shaping gut microbial communities, and modulating immune responses. Their production is strain-specific and influenced by environmental conditions, whereas their activities depend on receptor interactions such as with Toll-like receptors, G protein-coupled receptors, and aryl hydrocarbon receptors. Major challenges include high-throughput identification of novel PEMs, in situ verification of their gut production, and determination of effective doses. Emerging approaches, including comparative genomics, synthetic biology, and next-generation probiotics, promise to unlock PEMs' therapeutic potential. A mechanistic understanding of PEM diversity and function will facilitate the design of targeted probiotic therapies and innovative functional foods.
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