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益生菌衍生的细胞外囊泡作为后生元在调节微生物群与宿主交流中的生物活性和潜力。

The biological activity and potential of probiotics-derived extracellular vesicles as postbiotics in modulating microbiota-host communication.

作者信息

Zhang Xiaoming, Wang Ye, E Qiyu, Naveed Muhammad, Wang Xiuli, Liu Yinhui, Li Ming

机构信息

College of Basic Medical Science, Dalian Medical University, Dalian, China.

出版信息

J Nanobiotechnology. 2025 May 16;23(1):349. doi: 10.1186/s12951-025-03435-6.

Abstract

Probiotics such as Lactobacillus and Bifidobacterium spp. have been shown to be critical for maintaining host homeostasis. In recent years, key compounds of postbiotics derived from probiotic metabolism and cellular secretion have been identified for their role in maintaining organ immunity and regulating intestinal inflammation. In particular, probiotic-derived extracellular vesicles (PEVs) can act as postbiotics, maintaining almost the same functional activity as probiotics. They also have strong biocompatibility and loading capacity to carry exogenous or parental active molecules to reach distal organs to play their roles. This provides a new direction for understanding the intrinsic microbiota-host communication mechanism. However, most current studies on PEVs are limited to their functional effects/benefits, and their specific physicochemical properties, composition, intrinsic mechanisms for maintaining host homeostasis, and possible threats remain to be explored. Here, we review and summarize the unique physicochemical properties of PEVs and their bioactivities and mechanisms in mediating microbiota-host communication, and elucidate the limitations of the current research on PEVs and their potential application as postbiotics.

摘要

诸如乳酸杆菌属和双歧杆菌属等益生菌已被证明对维持宿主内环境稳态至关重要。近年来,源自益生菌代谢和细胞分泌的后生元关键化合物因其在维持器官免疫和调节肠道炎症中的作用而被确定。特别是,益生菌衍生的细胞外囊泡(PEVs)可作为后生元发挥作用,保持与益生菌几乎相同的功能活性。它们还具有很强的生物相容性和负载能力,能够携带外源性或亲代活性分子到达远端器官发挥作用。这为理解内在的微生物群-宿主通讯机制提供了新方向。然而,目前大多数关于PEVs的研究仅限于其功能效应/益处,其具体的物理化学性质、组成、维持宿主内环境稳态的内在机制以及可能存在的威胁仍有待探索。在此,我们综述并总结了PEVs的独特物理化学性质及其在介导微生物群-宿主通讯中的生物活性和机制,并阐明了当前对PEVs研究的局限性及其作为后生元的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f084/12082936/5da5822a073e/12951_2025_3435_Fig1_HTML.jpg

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