Oral vaccine delivery systems: Gastrointestinal barriers, gut microbiota, and emerging engineering strategies

Oral vaccines present significant advantages, including ease of administration, high patient compliance, and the ability to elicit both mucosal and systemic immunity. However, their clinical translation faces challenges such as gastrointestinal barriers, immune tolerance, and individual variations in the gut microbiota. This review systematically summarizes the physiological and immunological barriers to oral vaccination and evaluates how the gut microbiota may influence intestinal vaccine-associated immunity. Particular attention is given to the advancement of oral vaccine delivery systems, including engineered nanocarriers, microbial vectors, and nonliving bacterial derivatives, with platform-specific consideration of antigen protection, mucus transport, epithelial uptake, intracellular delivery, and biosafety. Furthermore, the translational potential of these innovative approaches and future research directions are also discussed. This review aims to provide a comprehensive and forward-looking perspective for developing effective oral vaccination strategies.

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Publication Details

Journal
Cell Reports
Published
2026-09-28
DOI
https://doi.org/10.1016/j.celrep.2026.118038
Primary Topic
Advanced Drug Delivery Systems
Type
article
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article

Oral vaccine delivery systems: Gastrointestinal barriers, gut microbiota, and emerging engineering strategies

Yao Zhou, Yuhong Lin, Nonthaneth Nalinratana, Jiahui Huang et al.
Cell Reports
Advanced Drug Delivery Systems
article

Oral vaccine delivery systems: Gastrointestinal barriers, gut microbiota, and emerging engineering strategies

Yao Zhou, Yuhong Lin, Nonthaneth Nalinratana, Jiahui Huang, Pornchai Rojsitthisak, Wendi Pan, Xiaohua Wang, Kai Zhao
article en

Abstract

Oral vaccines present significant advantages, including ease of administration, high patient compliance, and the ability to elicit both mucosal and systemic immunity. However, their clinical translation faces challenges such as gastrointestinal barriers, immune tolerance, and individual variations in the gut microbiota. This review systematically summarizes the physiological and immunological barriers to oral vaccination and evaluates how the gut microbiota may influence intestinal vaccine-associated immunity. Particular attention is given to the advancement of oral vaccine delivery systems, including engineered nanocarriers, microbial vectors, and nonliving bacterial derivatives, with platform-specific consideration of antigen protection, mucus transport, epithelial uptake, intracellular delivery, and biosafety. Furthermore, the translational potential of these innovative approaches and future research directions are also discussed. This review aims to provide a comprehensive and forward-looking perspective for developing effective oral vaccination strategies.

Cell ReportsVol. 45(10)
Qiqihar University (CN), Chulalongkorn University (TH), Taizhou University (CN), Taizhou University (CN)
Openalex Percentile: Top 14%
Advanced Drug Delivery Systems
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Oral vaccine delivery systems: Gastrointestinal barriers, gut microbiota, and emerging engineering strategies — Yao Zhou, Yuhong Lin, et al. · Cell Reports (2026) | TGRS Research Map | TGRS