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Microbiota-gut-brain axis multi-organ chip construction and applications in drug evaluation

  • Yue Tang
  • , Hewen Chen
  • , Ziyue Zhao
  • , Xuesong Kang
  • , Wenxin Wang
  • , Kun Dai
  • , Yufei Guo
  • , Axin Liang*
  • , Aiqin Luo*
  • , Zikai Hao*
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Beihang University
  • Shandong Institute for Food and Drug Control
  • George Washington University

Research output: Contribution to journalReview articlepeer-review

Abstract

The theoretical framework of the microbiota-gut-brain axis (MGBA) elucidates the influence of gut microbiota (GM) on the central nervous system (CNS) and offers novel approaches for diagnosing and treating neurological disorders. The application of microfluidic organ chips to study this axis represents an innovative methodology, enabling multidisciplinary assessment of drug effects. Bionic microphysiological systems based on these chips establish a groundbreaking paradigm for analyzing cross-organ interaction mechanisms within the MGBA. This technology facilitates systematic evaluation of pharmacokinetics, host-microbe coevolution, and neuroendocrine regulation, thereby supporting multimodal cross-validation in pharmacodynamics, toxicology, and translational medicine. This review summarizes the conceptual foundation and mechanistic insights of the MGBA, highlights recent advances in its constituent Multiorgan components, including gut-on-a-chip, blood-brain barrier-on-a-chip, and brain-on-a-chip models, alongside multiorgan chip cascade technologies, and underscores their applications in drug evaluation. Additionally, it discusses future challenges and developmental directions for the MGBA multiorgan chip technologies in this field.

Original languageEnglish
Article numbere70065
JournaliMetaOmics
Volume2
Issue number4
DOIs
Publication statusPublished - Dec 2025

Keywords

  • drug evaluation
  • microbiota-gut-brain axis
  • microfluidics
  • organ-on-a-chip

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