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Updated: Sep 4, 2026

Immunocompetent Alveolus-on-Chip Model for Studying Alveolar Mucosal Immune Responses
Published on: May 31, 2024
Unveiling Particulate Matter-Lung Interactions from Static Models to Dynamic Lung-on-Chips
Yixin Ren1, Xi Deng1, Mengqi Yang1
1Department of Biomedical Engineering, Research Center for Nano-biomaterials & Regenerative Medicine, Shanxi Key Laboratory of Functional Proteins, College of Artificial Intelligence, Taiyuan University of Technology, Taiyuan 030024, China.
Abstract:
The pervasive inhalable particulate matter (PM) in the environment poses a marked threat to pulmonary health. However, the underlying pathogenic mechanisms remain poorly understood, largely due to the limitations of existing in vitro models in accurately mimicking the complex biological processes. This review critically examines the spectrum of in vitro models employed in PM research, spanning from traditional 2-dimensional models to advanced 3-dimensional (3D) constructs, including 3D bioprinted models and organoids, as well as the burgeoning field of lung-on-chips (LOCs). Each model type is meticulously assessed for its unique strengths and the challenges. A particular emphasis is placed on the innovative use of LOCs technology to replicate the dynamic nature of respiratory motion. The review delves into how integrating breath-mimicking stimuli can modulate the intricate interactions between PM and cellular/tissue interfaces. Ultimately, it unveils an innovative, highly integrated, and intelligent LOCs platform, offering a forward-looking insight into its evolution.

