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◆ Journal of hazardous materials2026-08-07

Time-dependent analysis of bronchus-associated lymphoid tissue formation and pulmonary inflammation induced by various particulate matter in asthmatic mice model.

Wei Liu, Akiko Honda, Chihiro Morimoto, Takamichi Ichinose, Manabu Hayatsu, Yoshikazu Mikami, Raga Ishikawa, Kaori Sadakane, Natsuko Miyasaka, Megumi Nagao, Oluwatoyin H Owokoniran, Binyang Qiu, Tomonari Matsuda, Hirohisa Takano

原始摘要(英文原文)· Original abstract
Particulate matter (PM) aggravates respiratory diseases, including asthma, and is associated with bronchus-associated lymphoid tissue (BALT) formation. However, the time-course effects of different PM types on pulmonary inflammation and BALT development remain unknown. Herein, we investigated the time-dependent effects of 3 PM types-titanium dioxide nanoparticles (TiO₂), diesel exhaust particles, and Asian sand dust-on lung inflammation and ectopic lymphoid tissue development over time, in the presence/absence of allergen ovalbumin. All PM types supported BALT formation, with stronger development when co-administered with ovalbumin. In allergen-treated mice, an early increase in interleukin-1α was followed by type 2 immune responses and BALT expansion. Under OVA-free conditions, despite the absence of an early interleukin-1α surge, adequate C-X-C motif chemokine ligand 1 production together with neutrophil accumulation was associated with BALT formation, particularly following repeated TiO₂ exposure. 3D lung reconstruction revealed that the progression of BALT and tertiary lymphoid structures extended from large airways to distal regions in the ovalbumin-treated groups exposed to TiO₂. TiO₂ was confirmed in the alveoli, alveolar macrophages, BALT areas, and hilar lymph nodes. These observations suggest that early elevation of interleukin-1α, adequate CXCL1 production, and neutrophil infiltration were associated with PM-induced BALT formation in a time- and context-dependent manner.
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Time-dependent analysis of bronchus-associated lymphoid tissue formation and pulmonary inflammation induced by various particulate matter in asthmatic mice model. — 科研速览 Science Skim