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April 12, 2026International Journal of Environmental Medicine1 citationsOpen Access

Biological Retention and Accumulation of Inhaled Environmental Particles Disrupt Immune Homeostasis: Implications for Chronic Lung Disease

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AOAkira OnoderaKobe Gakuin University

Key Points

  • This review aims to explore the biological mechanisms through which inhaled environmental particles affect immune system function and contribute to chronic lung diseases.
  • Synthesized knowledge on particle accumulation across biological levels
  • Examined retention of particles in pulmonary and lymphoid tissues
  • Analyzed uptake by immune cells and sequestration in organelles
  • Discussed mechanisms causing mitochondrial stress and metabolic disturbances
  • Identified how incomplete clearance of particles leads to chronic health issues
  • Highlighted lysosomal dysfunction as a key factor in immune disruption
  • Found evidence linking particle accumulation to altered immune cell function and chronic lung diseases

Abstract

Environmental exposure to particulate matter, including PM2.5 and engineered nanomaterials, is a major global health concern. Although acute toxic effects have been widely documented, new evidence suggests that the retained particle burden arising from incomplete clearance, tissue retention, and redistribution plays a key role in long-term health outcomes. This review synthesizes knowledge on particle accumulation at multiple biological levels. It examines how particles are retained in pulmonary and lymphoid tissues, their uptake by immune cells, and their sequestration within organelles, particularly the endo-lysosomal system. The mechanisms by which lysosomal dysfunction can cause mitochondrial stress, redox and metabolic disturbances, and impaired autophagy are also discussed. These disruptions can alter the status of immune cells and disturb immune homeostasis. This review also examines how immune perturbation from accumulation may contribute to chronic lung diseases. Understanding these mechanisms explains the persistent health effects associated with low-dose exposure and supports more effective risk assessment and prevention.

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Cite This Study

Akira Onodera (2026) studied this question.

synapsesocial.com/papers/69db375f4fe01fead37c563dhttps://doi.org/10.3390/ijem1020007
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