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Updated: Jun 23, 2025

Identification and Characterization of Immunogenic RNA Species in HDM Allergens that Modulate Eosinophilic Lung Inflammation
Published on: May 30, 2020
Mononuclear phagocyte sub-types in vitro display diverse transcriptional responses to dust mite exposure
Leonie F H Fransen1, Martin O Leonard2
1Toxicology Department, Radiation, Chemical and Environmental Hazards Directorate, UK Health Security Agency, Harwell Science and Innovation Campus, Harwell, OX11 0RQ, UK.
Abstract:
Mononuclear phagocytes (MNP), including macrophages and dendritic cells form an essential component of primary responses to environmental hazards and toxic exposures. This is particularly important in disease conditions such as asthma and allergic airway disease, where many different cell types are present. In this study, we differentiated CD34+ haematopoietic stem cells towards different populations of MNP in an effort to understand how different cell subtypes present in inflammatory disease microenvironments respond to the common allergen house dust mite (HDM). Using single cell mRNA sequencing, we demonstrate that macrophage subtypes MCSPP1+ and MLCMARCO+ display different patterns of gene expression after HDM challenge, noted especially for the chemokines CXCL5, CXCL8, CCL5 and CCL15. MLCCD206Hi alternatively activated macrophages displayed the greatest changes in expression, while neutrophil and monocyte populations did not respond. Further work investigated how pollutant diesel exhaust particles could modify these transcriptional responses and revealed that CXC but not CC type chemokines were further upregulated. Through the use of diesel particles with adsorbed material removed, we suggest that soluble pollutants on these particles are the active constituents responsible for the modifying effects on HDM. This study highlights that environmental exposures may influence tissue responses dependent on which MNP cell type is present, and that these should be considerations when modelling such events in vitro. Understanding the nuanced responsiveness of different immune cell types to allergen and pollutant exposure also contributes to a better understanding of how these exposures influence the development and exacerbation of human disease.
Insights
Different immune cells, like macrophages, respond uniquely to allergens such as house dust mite (HDM). Pollutants like diesel exhaust particles further alter these responses, impacting disease development.
Area of Science:
- Immunology
- Environmental Health
- Cell Biology
Background:
- Mononuclear phagocytes (MNP), including macrophages and dendritic cells, are crucial in responding to environmental hazards and toxic exposures.
- These responses are vital in inflammatory conditions like asthma and allergic airway disease.
Purpose of the Study:
- To investigate how different mononuclear phagocyte (MNP) subtypes respond to the common allergen house dust mite (HDM).
- To determine the impact of diesel exhaust particles (DEP) on MNP responses to HDM.
Main Methods:
- Differentiating CD34+ hematopoietic stem cells into various MNP populations.
- Utilizing single-cell mRNA sequencing to analyze gene expression patterns.
- Exposing MNP to HDM and DEP, with and without adsorbed materials.
Main Results:
- Macrophage subtypes MCSPP1+ and MLCMARCO+ showed distinct gene expression changes after HDM exposure, particularly in chemokine expression (CXCL5, CXCL8, CCL5, CCL15).
- MLCCD206Hi alternatively activated macrophages exhibited the most significant transcriptional changes; neutrophils and monocytes did not respond.
- Diesel exhaust particles (DEP) further upregulated CXC chemokines, with soluble pollutants identified as the active agents.
Conclusions:
- Environmental exposures differentially affect tissue responses based on the specific MNP cell type involved.
- The findings emphasize the importance of considering MNP heterogeneity in in vitro models of environmental exposure.
- Understanding these nuanced immune cell responses is key to comprehending the development and exacerbation of human diseases like asthma.

