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Updated: Jan 16, 2026

A Macrophage Reporter Cell Assay to Examine Toll-Like Receptor-Mediated NF-kB/AP-1 Signaling on Adsorbed Protein Layers on Polymeric Surfaces
Published on: January 7, 2020
Pro-inflammatory and oxidative responses to burn pit relevant desert particulate matter in macrophages: A role for
Brian J Day1, Jie Huang1, Niccolette Schaunaman1
1Department of Medicine, National Jewish Health, Denver, 1400, Jackson St, Denver, Colorado, USA.
Abstract:
Particulate matter (PM) exposure is linked to many respiratory diseases such as asthma, yet the underlying mechanisms remain unclear. A large number of warfighters deployed to Afghanistan and Iraqi have developed deployment related respiratory disease. This study investigates the effects of burn pit-relevant desert PM from Afghanistan (APM) and comparative desert PM from China Lake, California (CPM) on oxidative stress and pro-inflammatory responses in macrophages. Using mouse monocyte cell line and primary bone marrow-derived macrophages (BMDMs) with or without Toll-like Receptor 2 (TLR2) deficiency, we assessed nitric oxide (NO.), hydrogen peroxide (H2O2), and cytokine production using biochemical assays, enzyme-linked immunosorbent assay (ELISA), pharmacological and genetic modulation, and bulk RNA sequencing. APM was more cytotoxic than CPM in monocytes. Both PMs increased H2O2 levels, with acellular conditions generating higher H2O2 levels, which was catalase-sensitive and attenuated by metal chelation. APM induced stronger NO. and cytokine C-X-C motif chemokine ligand 1 (CXCL1) responses than CPM, with NO. production attenuated by the nitric oxide synthase (NOS) inhibitor L-NG-nitroarginine methyl ester (LNAME), which also prevented cytotoxicity. TLR2 activation via agonist Pam3CSK4 enhanced NO. and CXCL1, while inhibition with antagonist C29 or TLR2 knockout partially suppressed APM-induced responses. Bulk RNA sequencing revealed that APM upregulated M1 pro-inflammatory polarization markers, many of which were significantly reduced in TLR2-deficient BMDMs. These findings demonstrate that APM exposure of monocytes/macrophages elicits stronger oxidative and pro-inflammatory responses than CPM, partially mediated through TLR2 signaling. This study provides mechanistic insight into deployment-related PM exposure and identifies potential therapeutic targets to mitigate inflammation in affected individuals.
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