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A role for TNF-α in alveolar macrophage damage-associated molecular pattern release
Morgan K. Collins, Abigail M. Shotland, Morgan F. Wade, Shaikh M. Atif, Denay K. Richards, Manolo Torres-Llompart, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot, Amy S. McKee
Morgan K. Collins, Abigail M. Shotland, Morgan F. Wade, Shaikh M. Atif, Denay K. Richards, Manolo Torres-Llompart, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot, Amy S. McKee
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Research Article Immunology

A role for TNF-α in alveolar macrophage damage-associated molecular pattern release

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Abstract

Chronic beryllium disease (CBD) is a metal hypersensitivity/autoimmune disease in which damage-associated molecular patterns (DAMPs) promote a break in T cell tolerance and expansion of Be2+/self-peptide–reactive CD4+ T cells. In this study, we investigated the mechanism of cell death induced by beryllium particles in alveolar macrophages (AMs) and its impact on DAMP release. We found that phagocytosis of Be led to AM cell death independent of caspase, receptor-interacting protein kinases 1 and 3, or ROS activity. Before cell death, Be-exposed AMs secreted TNF-α that boosted intracellular stores of IL-1α followed by caspase-8–dependent fragmentation of DNA. IL-1α and nucleosomal DNA were subsequently released from AMs upon loss of plasma membrane integrity. In contrast, necrotic AMs released only unfragmented DNA and necroptotic AMs released only IL-1α. In mice exposed to Be, TNF-α promoted release of DAMPs and was required for the mobilization of immunogenic DCs, the expansion of Be-reactive CD4+ T cells, and pulmonary inflammation in a mouse model of CBD. Thus, early autocrine effects of particle-induced TNF-α on AMs led to a break in peripheral tolerance. This potentially novel mechanism may underlie the known relationship between fine particle inhalation, TNF-α, and loss of peripheral tolerance in T cell–mediated autoimmune disease and hypersensitivities.

Authors

Morgan K. Collins, Abigail M. Shotland, Morgan F. Wade, Shaikh M. Atif, Denay K. Richards, Manolo Torres-Llompart, Douglas G. Mack, Allison K. Martin, Andrew P. Fontenot, Amy S. McKee

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Figure 3

Be particles stimulate rapid secretion of TNF-α from AMs that affects their intracellular levels of IL-1α.

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Be particles stimulate rapid secretion of TNF-α from AMs that affects th...
(A) AMs from B6 mice were cultured for 18 hours ± 50 μg/mL Be (Be) or aluminum hydroxide (Al) for 18 hours. TNF-α concentrations in SNs are shown. (B) TNF-α, IL-1α, and DNA in BALF from B6 mice exposed i.t. to Be (normalized to timed PBS-exposed controls) for each time point are shown. Key indicates each parameter and the P value for comparisons between Be- or PBS-exposed mice for the indicated time point. (C and D) B6 AMs were cultured for indicated times in media (Med) ± Be. Keys indicate each parameter and the P value for comparisons between Be- or Med-exposed AMs for the indicated time point. (C) Concentrations of extracellular TNF-α, IL-1α, and DNA in SNs (normalized to timed media controls) are shown for each time point. (D) The percentage of Be-exposed AMs that were early apoptotic (EA), late apoptotic (LA), or necrotic (Nec) (normalized to timed media controls) are shown. (E) B6 mice were treated i.p. with 200 μg isotype control (Iso) or anti–TNF-α antibodies. Cohorts from each group were left untreated or exposed i.t. to 50 μg Be/mouse for 2 hours. Intracellular IL-1α was quantified as described in Figure 1H. Data are expressed as percentage change in IL-1α/AM due to Be exposure (vs. unexposed controls). Graphs contain data combined from 3 independent experiments. Symbols on dot plot graphs (A and E) are experimental mean values, and bars indicate the mean ± SEM. Symbols on time course graphs (B–D) indicate the mean of 3 experimental means ± SEM for each time point. Treatments for vitro AM assays (A–D) were performed in duplicate/experiment using separate cohorts of mice as sources of AMs. Symbols in E are combined from 3 independent experiments (n = 5 mice/group in each experiment). One-way ANOVA (A–D) or an unpaired 2-tailed t test (E) was used to test for differences between groups. P values for selected comparisons are indicated as *P < 0.05; **P < 0.01; ***P < 0.001.

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