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1.
Sci Immunol ; 9(98): eado1227, 2024 Aug 02.
Artículo en Inglés | MEDLINE | ID: mdl-39093958

RESUMEN

The lung is constantly exposed to airborne pathogens and particles that can cause alveolar damage. Hence, appropriate repair responses are essential for gas exchange and life. Here, we deciphered the spatiotemporal trajectory and function of an atypical population of macrophages after lung injury. Post-influenza A virus (IAV) infection, short-lived monocyte-derived Ly6G-expressing macrophages (Ly6G+ Macs) were recruited to the alveoli of lung perilesional areas. Ly6G+ Macs engulfed immune cells, exhibited a high metabolic potential, and clustered with alveolar type 2 epithelial cells (AT2s) in zones of active epithelial regeneration. Ly6G+ Macs were partially dependent on granulocyte-macrophage colony-stimulating factor and interleukin-4 receptor signaling and were essential for AT2-dependent alveolar regeneration. Similar macrophages were recruited in other models of injury and in the airspaces of lungs from patients with suspected pneumonia. This study identifies perilesional alveolar Ly6G+ Macs as a spatially restricted, short-lived macrophage subset promoting epithelial regeneration postinjury, thus representing an attractive therapeutic target for treating lung damage.


Asunto(s)
Antígenos Ly , Lesión Pulmonar , Macrófagos Alveolares , Ratones Endogámicos C57BL , Regeneración , Animales , Antígenos Ly/metabolismo , Antígenos Ly/inmunología , Ratones , Regeneración/inmunología , Lesión Pulmonar/inmunología , Macrófagos Alveolares/inmunología , Masculino , Humanos , Femenino , Infecciones por Orthomyxoviridae/inmunología , Alveolos Pulmonares/inmunología , Virus de la Influenza A/inmunología , Virus de la Influenza A/fisiología
2.
Sci Immunol ; 9(98): eadq7306, 2024 Aug 02.
Artículo en Inglés | MEDLINE | ID: mdl-39093959

RESUMEN

Short-lived repair-promoting macrophages are recruited to foci of lung damage during influenza infection-and they are Ly6G positive (see related Research Article by Ruscitti et al.).


Asunto(s)
Antígenos Ly , Macrófagos Alveolares , Animales , Antígenos Ly/metabolismo , Antígenos Ly/inmunología , Ratones , Macrófagos Alveolares/inmunología , Pulmón/inmunología , Pulmón/citología , Biomarcadores , Macrófagos/inmunología , Infecciones por Orthomyxoviridae/inmunología , Humanos
3.
Int J Mol Sci ; 25(13)2024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-39000201

RESUMEN

Pulmonary alveolar proteinosis (PAP) is an ultra-rare disease caused by impaired pulmonary surfactant clearance due to the dysfunction of alveolar macrophages or their signaling pathways. PAP is categorized into autoimmune, congenital, and secondary PAP, with autoimmune PAP being the most prevalent. This article aims to present a comprehensive review of PAP classification, pathogenesis, clinical presentation, diagnostics, and treatment. The literature search was conducted using the PubMed database and a total of 67 articles were selected. The PAP diagnosis is usually based on clinical symptoms, radiological imaging, and bronchoalveolar lavage, with additional GM-CSF antibody tests. The gold standard for PAP treatment is whole-lung lavage. This review presents a summary of the most recent findings concerning pulmonary alveolar proteinosis, pointing out specific features that require further investigation.


Asunto(s)
Proteinosis Alveolar Pulmonar , Proteinosis Alveolar Pulmonar/terapia , Proteinosis Alveolar Pulmonar/diagnóstico , Proteinosis Alveolar Pulmonar/patología , Humanos , Lavado Broncoalveolar , Factor Estimulante de Colonias de Granulocitos y Macrófagos/metabolismo , Surfactantes Pulmonares/metabolismo , Surfactantes Pulmonares/uso terapéutico , Macrófagos Alveolares/metabolismo
4.
Int J Mol Sci ; 25(13)2024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-39000242

RESUMEN

Acute lung injury (ALI) is a condition associated with acute respiratory failure, resulting in significant morbidity and mortality. It involves cellular changes such as disruption of the alveolar-capillary membrane, excessive neutrophil migration, and release of inflammatory mediators. Broncho-Vaxom® (BV), a lyophilized product containing cell membrane components derived from eight bacteria commonly found in the respiratory tract, is known for its potential to reduce viral and bacterial lung infections. However, the specific effect of BV on ALI has not been clearly defined. This study explored the preventive effects of BV and its underlying mechanisms in a lipopolysaccharide (LPS)-induced ALI mouse model. Oral BV (1 mg/kg) gavage was administered one hour before the intratracheal injection of LPS to evaluate its preventive effect on the ALI model. The pre-administration of BV significantly mitigates inflammatory parameters, including the production of inflammatory mediators, macrophage infiltration, and NF-κB activation in lung tissue, and the increase in inflammatory cells in bronchoalveolar lavage fluid (BALF). Moreover, BV (3 µg/mL) pretreatment reduced the expression of M1 macrophage markers, interleukins (IL-1ß, IL-6), tumor necrosis factor α, and cyclooxygenase-2, which are activated by LPS, in both mouse alveolar macrophage MH-S cells and human macrophage THP-1 cells. These findings showed that BV exhibits anti-inflammatory effects by suppressing inflammatory mediators through the NF-κB pathway, suggesting its potential to attenuate bronchial and pulmonary inflammation.


Asunto(s)
Lesión Pulmonar Aguda , Modelos Animales de Enfermedad , Lipopolisacáridos , Animales , Lesión Pulmonar Aguda/inducido químicamente , Lesión Pulmonar Aguda/patología , Lesión Pulmonar Aguda/metabolismo , Lesión Pulmonar Aguda/etiología , Lesión Pulmonar Aguda/tratamiento farmacológico , Ratones , Humanos , Inflamación/patología , Inflamación/metabolismo , Inflamación/tratamiento farmacológico , Masculino , Extractos Celulares/farmacología , Extractos Celulares/uso terapéutico , FN-kappa B/metabolismo , Líquido del Lavado Bronquioalveolar , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/efectos de los fármacos , Citocinas/metabolismo , Mediadores de Inflamación/metabolismo , Pulmón/patología , Pulmón/metabolismo , Pulmón/efectos de los fármacos , Lisados Bacterianos
5.
Int J Mol Sci ; 25(13)2024 Jun 29.
Artículo en Inglés | MEDLINE | ID: mdl-39000284

RESUMEN

African swine fever (ASF), caused by the African swine fever virus (ASFV), is one of the most important infectious diseases that cause high morbidity and mortality in pigs and substantial economic losses to the pork industry of affected countries due to the lack of effective vaccines. The need to develop alternative robust antiviral countermeasures, especially anti-ASFV agents, is of the utmost urgency. This study shows that fangchinoline (FAN), a bisbenzylisoquinoline alkaloid found in the roots of Stephania tetrandra of the family Menispermaceae, significantly inhibits ASFV replication in porcine alveolar macrophages (PAMs) at micromolar concentrations (IC50 = 1.66 µM). Mechanistically, the infection of ASFV triggers the AKT/mTOR/NF-κB signaling pathway. FAN significantly inhibits ASFV-induced activation of such pathways, thereby suppressing viral replication. Such a mechanism was confirmed using an AKT inhibitor MK2206 as it inhibited AKT phosphorylation and ASFV replication in PAMs. Altogether, the results suggest that the AKT/mTOR pathway could potentially serve as a treatment strategy for combating ASFV infection and that FAN could potentially emerge as an effective novel antiviral agent against ASFV infections and deserves further in vivo antiviral evaluations.


Asunto(s)
Virus de la Fiebre Porcina Africana , Antivirales , Bencilisoquinolinas , Macrófagos Alveolares , FN-kappa B , Proteínas Proto-Oncogénicas c-akt , Transducción de Señal , Serina-Treonina Quinasas TOR , Replicación Viral , Animales , Macrófagos Alveolares/virología , Macrófagos Alveolares/efectos de los fármacos , Macrófagos Alveolares/metabolismo , Replicación Viral/efectos de los fármacos , Virus de la Fiebre Porcina Africana/efectos de los fármacos , Virus de la Fiebre Porcina Africana/fisiología , Porcinos , Proteínas Proto-Oncogénicas c-akt/metabolismo , Serina-Treonina Quinasas TOR/metabolismo , Transducción de Señal/efectos de los fármacos , FN-kappa B/metabolismo , Bencilisoquinolinas/farmacología , Antivirales/farmacología , Fiebre Porcina Africana/virología , Fiebre Porcina Africana/tratamiento farmacológico , Fiebre Porcina Africana/metabolismo
6.
Nat Commun ; 15(1): 5710, 2024 Jul 08.
Artículo en Inglés | MEDLINE | ID: mdl-38977711

RESUMEN

Following Mycobacterium tuberculosis infection, alveolar macrophages are initially infected but ineffectively restrict bacterial replication. The distribution of M. tuberculosis among different cell types in the lung changes with the onset of T cell immunity when the dominant infected cellular niche shifts from alveolar to monocyte-derived macrophages (MDM). We hypothesize that changes in bacterial distribution among different cell types is driven by differences in T cell recognition of infected cells and their subsequent activation of antimicrobial effector mechanisms. We show that CD4 and CD8 T cells efficiently eliminate M. tuberculosis infection in alveolar macrophages, but they have less impact on suppressing infection in MDM, which may be a bacterial niche. Importantly, CD4 T cell responses enhance MDM recruitment to the lung. Thus, the outcome of infection depends on the interaction between the T cell subset and the infected cell; both contribute to the resolution and persistence of the infection.


Asunto(s)
Linfocitos T CD4-Positivos , Linfocitos T CD8-positivos , Pulmón , Macrófagos Alveolares , Ratones Endogámicos C57BL , Mycobacterium tuberculosis , Mycobacterium tuberculosis/inmunología , Mycobacterium tuberculosis/fisiología , Animales , Pulmón/microbiología , Pulmón/inmunología , Pulmón/patología , Macrófagos Alveolares/inmunología , Macrófagos Alveolares/microbiología , Linfocitos T CD8-positivos/inmunología , Linfocitos T CD4-Positivos/inmunología , Ratones , Femenino , Tuberculosis Pulmonar/inmunología , Tuberculosis Pulmonar/microbiología , Tuberculosis Pulmonar/patología , Macrófagos/inmunología , Macrófagos/microbiología , Humanos
7.
Sci Adv ; 10(28): eadl4913, 2024 Jul 12.
Artículo en Inglés | MEDLINE | ID: mdl-38985878

RESUMEN

The pathophysiology of silicosis is poorly understood, limiting development of therapies for those who have been exposed to the respirable particle. We explored mechanisms of silica-induced pulmonary fibrosis in human lung samples collected from patients with occupational exposure to silica and in a longitudinal mouse model of silicosis using multiple modalities including whole-lung single-cell RNA sequencing and histological, biochemical, and physiologic assessments. In addition to pulmonary inflammation and fibrosis, intratracheal silica challenge induced osteoclast-like differentiation of alveolar macrophages and recruited monocytes, driven by induction of the osteoclastogenic cytokine, receptor activator of nuclear factor κΒ ligand (RANKL) in pulmonary lymphocytes, and alveolar type II cells. Anti-RANKL monoclonal antibody treatment suppressed silica-induced osteoclast-like differentiation in the lung and attenuated pulmonary fibrosis. We conclude that silica induces differentiation of pulmonary osteoclast-like cells leading to progressive lung injury, likely due to sustained elaboration of bone-resorbing proteases and hydrochloric acid. Interrupting osteoclast-like differentiation may therefore constitute a promising avenue for moderating lung damage in silicosis.


Asunto(s)
Diferenciación Celular , Osteoclastos , Fibrosis Pulmonar , Dióxido de Silicio , Silicosis , Dióxido de Silicio/toxicidad , Animales , Humanos , Osteoclastos/metabolismo , Osteoclastos/efectos de los fármacos , Osteoclastos/patología , Fibrosis Pulmonar/inducido químicamente , Fibrosis Pulmonar/patología , Fibrosis Pulmonar/metabolismo , Ratones , Silicosis/patología , Silicosis/metabolismo , Silicosis/etiología , Diferenciación Celular/efectos de los fármacos , Ligando RANK/metabolismo , Modelos Animales de Enfermedad , Masculino , Pulmón/patología , Pulmón/metabolismo , Pulmón/efectos de los fármacos , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/patología , Macrófagos Alveolares/efectos de los fármacos , Femenino
8.
Cell Rep ; 43(7): 114453, 2024 Jul 23.
Artículo en Inglés | MEDLINE | ID: mdl-38985677

RESUMEN

Methicillin-resistant Staphylococcus aureus (MRSA) infection, a major cause of hospital- and community-acquired pneumonia, still has a high mortality rate. Extracellular vesicles (EVs), as crucial mediators of intercellular communication, have a significant impact on infectious diseases. However, the role of EVs from alveolar macrophages (AMs) in MRSA pneumonia remains unclear. We report that AMs phagocytose MRSA and release more EVs in mice with MRSA pneumonia. EVs from AMs harboring phagocytosed MRSA exhibit significant proinflammatory effects and induce necroptosis by delivering tumor necrosis factor α (TNF-α) and miR-146a-5p. Mechanically, the upregulated miR-146a-5p in these EVs enhances the phosphorylation of RIPK1, RIPK3, and MLKL by targeting TNF receptor-associated factor 6 (TRAF6), thereby promoting TNF-α-induced necroptosis. The combination of a TNF-α antagonist and an miR-146a-5p antagomir effectively improves the outcomes of mice with MRSA pneumonia. Overall, we reveal the pronecrotic effect of EVs from MRSA-infected AMs and provide a promising target for the prevention and treatment of MRSA pneumonia.


Asunto(s)
Vesículas Extracelulares , Macrófagos Alveolares , Staphylococcus aureus Resistente a Meticilina , MicroARNs , Necroptosis , Animales , Vesículas Extracelulares/metabolismo , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/microbiología , Ratones , MicroARNs/metabolismo , MicroARNs/genética , Fagocitosis , Ratones Endogámicos C57BL , Factor de Necrosis Tumoral alfa/metabolismo , Infecciones Estafilocócicas/microbiología , Infecciones Estafilocócicas/inmunología , Infecciones Estafilocócicas/patología , Infecciones Estafilocócicas/metabolismo , Masculino , Humanos
9.
Nat Commun ; 15(1): 5730, 2024 Jul 08.
Artículo en Inglés | MEDLINE | ID: mdl-38977695

RESUMEN

The circular RNA (circRNA) family is a group of endogenous non-coding RNAs (ncRNAs) that have critical functions in multiple physiological and pathological processes, including inflammation, cancer, and cardiovascular diseases. However, their roles in regulating innate immune responses remain unclear. Here, we define Cell division cycle 42 (CDC42)-165aa, a protein encoded by circRNA circCDC42, which is overexpressed in Klebsiella pneumoniae (KP)-infected alveolar macrophages. High levels of CDC42-165aa induces the hyperactivation of Pyrin inflammasomes and aggravates alveolar macrophage pyroptosis, while the inhibition of CDC42-165aa reduces lung injury in mice after KP infection by inhibiting Pyrin inflammasome-mediated pyroptosis. Overall, these results demonstrate that CDC42-165aa stimulates Pyrin inflammasome by inhibiting CDC42 GTPase activation and provides a potential clinical target for pathogenic bacterial infection in clinical practice.


Asunto(s)
Inflamasomas , Infecciones por Klebsiella , Klebsiella pneumoniae , Ratones Endogámicos C57BL , Piroptosis , Proteína de Unión al GTP cdc42 , Animales , Piroptosis/genética , Infecciones por Klebsiella/inmunología , Infecciones por Klebsiella/microbiología , Infecciones por Klebsiella/metabolismo , Ratones , Inflamasomas/metabolismo , Proteína de Unión al GTP cdc42/metabolismo , Proteína de Unión al GTP cdc42/genética , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/inmunología , Macrófagos Alveolares/microbiología , Masculino , Proteína con Dominio Pirina 3 de la Familia NLR/metabolismo , Proteína con Dominio Pirina 3 de la Familia NLR/genética , Humanos , Inmunidad Innata , Macrófagos/metabolismo , Macrófagos/inmunología , Macrófagos/microbiología , Proteínas Adaptadoras de Señalización CARD
10.
J Transl Med ; 22(1): 698, 2024 Jul 29.
Artículo en Inglés | MEDLINE | ID: mdl-39075394

RESUMEN

BACKGROUND: Severe COVID-19 infection has been associated with the development of pulmonary fibrosis, a condition that significantly affects patient prognosis. Understanding the underlying cellular communication mechanisms contributing to this fibrotic process is crucial. OBJECTIVE: In this study, we aimed to investigate the role of the TNFSF12-TNFRSF12A pathway in mediating communication between alveolar macrophages and fibroblasts, and its implications for the development of pulmonary fibrosis in severe COVID-19 patients. METHODS: We conducted single-cell RNA sequencing (scRNA-seq) analysis using lung tissue samples from severe COVID-19 patients and healthy controls. The data was processed, analyzed, and cell types were annotated. We focused on the communication between alveolar macrophages and fibroblasts and identified key signaling pathways. In vitro experiments were performed to validate our findings, including the impact of TNFRSF12A silencing on fibrosis reversal. RESULTS: Our analysis revealed that in severe COVID-19 patients, alveolar macrophages communicate with fibroblasts primarily through the TNFSF12-TNFRSF12A pathway. This communication pathway promotes fibroblast proliferation and expression of fibrotic factors. Importantly, silencing TNFRSF12A effectively reversed the pro-proliferative and pro-fibrotic effects of alveolar macrophages. CONCLUSION: The TNFSF12-TNFRSF12A pathway plays a central role in alveolar macrophage-fibroblast communication and contributes to pulmonary fibrosis in severe COVID-19 patients. Silencing TNFRSF12A represents a potential therapeutic strategy for mitigating fibrosis in severe COVID-19 lung disease.


Asunto(s)
COVID-19 , Fibroblastos , Macrófagos Alveolares , Fibrosis Pulmonar , Transducción de Señal , Receptor de TWEAK , Humanos , COVID-19/complicaciones , COVID-19/patología , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/patología , Fibroblastos/metabolismo , Fibroblastos/patología , Fibrosis Pulmonar/patología , Fibrosis Pulmonar/genética , Fibrosis Pulmonar/complicaciones , Receptor de TWEAK/metabolismo , Receptor de TWEAK/genética , Citocina TWEAK/metabolismo , Comunicación Celular , Masculino , SARS-CoV-2 , Femenino , Persona de Mediana Edad , Proliferación Celular , Pulmón/patología , Índice de Severidad de la Enfermedad
11.
PLoS Pathog ; 20(7): e1012398, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-39038050

RESUMEN

Inflammasomes play pivotal roles in inflammation by processing and promoting the secretion of IL-1ß. Caspase-1 is involved in the maturation of IL-1ß and IL-18, while human caspase-4 specifically processes IL-18. Recent structural studies of caspase-4 bound to Pro-IL-18 reveal the molecular basis of Pro-IL-18 activation by caspase-4. However, the mechanism of caspase-1 processing of pro-IL-1ß and other IL-1ß-converting enzymes remains elusive. Here, we observed that swine Pro-IL-1ß (sPro-IL-1ß) exists as an oligomeric precursor unlike monomeric human Pro-IL-1ß (hPro-IL-1ß). Interestingly, Seneca Valley Virus (SVV) 3C protease cleaves sPro-IL-1ß to produce mature IL-1ß, while it cleaves hPro-IL-1ß but does not produce mature IL-1ß in a specific manner. When the inflammasome is blocked, SVV 3C continues to activate IL-1ß through direct cleavage in porcine alveolar macrophages (PAMs). Through molecular modeling and mutagenesis studies, we discovered that the pro-domain of sPro-IL-1ß serves as an 'exosite' with its hydrophobic residues docking into a positively charged 3C protease pocket, thereby directing the substrate to the active site. The cleavage of sPro-IL-1ß generates a monomeric and active form of IL-1ß, initiating the downstream signaling. Thus, these studies provide IL-1ß is an inflammatory sensor that directly detects viral protease through an independent pathway operating in parallel with host inflammasomes.


Asunto(s)
Proteasas Virales 3C , Inflamasomas , Interleucina-1beta , Picornaviridae , Proteínas Virales , Animales , Interleucina-1beta/metabolismo , Proteasas Virales 3C/metabolismo , Porcinos , Humanos , Proteínas Virales/metabolismo , Inflamasomas/metabolismo , Inflamación/metabolismo , Infecciones por Picornaviridae/metabolismo , Infecciones por Picornaviridae/virología , Cisteína Endopeptidasas/metabolismo , Especificidad de la Especie , Macrófagos Alveolares/virología , Macrófagos Alveolares/metabolismo
12.
Cells ; 13(11)2024 May 22.
Artículo en Inglés | MEDLINE | ID: mdl-38891022

RESUMEN

Pulmonary surfactants play a crucial role in managing lung lipid metabolism, and dysregulation of this process is evident in various lung diseases. Alternations in lipid metabolism lead to pulmonary surfactant damage, resulting in hyperlipidemia in response to lung injury. Lung macrophages are responsible for recycling damaged lipid droplets to maintain lipid homeostasis. The inflammatory response triggered by external stimuli such as cigarette smoke, bleomycin, and bacteria can interfere with this process, resulting in the formation of lipid-laden macrophages (LLMs), also known as foamy macrophages. Recent studies have highlighted the potential significance of LLM formation in a range of pulmonary diseases. Furthermore, growing evidence suggests that LLMs are present in patients suffering from various pulmonary conditions. In this review, we summarize the essential metabolic and signaling pathways driving the LLM formation in chronic obstructive pulmonary disease, pulmonary fibrosis, tuberculosis, and acute lung injury.


Asunto(s)
Metabolismo de los Lípidos , Enfermedades Pulmonares , Humanos , Enfermedades Pulmonares/metabolismo , Enfermedades Pulmonares/patología , Animales , Macrófagos/metabolismo , Macrófagos Alveolares/metabolismo , Transducción de Señal
13.
Front Immunol ; 15: 1408212, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38887303

RESUMEN

Introduction: Varicella zoster virus (VZV) causes varicella and can reactivate as herpes zoster, and both diseases present a significant burden worldwide. However, the mechanisms by which VZV establishes latency in the sensory ganglia and disseminates to these sites remain unclear. Methods: We combined a single-cell sequencing approach and a well-established rhesus macaque experimental model using Simian varicella virus (SVV), which recapitulates the VZV infection in humans, to define the acute immune response to SVV in the lung as well as compare the transcriptome of infected and bystander lung-resident T cells and macrophages. Results and discussion: Our analysis showed a decrease in the frequency of alveolar macrophages concomitant with an increase in that of infiltrating macrophages expressing antiviral genes as well as proliferating T cells, effector CD8 T cells, and T cells expressing granzyme A (GZMA) shortly after infection. Moreover, infected T cells harbored higher numbers of viral transcripts compared to infected macrophages. Furthermore, genes associated with cellular metabolism (glycolysis and oxidative phosphorylation) showed differential expression in infected cells, suggesting adaptations to support viral replication. Overall, these data suggest that SVV infection remodels the transcriptome of bystander and infected lung-resident T cells and macrophages.


Asunto(s)
Pulmón , Macaca mulatta , Animales , Pulmón/inmunología , Pulmón/virología , Macrófagos Alveolares/inmunología , Macrófagos Alveolares/virología , Transcriptoma , Linfocitos T/inmunología , Varicellovirus/fisiología , Varicellovirus/inmunología , Macrófagos/inmunología , Macrófagos/virología , Infecciones por Herpesviridae/inmunología , Infecciones por Herpesviridae/virología , Herpesvirus Humano 3/inmunología , Herpesvirus Humano 3/fisiología , Modelos Animales de Enfermedad , Análisis de la Célula Individual
14.
Int J Mol Sci ; 25(11)2024 May 22.
Artículo en Inglés | MEDLINE | ID: mdl-38891820

RESUMEN

Chronic obstructive pulmonary disease (COPD), the major leading cause of mortality worldwide, is a progressive and irreversible respiratory condition characterized by peripheral airway and lung parenchymal inflammation, accompanied by fibrosis, emphysema, and airflow limitation, and has multiple etiologies, including genetic variance, air pollution, and repetitive exposure to harmful substances. However, the precise mechanisms underlying the pathogenesis of COPD have not been identified. Recent multiomics-based evidence suggests that the plasticity of alveolar macrophages contributes to the onset and progression of COPD through the coordinated modulation of numerous transcription factors. Therefore, this review focuses on understanding the mechanisms and functions of macrophage polarization that regulate lung homeostasis in COPD. These findings may provide a better insight into the distinct role of macrophages in COPD pathogenesis and perspective for developing novel therapeutic strategies targeting macrophage polarization.


Asunto(s)
Macrófagos Alveolares , Enfermedad Pulmonar Obstructiva Crónica , Enfermedad Pulmonar Obstructiva Crónica/etiología , Enfermedad Pulmonar Obstructiva Crónica/patología , Enfermedad Pulmonar Obstructiva Crónica/metabolismo , Enfermedad Pulmonar Obstructiva Crónica/genética , Humanos , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/patología , Macrófagos Alveolares/inmunología , Animales , Activación de Macrófagos , Macrófagos/metabolismo , Macrófagos/inmunología , Pulmón/patología , Pulmón/metabolismo , Pulmón/inmunología
15.
mBio ; 15(7): e0113024, 2024 Jul 17.
Artículo en Inglés | MEDLINE | ID: mdl-38934617

RESUMEN

Type III interferon signaling contributes to the pathogenesis of the important human pathogen Staphylococcus aureus in the airway. Little is known of the cellular factors important in this response. Using Ifnl2-green fluorescent protein reporter mice combined with flow cytometry and cellular depletion strategies, we demonstrate that the alveolar macrophage is the primary producer of interferon lambda (IFN-λ) in response to S. aureus in the airway. Bone marrow chimeras showed reduced bacterial burden in IFN-λ receptor (IFNLR1)-deficient recipient mice, indicative that non-hematopoietic cells were important for pathogenesis, in addition to significant reductions in pulmonary inflammation. These observations were confirmed through the use of an airway epithelial-specific IFNLR knockout mouse. Our data suggest that upon entry to the airway, S. aureus activates alveolar macrophages to produce type III IFN that is subsequently sensed by the airway epithelium. Future steps will determine how signaling from the epithelium then exerts its influence on bacterial clearance. These results highlight the important, yet sometimes detrimental, role of type III IFN signaling during infection and the impact the airway epithelium plays during host-pathogen interactions.IMPORTANCEThe contribution of type III interferon signaling to the control of bacterial infections is largely unknown. We have previously demonstrated that it contributes to the pathogenesis of acute Staphylococcus aureus respiratory infection. In this report, we document the importance of two cell types that underpin this pathogenesis. We demonstrate that the alveolar macrophage is the cell that is responsible for the production of type III interferon and that this molecule is sensed by airway epithelial cells, which impacts both bacterial clearance and induction of inflammation. This work sheds light on the first two aspects of this important pathogenic cascade.


Asunto(s)
Interferones , Macrófagos Alveolares , Ratones Noqueados , Infecciones Estafilocócicas , Staphylococcus aureus , Animales , Staphylococcus aureus/patogenicidad , Staphylococcus aureus/genética , Ratones , Macrófagos Alveolares/microbiología , Macrófagos Alveolares/inmunología , Infecciones Estafilocócicas/microbiología , Interferones/metabolismo , Interferones/genética , Interferones/inmunología , Ratones Endogámicos C57BL , Interacciones Huésped-Patógeno , Transducción de Señal , Mucosa Respiratoria/microbiología , Interferón lambda , Receptores de Interferón/genética , Receptores de Interferón/metabolismo , Virulencia
16.
Food Chem Toxicol ; 190: 114762, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38871110

RESUMEN

In recent years, carbonized silicon nanoparticles (SiC NPs) have found widespread scientific and engineering applications, raising concerns about potential human health risks. SiC NPs may induce pulmonary damage through sustained inflammatory responses and oxidative stress, with unclear toxicity mechanisms. This study uses an in vitro co-culture model of alveolar macrophages (NR8383) and alveolar epithelial cells (RLE-6TN) to simulate the interaction between airway epithelial cells and immune cells, providing initial insights into SiC NP-triggered inflammatory responses. The research reveals that increasing SiC NP exposure prompts NR8383 cells to release high mobility group box 1 protein (HMGB1), which migrates into RLE-6TN cells and activates the receptor for advanced glycation end-products (RAGE) and Toll-like receptor 4 (TLR4). RAGE and TLR4 synergistically activate the MyD88/NF-κB inflammatory pathway, ultimately inducing inflammatory responses and oxidative stress in RLE-6TN cells, characterized by excessive ROS generation and altered cytokine levels. Pretreatment with RAGE and TLR4 inhibitors attenuates SiC-induced HMGB1 expression and downstream pathway proteins, reducing inflammatory responses and oxidative damage. This highlights the pivotal role of RAGE-TLR4 crosstalk in SiC NP-induced pulmonary inflammation, providing insights into SiC NP cytotoxicity and nanomaterial safety guidelines.


Asunto(s)
Células Epiteliales , Proteína HMGB1 , Pulmón , Macrófagos Alveolares , Nanopartículas , Compuestos de Silicona , Animales , Humanos , Ratas , Compuestos Inorgánicos de Carbono/toxicidad , Línea Celular , Técnicas de Cocultivo , Células Epiteliales/efectos de los fármacos , Células Epiteliales/metabolismo , Proteína HMGB1/metabolismo , Inflamación/inducido químicamente , Inflamación/metabolismo , Pulmón/efectos de los fármacos , Pulmón/metabolismo , Macrófagos Alveolares/efectos de los fármacos , Macrófagos Alveolares/metabolismo , Nanopartículas/toxicidad , Estrés Oxidativo/efectos de los fármacos , Especies Reactivas de Oxígeno/metabolismo , Receptor para Productos Finales de Glicación Avanzada/metabolismo , Compuestos de Silicona/toxicidad , Receptor Toll-Like 4/metabolismo
17.
Ecotoxicol Environ Saf ; 281: 116637, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38941663

RESUMEN

Airborne particulate matter (PM) is a global environmental risk factor threatening human health and is a major cause of cardiovascular and respiratory disease-associated death. Current studies on PM exposure have been limited to large-scale cohort and epidemiological investigations, emphasizing the need for detailed individual-level studies to uncover specific differentially expressed genes and their associated signaling mechanisms. Herein, we revealed that PM exposure significantly upregulated inflammatory and immune responses, such as cytokine-mediated signaling pathways, complement system, and the activation and migration of immune cells in gene set enrichment analysis of our RNA sequencing (RNAseq) data. Remarkably, we discovered that the broad gene expression and signaling pathways mediated by macrophages were predominantly expressed in the respiratory system following PM exposure. Consistent with these observations, individual PMs, classified by aerodynamic size and origin, significantly promoted macrophage recruitment to the lungs in the mouse lung inflammation model. Additionally, we confirmed that RNAseq observations from the respiratory system were reproduced in murine bone marrow-derived macrophages and the alveolar macrophage cell line MH-S after individual PM exposure. Our findings demonstrated that PM exposure augmented broad inflammatory and immune responses in the respiratory system and suggested the reinforcement of global strategies for reducing particulate air pollution to prevent respiratory diseases and their exacerbation.


Asunto(s)
Contaminantes Atmosféricos , Material Particulado , Transducción de Señal , Material Particulado/toxicidad , Animales , Ratones , Transducción de Señal/efectos de los fármacos , Contaminantes Atmosféricos/toxicidad , Ratones Endogámicos C57BL , Sistema Respiratorio/efectos de los fármacos , Macrófagos/efectos de los fármacos , Macrófagos Alveolares/efectos de los fármacos
18.
J Transl Med ; 22(1): 598, 2024 Jun 27.
Artículo en Inglés | MEDLINE | ID: mdl-38937806

RESUMEN

BACKGROUND: Monocyte-derived alveolar macrophages (Mo_AMs) are increasingly recognised as potential pathogenic factors for idiopathic pulmonary fibrosis (IPF). While scRNAseq analysis has proven valuable in the transcriptome profiling of Mo_AMs, the integration analysis of multi-omics may provide additional dimensions of understanding of these cellular populations. METHODS: We performed multi-omics analysis on 116 scRNAseq, 119 bulkseq and five scATACseq lung tissue samples from IPF. We built a large-scale IPF scRNAseq atlas and conducted the Monocle 2/3 as well as the Cellchat to explore the developmental path and intercellular communication on Mo_AMs. We also reported the difference in metabolisms, tissue repair and phagocytosis between Mo_AMs and tissue-resident alveolar macrophages (TRMs). To determine whether Mo_AMs affected pulmonary function, we projected clinical phenotypes (FVC%pred) from the bulkseq dataset onto the scRNAseq atlas. Finally, we used scATATCseq to uncover the upstream regulatory mechanisms and determine key drivers in Mo_AMs. RESULTS: We identified three Mo_AMs clusters and the trajectory analysis further validated the origin of these clusters. Moreover, via the Cellchat analysis, the CXCL12/CXCR4 axis was found to be involved in the molecular basis of reciprocal interactions between Mo_AMs and fibroblasts through the activation of the ERK pathway in Mo_AMs. SPP1_RecMacs (RecMacs, recruited macrophages) were higher in the low-FVC group than in the high-FVC group. Specifically, compared with TRMs, the functions of lipid and energetic metabolism as well as tissue repair were higher in Mo_AMs than TRMs. But, TRMs may have higher level of phagocytosis than TRMs. SPIB (PU.1), JUNB, JUND, BACH2, FOSL2, and SMARCC1 showed stronger association with open chromatin of Mo_AMs than TRMs. Significant upregulated expression and deep chromatin accessibility of APOE were observed in both SPP1_RecMacs and TRMs. CONCLUSION: Through trajectory analysis, it was confirmed that SPP1_RecMacs derived from Monocytes. Besides, Mo_AMs may influence FVC% pred and aggravate pulmonary fibrosis through the communication with fibroblasts. Furthermore, distinctive transcriptional regulators between Mo_AMs and TRMs implied that they may depend on different upstream regulatory mechanisms. Overall, this work provides a global overview of how Mo_AMs govern IPF and also helps determine better approaches and intervention therapies.


Asunto(s)
Fibrosis Pulmonar Idiopática , Macrófagos Alveolares , Monocitos , Humanos , Fibrosis Pulmonar Idiopática/patología , Fibrosis Pulmonar Idiopática/metabolismo , Fibrosis Pulmonar Idiopática/genética , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/patología , Monocitos/metabolismo , Masculino , Perfilación de la Expresión Génica , Femenino , Receptores CXCR4/metabolismo , Receptores CXCR4/genética , Persona de Mediana Edad , Fenotipo , Pulmón/patología , Pulmón/metabolismo , Regulación de la Expresión Génica
19.
J Immunol ; 213(2): 161-169, 2024 07 15.
Artículo en Inglés | MEDLINE | ID: mdl-38836816

RESUMEN

Alveolar macrophages (AMs) and recruited monocyte-derived macrophages (MDMs) mediate early lung immune responses to Mycobacterium tuberculosis. Differences in the response of these distinct cell types are poorly understood and may provide insight into mechanisms of tuberculosis pathogenesis. The objective of this study was to determine whether M. tuberculosis induces unique and essential antimicrobial pathways in human AMs compared with MDMs. Using paired human AMs and 5-d MCSF-derived MDMs from six healthy volunteers, we infected cells with M. tuberculosis H37Rv for 6 h, isolated RNA, and analyzed transcriptomic profiles with RNA sequencing. We found 681 genes that were M. tuberculosis dependent in AMs compared with MDMs and 4538 that were M. tuberculosis dependent in MDMs, but not AMs (false discovery rate [FDR] < 0.05). Using hypergeometric enrichment of DEGs in Broad Hallmark gene sets, we found that type I and II IFN Response were the only gene sets selectively induced in M. tuberculosis-infected AM (FDR < 0.05). In contrast, MYC targets, unfolded protein response and MTORC1 signaling, were selectively enriched in MDMs (FDR < 0.05). IFNA1, IFNA8, IFNE, and IFNL1 were specifically and highly upregulated in AMs compared with MDMs at baseline and/or after M. tuberculosis infection. IFNA8 modulated M. tuberculosis-induced proinflammatory cytokines and, compared with other IFNs, stimulated unique transcriptomes. Several DNA sensors and IFN regulatory factors had higher expression at baseline and/or after M. tuberculosis infection in AMs compared with MDMs. These findings demonstrate that M. tuberculosis infection induced unique transcriptional responses in human AMs compared with MDMs, including upregulation of the IFN response pathway and specific DNA sensors.


Asunto(s)
Macrófagos Alveolares , Mycobacterium tuberculosis , Humanos , Mycobacterium tuberculosis/inmunología , Macrófagos Alveolares/inmunología , Transcriptoma , Macrófagos/inmunología , Tuberculosis/inmunología , Células Cultivadas , Transducción de Señal/inmunología , Monocitos/inmunología
20.
Clin Transl Sci ; 17(6): e13850, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38807464

RESUMEN

Cold-inducible RNA-binding protein (CIRP) is a damage-associated molecular pattern that plays a critical role in triggering inflammatory responses. It remains unknown whether CIRP is strongly associated with bacterial load, inflammatory response, and mortality in sepsis model. Pneumonia was induced in specific pathogen-free 8-9-week old male rats by injecting bacteria via puncture of the tracheal cartilage. The expressions of CIRP and proinflammatory cytokines [tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6) and IL-1ß] in lung tissues, alveolar macrophages (AMs), plasma, and bronchoalveolar lavage fluid (BALF) were determined by reverse transcription-polymerase chain reaction, western blotting, and enzyme-linked immunosorbent assay. The numbers of bacteria recovered from the lungs were correlated with the bacterial loads injected and mortality. The expressions of CIRP increased sharply as the bacterial loads increased in the lung tissues and AMs. The amounts of TNF-α, IL-6 and IL-1ß proteins synthesized were dependent on the bacterial load in the lung tissues. Releases of CIRP, TNF-α, IL-6, and IL-1ß increased with the bacterial load in the blood plasma. The proteins confirmed similar patterns in the BALF. CIRP was strongly associated with the releases of TNF-α, IL-6, and IL-1ß in the lung tissues, blood plasma, and BALF, and showed a close correlation with mortality. CIRP demonstrated a strong association with bacterial load, which is new evidence, and close correlations with proinflammatory cytokines and mortality of pneumonia in rats, suggesting that it might be an interesting pneumonic biomarker for monitoring host response and predicting mortality, and a promising target for immunotherapy.


Asunto(s)
Carga Bacteriana , Citocinas , Proteínas de Unión al ARN , Animales , Masculino , Proteínas de Unión al ARN/metabolismo , Citocinas/metabolismo , Citocinas/sangre , Ratas , Pulmón/microbiología , Pulmón/inmunología , Pulmón/patología , Líquido del Lavado Bronquioalveolar/inmunología , Líquido del Lavado Bronquioalveolar/microbiología , Macrófagos Alveolares/inmunología , Macrófagos Alveolares/metabolismo , Macrófagos Alveolares/microbiología , Neumonía/microbiología , Neumonía/inmunología , Neumonía/metabolismo , Neumonía/mortalidad , Ratas Sprague-Dawley , Interleucina-1beta/metabolismo , Interleucina-1beta/sangre , Modelos Animales de Enfermedad , Mediadores de Inflamación/metabolismo , Factor de Necrosis Tumoral alfa/metabolismo , Factor de Necrosis Tumoral alfa/sangre , Neumonía Bacteriana/inmunología , Neumonía Bacteriana/microbiología , Neumonía Bacteriana/mortalidad
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