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1.
Int J Mol Sci ; 25(10)2024 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-38791439

RESUMO

Lefamulin is a first-in-class systemic pleuromutilin antimicrobial and potent inhibitor of bacterial translation, and the most recent novel antimicrobial approved for the treatment of community-acquired pneumonia (CAP). It exhibits potent antibacterial activity against the most prevalent bacterial pathogens that cause typical and atypical pneumonia and other infectious diseases. Early studies indicate additional anti-inflammatory activity. In this study, we further investigated the immune-modulatory activity of lefamulin in the influenza A/H1N1 acute respiratory distress syndrome (ARDS) model in BALB/c mice. Comparators included azithromycin, an anti-inflammatory antimicrobial, and the antiviral oseltamivir. Lefamulin significantly decreased the total immune cell infiltration, specifically the neutrophils, inflammatory monocytes, CD4+ and CD8+ T-cells, NK cells, and B-cells into the lung by Day 6 at both doses tested compared to the untreated vehicle control group (placebo), whereas azithromycin and oseltamivir did not significantly affect the total immune cell counts at the tested dosing regimens. Bronchioalveolar lavage fluid concentrations of pro-inflammatory cytokines and chemokines including TNF-α, IL-6, IL-12p70, IL-17A, IFN-γ, and GM-CSF were significantly reduced, and MCP-1 concentrations were lowered (not significantly) by lefamulin at the clinically relevant 'low' dose on Day 3 when the viral load peaked. Similar effects were also observed for oseltamivir and azithromycin. Lefamulin also decreased the viral load (TCID50) by half a log10 by Day 6 and showed positive effects on the gross lung pathology and survival. Oseltamivir and lefamulin were efficacious in the suppression of the development of influenza-induced bronchi-interstitial pneumonia, whereas azithromycin did not show reduced pathology at the tested treatment regimen. The observed anti-inflammatory and immune-modulatory activity of lefamulin at the tested treatment regimens highlights a promising secondary pharmacological property of lefamulin. While these results require confirmation in a clinical trial, they indicate that lefamulin may provide an immune-modulatory activity beyond its proven potent antibacterial activity. This additional activity may benefit CAP patients and potentially prevent acute lung injury (ALI) and ARDS.


Assuntos
Modelos Animais de Doenças , Diterpenos , Vírus da Influenza A Subtipo H1N1 , Camundongos Endogâmicos BALB C , Infecções por Orthomyxoviridae , Animais , Vírus da Influenza A Subtipo H1N1/efeitos dos fármacos , Camundongos , Infecções por Orthomyxoviridae/tratamento farmacológico , Infecções por Orthomyxoviridae/imunologia , Infecções por Orthomyxoviridae/virologia , Diterpenos/farmacologia , Diterpenos/uso terapêutico , Citocinas/metabolismo , Azitromicina/farmacologia , Azitromicina/uso terapêutico , Oseltamivir/farmacologia , Oseltamivir/uso terapêutico , Feminino , Pulmão/imunologia , Pulmão/virologia , Pulmão/efeitos dos fármacos , Pulmão/patologia , Antivirais/farmacologia , Antivirais/uso terapêutico , Tetra-Hidronaftalenos/farmacologia , Tetra-Hidronaftalenos/uso terapêutico , Síndrome do Desconforto Respiratório/tratamento farmacológico , Síndrome do Desconforto Respiratório/imunologia , Síndrome do Desconforto Respiratório/virologia , Agentes de Imunomodulação/farmacologia , Agentes de Imunomodulação/uso terapêutico , Líquido da Lavagem Broncoalveolar/imunologia , Compostos Policíclicos , Tioglicolatos
2.
Genes Dev ; 25(14): 1476-85, 2011 Jul 15.
Artigo em Inglês | MEDLINE | ID: mdl-21715559

RESUMO

Nitric oxide gas acts as a short-range signaling molecule in a vast array of important physiological processes, many of which include major changes in gene expression. How these genomic responses are induced, however, is poorly understood. Here, using genetic and chemical manipulations, we show that nitric oxide is produced in the Drosophila prothoracic gland, where it acts via the nuclear receptor ecdysone-induced protein 75 (E75), reversing its ability to interfere with its heterodimer partner, Drosophila hormone receptor 3 (DHR3). Manipulation of these interactions leads to gross alterations in feeding behavior, fat deposition, and developmental timing. These neuroendocrine interactions and consequences appear to be conserved in vertebrates.


Assuntos
Proteínas de Ligação a DNA/metabolismo , Proteínas de Drosophila/metabolismo , Drosophila melanogaster/fisiologia , Óxido Nítrico/metabolismo , Fatores de Transcrição/metabolismo , Animais , Proteínas de Ligação a DNA/genética , Proteínas de Ligação a DNA/farmacologia , Proteínas de Drosophila/genética , Proteínas de Drosophila/farmacologia , Drosophila melanogaster/efeitos dos fármacos , Drosophila melanogaster/genética , Drosophila melanogaster/crescimento & desenvolvimento , Drosophila melanogaster/metabolismo , Ecdisona/farmacologia , Comportamento Alimentar/fisiologia , Sequestradores de Radicais Livres/farmacologia , Perfilação da Expressão Gênica , Regulação da Expressão Gênica no Desenvolvimento/efeitos dos fármacos , Técnicas de Silenciamento de Genes , Larva , Metabolismo dos Lipídeos , Metamorfose Biológica/genética , Metamorfose Biológica/fisiologia , Óxido Nítrico/farmacologia , Interferência de RNA , Receptores Citoplasmáticos e Nucleares/metabolismo , Receptores de Esteroides/metabolismo , Fatores de Transcrição/genética , Fatores de Transcrição/farmacologia
3.
Dis Model Mech ; 4(4): 515-25, 2011 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-21540243

RESUMO

Candida albicans systemic dissemination in immunocompromised patients is thought to develop from initial gastrointestinal (GI) colonisation. It is unclear what components of the innate immune system are necessary for preventing C. albicans dissemination from the GI tract, but studies in mice have indicated that both neutropenia and GI mucosal damage are crucial for allowing widespread invasive C. albicans disease. Mouse models, however, provide limited applicability to genome-wide screens for pathogen or host factors - factors that might influence systemic dissemination following GI colonisation. For this reason we developed a Drosophila model to study intestinal infection by Candida. We found that commensal flora aided host survival following GI infection. Candida provoked extensive JNK-mediated death of gut cells and induced antimicrobial peptide expression in the fat body. From the side of the host, nitric oxide and blood cells influenced systemic antimicrobial responses. The secretion of SAP4 and SAP6 (secreted aspartyl proteases) from Candida was also essential for activating systemic Toll-dependent immunity.


Assuntos
Candida albicans/imunologia , Candidíase/imunologia , Drosophila melanogaster/imunologia , Trato Gastrointestinal/imunologia , Trato Gastrointestinal/microbiologia , Interações Hospedeiro-Patógeno/imunologia , Imunidade/imunologia , Animais , Candida albicans/enzimologia , Candidíase/patologia , Morte Celular , Drosophila melanogaster/microbiologia , Epitélio/patologia , Trato Gastrointestinal/patologia , Humanos , Larva/imunologia , Larva/microbiologia , Camundongos , Óxido Nítrico/metabolismo , Peptídeo Hidrolases/metabolismo , Análise de Sobrevida
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