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1.
Blood Adv ; 7(15): 4170-4181, 2023 08 08.
Artigo em Inglês | MEDLINE | ID: mdl-37307197

RESUMO

Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) enters the respiratory tract, where it infects the alveoli epithelial lining. However, patients have sequelae that extend well beyond the alveoli into the pulmonary vasculature and, perhaps, beyond to the brain and other organs. Because of the dynamic events within blood vessels, histology does not report platelet and neutrophil behavior. Because of the rapid nontranscriptional response of these cells, neither single-cell RNA sequencing nor proteomics report robustly on their critical behaviors. We used intravital microscopy in level-3 containment to examine the pathogenesis of SARS-CoV-2 within 3 organs in mice expressing human angiotensin converting enzyme 2 (ACE-2) ubiquitously (CAG-AC-70) or on epithelium (K18-promoter). Using a neon-green SARS-CoV-2, we observed both the epithelium and endothelium infected in AC70 mice but only the epithelium in K18 mice. There were increased neutrophils in the microcirculation but not in the alveoli of the lungs of AC70 mice. Platelets formed large aggregates in the pulmonary capillaries. Despite only neurons being infected within the brain, profound neutrophil adhesion forming the nidus of large platelet aggregates were observed in the cerebral microcirculation, with many nonperfused microvessels. Neutrophils breached the brain endothelial layer associated with a significant disruption of the blood-brain-barrier. Despite ubiquitous ACE-2 expression, CAG-AC-70 mice had very small increases in blood cytokine, no increase in thrombin, no infected circulating cells, and no liver involvement suggesting limited systemic effects. In summary, our imaging of SARS-CoV-2-infected mice gave direct evidence that there is a significant perturbation locally in the lung and brain microcirculation induced by local viral infection leading to increased local inflammation and thrombosis in these organs.


Assuntos
COVID-19 , SARS-CoV-2 , Animais , Camundongos , COVID-19/patologia , Inflamação/patologia , Pulmão/diagnóstico por imagem , Pulmão/patologia
2.
Cell ; 183(1): 110-125.e11, 2020 10 01.
Artigo em Inglês | MEDLINE | ID: mdl-32888431

RESUMO

During respiration, humans breathe in more than 10,000 liters of non-sterile air daily, allowing some pathogens access to alveoli. Interestingly, alveoli outnumber alveolar macrophages (AMs), which favors alveoli devoid of AMs. If AMs, like most tissue macrophages, are sessile, then this numerical advantage would be exploited by pathogens unless neutrophils from the blood stream intervened. However, this would translate to omnipresent persistent inflammation. Developing in vivo real-time intravital imaging of alveoli revealed AMs crawling in and between alveoli using the pores of Kohn. Importantly, these macrophages sensed, chemotaxed, and, with high efficiency, phagocytosed inhaled bacterial pathogens such as P. aeruginosa and S. aureus, cloaking the bacteria from neutrophils. Impairing AM chemotaxis toward bacteria induced superfluous neutrophil recruitment, leading to inappropriate inflammation and injury. In a disease context, influenza A virus infection impaired AM crawling via the type II interferon signaling pathway, and this greatly increased secondary bacterial co-infection.


Assuntos
Bactérias/imunologia , Macrófagos Alveolares/imunologia , Macrófagos Alveolares/metabolismo , Animais , Feminino , Homeostase , Humanos , Pulmão/imunologia , Pulmão/metabolismo , Macrófagos/imunologia , Macrófagos/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Infiltração de Neutrófilos , Neutrófilos/imunologia , Fagocitose/imunologia , Pseudomonas aeruginosa/imunologia , Pseudomonas aeruginosa/patogenicidade , Alvéolos Pulmonares , Transdução de Sinais , Staphylococcus aureus/imunologia , Staphylococcus aureus/patogenicidade
3.
Front Cell Infect Microbiol ; 10: 592022, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-33643928

RESUMO

Paracoccidioidomycosis is a systemic fungal disease, considered endemic in Latin America. Its etiological agents, fungi of the Paracoccidioides complex, have restricted geographic habitat, conidia as infecting form, and thermo-dimorphic characteristics. Polymorphonuclear neutrophils (PMNs) are responsible for an important defense response against fungus, releasing Neutrophil Extracellular Traps (NETs), which can wrap and destroy the yeasts. However, it has been described that some pathogens are able to evade from these DNA structures by releasing DNase as an escape mechanism. As different NETs patterns have been identified in PMNs cultures challenged with different isolates of Paracoccidioides brasiliensis, the general objective of this study was to identify if different patterns of NETs released by human PMNs challenged with Pb18 (virulent) and Pb265 (avirulent) isolates would be correlated with fungal ability to produce a DNase-like protein. To this end, PMNs from healthy subjects were isolated and challenged in vitro with both fungal isolates. The production, release, and conformation of NETs in response to the fungi were evaluated by Confocal Microscopy, Scanning Microscopy, and NETs Quantification. The identification of fungal DNase production was assessed by DNase TEST Agar, and the relative gene expression for hypothetical proteins was investigated by RT-qPCR, whose genes had been identified in the fungal genome in the GenBank (PADG_11161 and PADG_08285). It was possible to verify the NETs release by PMNs, showing different NETs formation when in contact with different isolates of the fungus. The Pb18 isolate induced the release of looser, larger, and more looking like degraded NETs compared to the Pb265 isolate, which induced the release of denser and more compact NETs. DNase TEST Agar identified the production of a DNase-like protein, showing that only Pb18 showed the capacity to degrade DNA in these plates. Besides that, we were able to identify that both PADG_08528 and PADG_11161 genes were more expressed during interaction with neutrophil by the virulent isolate, being PADG_08528 highly expressed in these cultures, demonstrating that this gene could have a greater contribution to the production of the protein. Thus, we identified that the virulent isolate is inducing more scattered and loose NETs, probably by releasing a DNase-like protein. This factor could be an important escape mechanism used by the fungus to escape the NETs action.


Assuntos
Armadilhas Extracelulares , Paracoccidioides , Paracoccidioidomicose , Desoxirribonucleases , Humanos , Neutrófilos , Paracoccidioides/genética
4.
Cell Host Microbe ; 25(4): 526-536.e4, 2019 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-30930127

RESUMO

Bacterial biofilm infections are difficult to eradicate because of antibiotic insusceptibility and high recurrence rates. Biofilm formation by Pseudomonas aeruginosa, a leading cause of bacterial keratitis, is facilitated by the bacterial Psl exopolysaccharide and associated with heightened virulence. Using intravital microscopy, we observed that neutrophilic recruitment to corneal infections limits P. aeruginosa biofilms to the outer eye surface, preventing bacterial dissemination. Neutrophils moved to the base of forming biofilms, where they underwent neutrophil extracellular trap formation (NETosis) in response to high expression of the bacterial type-3 secretion system (T3SS). NETs formed a barrier "dead zone," confining bacteria to the external corneal environment and inhibiting bacterial dissemination into the brain. Once formed, ocular biofilms were resistant to antibiotics and neutrophil killing, advancing eye pathology. However, blocking both Psl and T3SS together with antibiotic treatment broke down the biofilm and reversed keratitis, suggesting future therapeutic strategies for this intractable infection.


Assuntos
Biofilmes/crescimento & desenvolvimento , Córnea/microbiologia , Armadilhas Extracelulares/metabolismo , Meningoencefalite/prevenção & controle , Neutrófilos/imunologia , Infecções por Pseudomonas/imunologia , Pseudomonas aeruginosa/imunologia , Animais , Modelos Animais de Doenças , Camundongos , Infecções por Pseudomonas/complicações , Pseudomonas aeruginosa/crescimento & desenvolvimento
5.
J Clin Invest ; 127(6): 2249-2261, 2017 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-28463232

RESUMO

Pseudomonas aeruginosa is a major cause of severe infections that lead to bacteremia and high patient mortality. P. aeruginosa has evolved numerous evasion and subversion mechanisms that work in concert to overcome immune recognition and effector functions in hospitalized and immunosuppressed individuals. Here, we have used multilaser spinning-disk intravital microscopy to monitor the blood-borne stage in a murine bacteremic model of P. aeruginosa infection. P. aeruginosa adhered avidly to lung vasculature, where patrolling neutrophils and other immune cells were virtually blind to the pathogen's presence. This cloaking phenomenon was attributed to expression of Psl exopolysaccharide. Although an anti-Psl mAb activated complement and enhanced neutrophil recognition of P. aeruginosa, neutrophil-mediated clearance of the pathogen was suboptimal owing to a second subversion mechanism, namely the type 3 secretion (T3S) injectisome. Indeed, T3S prevented phagosome acidification and resisted killing inside these compartments. Antibody-mediated inhibition of the T3S protein PcrV did not enhance bacterial phagocytosis but did enhance killing of the few bacteria ingested by neutrophils. A bispecific mAb targeting both Psl and PcrV enhanced neutrophil uptake of P. aeruginosa and also greatly increased inhibition of T3S function, allowing for phagosome acidification and bacterial killing. These data highlight the need to block multiple evasion and subversion mechanisms in tandem to kill P. aeruginosa.


Assuntos
Antibacterianos/farmacologia , Anticorpos Monoclonais/farmacologia , Infecções por Pseudomonas/microbiologia , Pseudomonas aeruginosa/imunologia , Animais , Anticorpos Biespecíficos , Antígenos de Bactérias/imunologia , Carga Bacteriana , Proteínas de Bactérias/imunologia , Toxinas Bacterianas/imunologia , Proteínas do Sistema Complemento/metabolismo , Avaliação Pré-Clínica de Medicamentos , Feminino , Células de Kupffer/microbiologia , Pulmão/irrigação sanguínea , Pulmão/microbiologia , Masculino , Camundongos da Linhagem 129 , Camundongos Endogâmicos C57BL , Microvasos/microbiologia , Neutrófilos/imunologia , Neutrófilos/microbiologia , Fagocitose , Proteínas Citotóxicas Formadoras de Poros/imunologia , Infecções por Pseudomonas/imunologia , Receptores Fc/metabolismo
6.
Br J Psychol ; 96(Pt 4): 389-406, 2005 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-16248932

RESUMO

The terrorist attacks of 9/11, and subsequent terrorist acts around the world, have alerted social psychologists to the need to examine the antecedents and consequences of terrorist threat perception. In these two studies, we examined the predictive power of demographic factors (age, gender, location), individual values and normative influences on threat perception and the consequences of this perception for behavioural change and close relationships. In Study 1 (N = 100), gender, benevolence values and normative influences were all correlates of threat perception, whilst sense of personal threat was correlated with increased contact with friends and family. In Study 2 (N = 240) age, gender, location, and the values of openness to change and hedonism, all predicted threat perception, which, in turn, predicted behavioural change and relationship contact. Such findings point to the important role social psychologists should play in understanding responses to these new terrorist threats.


Assuntos
Atitude , Percepção , Mudança Social , Terrorismo/psicologia , Adaptação Psicológica , Adolescente , Adulto , Feminino , Processos Grupais , Humanos , Masculino , Pessoa de Meia-Idade , Comportamento Social , Reino Unido
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