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1.
Microbiology (Reading) ; 170(1)2024 01.
Artículo en Inglés | MEDLINE | ID: mdl-38261525

RESUMEN

Polymicrobial infection with Candida albicans and Staphylococcus aureus may result in a concomitant increase in virulence and resistance to antimicrobial drugs. This enhanced pathogenicity phenotype is mediated by numerous factors, including metabolic processes and direct interaction of S. aureus with C. albicans hyphae. The overall structure of biofilms is known to contribute to their recalcitrance to treatment, although the dynamics of direct interaction between species and how it contributes to pathogenicity is poorly understood. To address this, a novel time-lapse mesoscopic optical imaging method was developed to enable the formation of C. albicans/S. aureus whole dual-species biofilms to be followed. It was found that yeast-form or hyphal-form C. albicans in the biofilm founder population profoundly affects the structure of the biofilm as it matures. Different sub-populations of C. albicans and S. aureus arise within each biofilm as a result of the different C. albicans morphotypes, resulting in distinct sub-regions. These data reveal that C. albicans cell morphology is pivotal in the development of global biofilm architecture and the emergence of colony macrostructures and may temporally influence synergy in infection.


Asunto(s)
Candida albicans , Infecciones Estafilocócicas , Hifa , Staphylococcus aureus , Imagen de Lapso de Tiempo , Biopelículas
2.
ACS Infect Dis ; 9(8): 1499-1507, 2023 08 11.
Artículo en Inglés | MEDLINE | ID: mdl-37433130

RESUMEN

Antimicrobial resistance has emerged as a global public health threat, and development of novel therapeutics for treating infections caused by multi-drug resistant bacteria is urgent. Staphylococcus aureus is a major human and animal pathogen, responsible for high levels of morbidity and mortality worldwide. The intracellular survival of S. aureus in macrophages contributes to immune evasion, dissemination, and resilience to antibiotic treatment. Here, we present a confocal fluorescence imaging assay for monitoring macrophage infection by green fluorescent protein (GFP)-tagged S. aureus as a front-line tool to identify antibiotic leads. The assay was employed in combination with nanoscaled chemical analyses to facilitate the discovery of a new, active rifamycin analogue. Our findings indicate a promising new approach for the identification of antimicrobial compounds with macrophage intracellular activity. The antibiotic identified here may represent a useful addition to our armory in tackling the silent pandemic of antimicrobial resistance.


Asunto(s)
Rifamicinas , Infecciones Estafilocócicas , Animales , Humanos , Staphylococcus aureus , Proteínas Fluorescentes Verdes/genética , Rifamicinas/uso terapéutico , Antibacterianos/farmacología , Antibacterianos/uso terapéutico , Infecciones Estafilocócicas/microbiología , Macrófagos
3.
Vet Res Commun ; 46(2): 585-592, 2022 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-34669106

RESUMEN

Lawsonia intracellularis is the aetiological agent of proliferative enteropathy, an enteric disease endemic in swine. Survival in its intracellular niche of the ileum epithelial lining requires the capacity to subvert, repress or exploit the host immune response to create an environment conducive to bacterial propagation. To better understand how L. intracellularis survives in its intracellular niche, we have performed an investigation into the dynamic relationship between infection and the host autophagy response by immunohistochemistry in experimentally infected porcine ileum samples.Beclin1, a protein required early in the autophagy pathway was observed to be distributed with a basal to apical concentration gradient in the crypts of healthy piglets, whilst infected piglets were observed to have no gradient of distribution and an increase in the presence of Beclin1 in crypts with histological characteristics of L. intracellularis residence. Detecting microtubule-associated protein light chain 3 (LC3) is used as a method for monitoring autophagy progression as it associates with mature autophagosomes. For LC3 there was no notable change in signal intensity between crypts with characteristic L. intracellularis infection and healthy crypts of uninfected pigs. Finally, as p62 is degraded with the internal substrate of an autophagosome it was used to measure autophagic flux. There was no observed reduction or redistribution of p62.These preliminary results of the autophagy response in the ileum suggest that L. intracellularis affects autophagy. This disruption to host ileum homeostasis may provide a mechanism that assists in bacterial propagation and contributes to pathogenesis.


Asunto(s)
Infecciones por Desulfovibrionaceae , Lawsonia (Bacteria) , Enfermedades de los Porcinos , Animales , Autofagia , Beclina-1 , Infecciones por Desulfovibrionaceae/microbiología , Infecciones por Desulfovibrionaceae/patología , Infecciones por Desulfovibrionaceae/veterinaria , Íleon/microbiología , Íleon/patología , Porcinos , Enfermedades de los Porcinos/microbiología
4.
Nat Commun ; 12(1): 7165, 2021 12 09.
Artículo en Inglés | MEDLINE | ID: mdl-34887398

RESUMEN

Legionella pneumophila is the most common cause of the severe respiratory infection known as Legionnaires' disease. However, the microorganism is typically a symbiont of free-living amoeba, and our understanding of the bacterial factors that determine human pathogenicity is limited. Here we carried out a population genomic study of 902 L. pneumophila isolates from human clinical and environmental samples to examine their genetic diversity, global distribution and the basis for human pathogenicity. We find that the capacity for human disease is representative of the breadth of species diversity although some clones are more commonly associated with clinical infections. We identified a single gene (lag-1) to be most strongly associated with clinical isolates. lag-1, which encodes an O-acetyltransferase for lipopolysaccharide modification, has been distributed horizontally across all major phylogenetic clades of L. pneumophila by frequent recent recombination events. The gene confers resistance to complement-mediated killing in human serum by inhibiting deposition of classical pathway molecules on the bacterial surface. Furthermore, acquisition of lag-1 inhibits complement-dependent phagocytosis by human neutrophils, and promoted survival in a mouse model of pulmonary legionellosis. Thus, our results reveal L. pneumophila genetic traits linked to disease and provide a molecular basis for resistance to complement-mediated killing.


Asunto(s)
Proteínas del Sistema Complemento/inmunología , Legionella pneumophila/genética , Enfermedad de los Legionarios/inmunología , Enfermedad de los Legionarios/microbiología , Acetiltransferasas/genética , Acetiltransferasas/inmunología , Animales , Proteínas Bacterianas/genética , Proteínas Bacterianas/inmunología , Femenino , Genoma Bacteriano , Humanos , Legionella pneumophila/clasificación , Legionella pneumophila/inmunología , Legionella pneumophila/aislamiento & purificación , Ratones , Ratones Endogámicos C57BL , Neutrófilos/inmunología , Filogenia
5.
Access Microbiol ; 3(3): 000173, 2021 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-34151149

RESUMEN

Single-use plastics have often replaced more sustainable materials in microbiology laboratories. Keeping in mind that one of the objectives of the United Nations Sustainable Development Goals is responsible consumption and production, we wanted to document how many single-use plastic items could be saved by taking reduction and reuse approaches in a microbiology laboratory. After taking 4 weeks to document the baseline levels of single-use plastic waste being generated in our laboratory and identifying ways to reduce our reliance on them, we implemented various reduction and reuse approaches and then documented our plastic use over a 7-week period. Reduction approaches included moving to sustainable materials, such as reusable wooden sticks for patch plating and metal loops for inoculation. Reuse approaches focused on reusing plastic tubes via a chemical decontamination station and autoclaving, facilitating the reduction of single-use plastics and a decrease in the amount of waste generated. By utilizing reduction and reuse strategies, which could be implemented in other microbiology laboratories, substantial single-use plastic savings were achieved. These savings had an impact on the amount of biohazard waste being autoclaved and incinerated, as well as generating substantial cost savings for the research institute. The reductions in waste documented in this study could act as a benchmark for others wanting to implement the changes described.

6.
Trends Microbiol ; 29(4): 282-285, 2021 04.
Artículo en Inglés | MEDLINE | ID: mdl-33279382

RESUMEN

Our capacity to investigate the biology of the major human and animal pathogen Staphylococcus aureus has been greatly enhanced by technological advances in transposon (Tn) mutagenesis. Here we provide a perspective on how these advances can further our understanding of pathogenesis and antibiotic resistance.


Asunto(s)
Antibacterianos/farmacología , Elementos Transponibles de ADN/genética , Farmacorresistencia Bacteriana/genética , Biblioteca de Genes , Mutagénesis , Staphylococcus aureus/efectos de los fármacos , Staphylococcus aureus/genética , Interacciones Huésped-Patógeno/genética , Humanos , Infecciones Estafilocócicas/microbiología , Staphylococcus aureus/patogenicidad
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