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    Geographic divergence of methicillin-resistant Staphylococcus aureus ST5-SCCmecI in the aftermath of a major earthquake and tsunami: impact of a plasmid harboring heavy metal resistance genes
    (American Society for Microbiology, 2025-04-09)
    Jose R. W. Martínez
    ;
    Manuel Alcalde-Rico
    ;
    Estefanía Jara-Videla
    ;
    Jinnethe Reyes
    ;
    Lina P. Carvajal
    (MRSA) is a major public health menace. The global spread of MRSA is characterized by successive waves of epidemic clones dominating specific geographical regions. The acquisition of genes encoding resistance to heavy metals (HMRGs) is thought to be a key feature in the geographic divergence of MRSA. However, the cause-effect relationship between the presence of HMRGs and the divergence of MRSA clones remains to be clarified. In this study, we assessed the role that HMRGs may have played in the evolutionary divergence of the MRSA ST5-SCC <jats:italic>mec</jats:italic> I lineage in Latin America. We conducted a genomic characterization of 113 MRSA clinical isolates from six Latin American healthcare centers, including 53 isolates collected from two cities in Chile (Santiago and Concepción). We found a plasmid (pSCL4752) harboring arsenic, cadmium, and mercury resistance genes in 65% ( <jats:italic>n</jats:italic> = 71) of the ST5-SCC <jats:italic>mec</jats:italic> I isolates. We also observed a geographic divergence associated with the presence of pSCL4752 in Chilean isolates, with a higher frequency in isolates from Concepción (88%) compared to Santiago (29%). Interestingly, a molecular clock analysis revealed that this divergence occurred in the aftermath of an 8.8 Mw earthquake and tsunami that struck the Concepción area in 2010. Moreover, our results demonstrate that the carriage of pSCL4752 can be beneficial or detrimental for ST5-SCC <jats:italic>mec</jats:italic> I isolates, depending on the environmental availability of these heavy metals. Our results suggest that the divergence of the ST5-SCC <jats:italic>mec</jats:italic> I MRSA lineage in Latin America could have been fostered by environmental disasters and influenced by the presence/absence of HMRGs harbored in a plasmid. </jats:p> <jats:sec> <jats:title>IMPORTANCE</jats:title> <jats:p> Methicillin-resistant <jats:italic>Staphylococcus aureus</jats:italic> (MRSA) is a major cause of life-threatening infections worldwide and a growing public health concern. The rise of antibiotic-resistant bacteria, such as MRSA, is often linked to genetic adaptations that enhance their survival. Our research sheds light on how environmental changes, such as those triggered by a natural disaster, can influence the evolution and geographic spread of a highly resistant MRSA lineage in Latin America. We identified a plasmid carrying genes for resistance to arsenic, cadmium, and mercury, which was associated with the geographic divergence of the ST5-SCC <jats:italic>mec</jats:italic> I MRSA lineage, with striking differences in its prevalence between regions affected by a major earthquake and tsunami. By linking environmental events to pathogen evolution, our study highlights the role of ecological pressures in the spread of MRSA. These findings emphasize the need to integrate environmental monitoring into public health strategies to better understand the global challenge of antimicrobial resistance.
      4
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    Tackling cutaneous herpes simplex virus disease with topical immunomodulators—a call to action
    (American Society for Microbiology, 2025-03-13) ;
    Javier Carbone-Schellman
    ;
    Susan M. Bueno
    ;
    Alexis M. Kalergis
    ;
    Claudia A. Riedel
    Antivirals play important roles in restricting viral diseases. Nevertheless, they act on a relatively limited number of viruses and occasionally display partial effectiveness in some tissues or against escape variants. Although vaccination remains the most cost-effective approach for preventing microbial diseases, developing prophylactic or therapeutic solutions for pathogens, such as herpes simplex viruses (HSVs), that effectively reduce their clinical manifestations in the skin has proven exceptionally challenging despite extensive research. Alternatively, a less explored approach for tackling HSV skin infection involves using topical immunomodulatory molecules to potentiate the host’s innate antiviral immune responses. When applied directly to herpetic skin lesions where viral antigen is present, this strategy has the potential to elicit virus-specific adaptive immunity. Based on currently available data, we foresee substantial potential for this approach in addressing HSV skin infections, along with additional prospects to advance understanding of skin biology and apply relevant new findings to other dermatological conditions. However, due to the limited number of case studies evaluating this method and its safety profile, particularly in immunocompromised individuals and pregnant women, further research is crucial, especially to assess the effects of immunomodulators in these vulnerable populations. Here, we revisit and discuss the use of immunomodulatory molecules for potentiating the host immune response against HSV skin infection and call for action for increased research and clinical trials regarding the possible benefits of this latter strategy for treating HSV cutaneous disease and recurrences. We also revisit and discuss antivirals and vaccine candidates against HSVs.
    Scopus© Citations 2  7
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    Gut Microbiota‐Derived Extracellular Vesicles Influence Alcohol Intake Preferences in Rats
    (Wiley, 2025-03)
    Macarena Díaz‐Ubilla
    ;
    Aliosha I. Figueroa‐Valdés
    ;
    Hugo E. Tobar
    ;
    María Elena Quintanilla
    ;
    Eugenio Díaz
    <jats:title>ABSTRACT</jats:title><jats:p>Growing preclinical and clinical evidence suggests a link between gut microbiota dysbiosis and problematic alcohol consumption. Extracellular vesicles (EVs) are key mediators involved in bacteria‐to‐host communication. However, their potential role in mediating addictive behaviour remains unexplored. This study investigates the role of gut microbiota‐derived bacterial extracellular vesicles (bEVs) in driving high alcohol consumption. bEVs were isolated from the gut microbiota of a high alcohol‐drinking rat strain (UChB rats), either ethanol‐naïve or following chronic alcohol consumption and administered intraperitoneally or orally to alcohol‐rejecting male and female Wistar rats. Both types of UChB‐derived bEVs increased Wistar's voluntary alcohol consumption (three bottle choice test) up to 10‐fold (<jats:italic>p</jats:italic> &lt; 0.0001), indicating that bEVs are able and sufficient to transmit drinking behaviour across different rat strains. Molecular analysis revealed that bEVs administration did not induce systemic or brain inflammation in the recipient animals, suggesting that the increased alcohol intake triggered by UChB‐derived bEVs operates through an inflammation‐independent mechanism. Furthermore, we demonstrate that the vagus nerve mediates the bEV‐induced increase in alcohol consumption, as bilateral vagotomy completely abolished the high drinking behaviour induced by both intraperitoneally injected and orally administered bEVs. Thus, this study identifies bEVs as a novel mechanism underlying gut microbiota‐induced high alcohol intake in a vagus nerve‐dependent manner.</jats:p>
      7
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    Tumor hypoxia shapes natural killer cell anticancer activities
    (Springer Science and Business Media LLC, 2025-05-30) ;
    Flavio Salazar-Onfray
    ;
    Fermín E. González
    ;
    Andrés Tittarelli
      1
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    Connexin46 in the nucleus of cancer cells: a possible role as transcription modulator
    (Springer Science and Business Media LLC, 2025-03-27)
    Ainoa Fernández-Olivares
    ;
    Viviana P Orellana
    ;
    Jesús Llanquinao
    ;
    ;
    Pablo Pérez-Moreno
    Scopus© Citations 1  10
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    Paw Skin as a Translational Model for Investigating Fibrotic and Inflammatory Wound Healing Defects in Recessive Dystrophic Epidermolysis Bullosa
    (MDPI AG, 2025-04-30) ;
    Giselle Ramos-Gonzalez
    ;
    Bernardo Morales-Catalán
    ;
    ;
    Recessive dystrophic epidermolysis bullosa (RDEB) is a severe genetic disease caused by COL7A1 mutations. It leads to skin fragility, chronic inflammation, and impaired wound healing. The condition often results in fibrotic scarring, pseudosyndactyly, and cutaneous squamous cell carcinoma (SCC). However, current animal models fail to fully replicate chronic RDEB wounds. In this study, we used Collagen VII-hypomorphic mice (Col7a1flNeo/flNeo) and created full-thickness wounds on their paw skin, an area prone to fibrosis due to mechanical stress. We analyzed the healing process using histology, immunofluorescence, and electron microscopy. The RDEB mice showed delayed wound closure, increased inflammation, and poor granulation tissue formation. At 30 days post-injury, we observed persistent fibrosis, with elevated levels of Collagen I, α-SMA+ myofibroblasts, and tenascin-C. These mice also had fewer intraepidermal nerve fibers, which may help explain the neuropathic pain associated with RDEB. Our model reproduces the main features of chronic RDEB wounds. It offers a useful tool for evaluating therapies aimed at reducing inflammation, fibrosis, and tumor risk in these patients.
    Scopus© Citations 3  4
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    Lack of treatment options for endemic helminth infections in Chile affects patient care and public health
    (Elsevier BV, 2025-06) ;
    María Elvira Balcells
    ;
    Claudia P. Cortes
    ;
    Alberto Fica
    ;
    Renzo Tassara
      2
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    Large scale summarization using ensemble prompts and in context learning approaches
    (Springer Science and Business Media LLC, 2025-03-25)
    Andrés Leiva-Araos
    ;
    Bady Gana
    ;
    Héctor Allende-Cid
    ;
    José García
    ;
    Manob Jyoti Saikia
      5
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    Fighting resistance with redundancy: a path forward for treating antimicrobial-resistant infections?
    (American Society for Microbiology, 2025-04-02) ;
    Pranita D. Tamma
    ;
    Cesar A. Arias
    Acinetobacter baumannii</jats:italic> (CRAB) remains a major threat, with high mortality and limited effective treatments. Sulbactam-durlobactam has emerged as a promising therapy against CRAB. Sulbactam-durlobactam was combined with imipenem-cilastatin in a clinical trial that led to its United States Food and Drug Administration approval. However, the additive benefit of imipenem remains uncertain. In a recent study (Antimicrob Agents Chemother 69:e01627-24, 2025, <jats:ext-link xmlns:xlink="http://www.w3.org/1999/xlink" ext-link-type="uri" xlink:href="https://doi.org/10.1128/aac.01627-24" xlink:type="simple">https://doi.org/10.1128/aac.01627-24</jats:ext-link> ), Veeraraghavan and colleagues provide convincing mechanistic evidence that adding imipenem to sulbactam-durlobactam enhances bacterial killing, likely through complementary inhibition of penicillin binding proteins, leveraging the concept of target redundancy.
    Scopus© Citations 2  2
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    The Unexplored Role of Connexin Hemichannels in Promoting Facioscapulohumeral Muscular Dystrophy Progression
    (MDPI AG, 2025-01-04)
    Macarena Díaz-Ubilla
    ;
    <jats:p>DUX4 is typically a repressed transcription factor, but its aberrant activation in Facioscapulohumeral Muscular Dystrophy (FSHD) leads to cell death by disrupting muscle homeostasis. This disruption affects crucial processes such as myogenesis, sarcolemma integrity, gene regulation, oxidative stress, immune response, and many other biological pathways. Notably, these disrupted processes have been associated, in other pathological contexts, with the presence of connexin (Cx) hemichannels—transmembrane structures that mediate communication between the intracellular and extracellular environments. Thus, hemichannels have been implicated in skeletal muscle atrophy, as observed in human biopsies and animal models of Duchenne Muscular Dystrophy, Becker Muscular Dystrophy, and Dysferlinopathies, suggesting a potentially shared mechanism of muscle atrophy that has not yet been explored in FSHD. Despite various therapeutic strategies proposed to manage FSHD, no treatment or cure is currently available. This review summarizes the current understanding of the mechanisms underlying FSHD progression, with a focus on hormones, inflammation, reactive oxygen species (ROS), and mitochondrial function. Additionally, it explores the potential of targeting hemichannels as a therapeutic strategy to slow disease progression by preventing the spread of pathogenic factors between muscle cells.</jats:p>
      5