Publications by authors named "Petrone V"

Infection with SARS-CoV-2, the virus responsible for COVID-19 diseases, can impact different tissues and induce significant cellular alterations. The production of extracellular vesicles (EVs), which are physiologically involved in cell communication, is also altered during COVID-19, along with the dysfunction of cytoplasmic organelles. Since circulating EVs reflect the state of their cells of origin, they represent valuable tools for monitoring pathological conditions.

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The use of CD169 as a marker of viral infection has been widely discussed in the context of COVID-19, and in particular, its crucial role in the early detection of SARS-CoV-2 infection and its association with the severity and clinical outcome of COVID-19 were demonstrated. COVID-19 patients show relevant systemic alteration and immunological dysfunction that persists in individuals with post-acute sequelae of SARS-CoV-2 infection (PASC). It is critical to implement the characterization of the disease, focusing also on the possible impact of the different COVID-19 waves and the consequent effects found after infection.

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Multisystem inflammatory syndrome in children (MIS-C) is a postinfectious sequela of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), with some clinical features overlapping with Kawasaki disease (KD). Our research group and others have highlighted that the spike protein of SARS-CoV-2 can trigger the activation of human endogenous retroviruses (HERVs), which in turn induces inflammatory and immune reactions, suggesting HERVs as contributing factors in COVID-19 immunopathology. With the aim to identify new factors involved in the processes underlying KD and MIS-C, we analysed the transcriptional levels of HERVs, HERV-related genes, and immune mediators in children during the acute and subacute phases compared with COVID-19 paediatric patients and healthy controls.

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Hydrodynamic cavitation (HC), as an effective, efficient, and scalable extraction technique for natural products, could enable the affordable production of valuable antioxidant extracts from plant resources. For the first time, whole pomegranate ( L.) fruits, rich in bioactive phytochemicals endowed with anti-cancer properties, were extracted in water using HC.

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Article Synopsis
  • The research explores the role of human endogenous retroviruses (HERVs) in SARS-CoV-2 infection and their potential impact on COVID-19 severity and progression.
  • The study analyzed nasopharyngeal and oropharyngeal swab samples from both SARS-CoV-2-positive and -negative individuals, finding that HERV and inflammatory mediator levels were significantly altered in infected patients.
  • Results indicate that certain HERVs and inflammatory markers could serve as early predictive biomarkers for COVID-19 severity, with machine learning models successfully distinguishing between hospitalized and non-hospitalized patients based on specific expressions.
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  • The research focuses on Thymosin alpha 1 (Tα1), a thymic peptide known for restoring balance in various health conditions like infections, cancer, and aging, showcasing its multitasking abilities based on the host's immune state.
  • The study highlights the interaction between Tα1 and Galectin-1 (Gal-1), a protein involved in various biological functions, revealing how Tα1 inhibits Gal-1's activity related to cell migration and structure formation.
  • The findings provide new insights into the specific mechanisms of Tα1's action through its interaction with Gal-1, helping to explain its diverse effects on health and disease.
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The complex alterations of the immune system and the immune-mediated multiorgan injury plays a key role in host response to SARS-CoV-2 infection and in the pathogenesis of COVID-19, being also associated with adverse outcomes. Thymosin alpha 1 (Tα1) is one of the molecules used in the treatment of COVID-19, as it is known to restore the homeostasis of the immune system during infections and cancer. The use of Tα1 in COVID-19 patients had been widely used in China and in COVID-19 patients, it has been shown to decrease hospitalization rate, especially in those with greater disease severity, and reduce mortality by restoring lymphocytopenia and more specifically, depleted T cells.

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  • Stroke patients with left Hemispatial Neglect (LHN) struggle to perceive stimuli on their left side and favor the right side, but the neural mechanisms behind this are not well understood.
  • The study aimed to identify EEG measures that differentiate LHN patients from healthy controls and to create a neurophysiological model that connects these measures.
  • Two main pathways were found: one links pre-stimulus brain connectivity and alpha frequency to visual processing, while the other connects alpha amplitude between hemispheres to perceptual asymmetry, together explaining over 83% of the variance in perceptual performance.
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Background: Putative pathogenic effects mediated by human endogenous retroviruses (HERVs) in neurological and psychiatric disorders in humans have been extensively described. HERVs may alter the development of the brain by means of several mechanisms, including modulation of gene expression, alteration of DNA stability, and activation of immune system. We recently demonstrated that autistic children and their mothers share high expression levels of some HERVs and cytokines in peripheral blood mononuclear cells (PBMCs) ex vivo, suggesting a close mother-child association in Autism Spectrum Disorder (ASD).

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Maternal infections during pregnancy and the consequent maternal immune activation (MIA) are the major risk factors for autism spectrum disorder (ASD). Epidemiological evidence is corroborated by the preclinical models in which MIA leads to ASD-like behavioral abnormalities and altered neuroinflammatory profiles, with an increase in pro-inflammatory cytokines and microglial markers. In addition to neuroinflammatory response, an abnormal expression of endogenous retroviruses (ERVs) has been identified in neurodevelopmental disorders and have been found to correlate with disease severity.

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Article Synopsis
  • - COVID-19 affects multiple organs due to the presence of ACE2 receptors, leading to severe immune responses like cytokine storms and resulting in conditions such as ARDS and MODS.
  • - The disease alters the microbiota, causing a loss of microbial diversity and an increase in harmful microbes, which contributes to ongoing symptoms in patients post-infection.
  • - A review will explore the immune system's role in the dysregulation seen during and after COVID-19, emphasizing the gut-brain connection and the need for new approaches to address chronic dysfunction.
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Severe Acute Respiratory Syndrome Coronavirus-2 (SARS-CoV-2) is the novel coronavirus responsible for worldwide coronavirus disease (COVID-19). We previously observed that Angiotensin-converting enzyme 2 (ACE2) and Dipeptidyl peptidase-4 (DPP4) are significantly overexpressed in naso-oropharyngeal swabs (NPS) of COVID-19 patients, suggesting their putative functional role in the disease progression. ACE2 and DPP4 overexpression in COVID-19 patients may be associated to epigenetic mechanism, such as miRNA differential expression.

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Accurate outcome detection in neuro-rehabilitative settings is crucial for appropriate long-term rehabilitative decisions in patients with disorders of consciousness (DoC). EEG measures derived from high-density EEG can provide helpful information regarding diagnosis and recovery in DoC patients. However, the accuracy rate of EEG biomarkers to predict the clinical outcome in DoC patients is largely unknown.

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Background: In the last two years, the SARS-CoV-2 pandemic has determined radical changes in human behaviors and lifestyles, with a drastic reduction in socialization due to physical distancing and self-isolation. These changes have also been reflected in the epidemiological patterns of common respiratory viruses. For this reason, early discrimination of respiratory viruses is important as new variants emerge.

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  • Sialoadhesin (CD169) is overexpressed in COVID-19 patients and may serve as a biomarker to predict disease progression and clinical outcomes.
  • A flow cytometry analysis revealed that CD169 RMFI was significantly elevated in COVID-19 patients compared to healthy donors, correlating with various immune markers and indicators of disease severity.
  • The spike protein of SARS-CoV-2 stimulates CD169 expression and related cytokine activity, suggesting its role in immune response evaluation and respiratory prognosis in COVID-19 cases.
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  • * Current scientific research on effective treatments for LHSN in TBI patients is limited, though it's hypothesized that an imbalance in brain activity, specifically hyperactivity in the left hemisphere, contributes to the condition.
  • * The study aims to test the effectiveness of repetitive Transcranial Magnetic Stimulation (rTMS) in reducing LHSN symptoms through a single-blind, randomized trial involving cognitive therapy over 15 days, ultimately providing novel empirical evidence on treatment efficacy for TBI patients.
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Background: Despite an impressive effort in clinical research, no standard therapeutic approach for coronavirus disease 2019 (COVID-19) patients has been established, highlighting the need to identify early biomarkers for predicting disease progression and new therapeutic interventions for patient management. The present study aimed to evaluate the involvement of the human endogenous retrovirus -W envelope (HERV-W ENV) in severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection considering recent findings that HERVs are activated in response to infectious agents and lead to various immunopathological effects. We analysed HERV-W ENV expression in blood cells of COVID-19 patients in correlation with clinical characteristics and have discussed its potential role in the outcome of the disease.

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  • COVID-19 causes significant immune system issues, including lung injury and cytokine storms, impacting patient outcomes.
  • Thymosin alpha 1 (Tα1) is used to help restore immune balance during COVID-19 treatment by affecting CD8+ T cells.
  • The study found that Tα1 treatment reduced cytokine levels and lymphocyte activation in COVID-19 patients, indicating its potential to stabilize the immune response during infection.
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Background: Left hemispatial neglect (LHN) is a neuropsychological syndrome often associated with right hemispheric stroke. Patients with LHN have difficulties in attending, responding, and consciously representing the right side of space. Various rehabilitation protocols have been proposed to reduce clinical symptoms related to LHN, using cognitive treatments, or on non-invasive brain stimulation.

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The aim of the present study was to evaluate the effect of a commercial direct-fed microbial (DFM) on aflatoxin B1 toxic effects, performance, and biochemical and immunologic parameters in broiler chickens. Ninety 1-day-old Cobb 500 male broiler chicks were raised in floor pens for a period of 21 days. Chicks were neck-tagged, individually weighed, and randomly allocated to one of three groups: Negative control (basal feed), aflatoxin B1 (basal feed + 2 ppm AFB1), and DFM (basal feed + 2 ppm AFB1 + direct-fed microbial).

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In our genomes there are thousands of copies of human endogenous retroviruses (HERVs) originated from the integration of exogenous retroviruses that infected germ line cells millions of years ago, and currently an altered expression of this elements has been associated to the onset, progression and acquisition of aggressiveness features of many cancers. The transcriptional reactivation of HERVs is mainly an effect of their responsiveness to some factors in cell microenvironment, such as nutrients, hormones and cytokines. We have already demonstrated that, under pressure of microenvironmental changes, HERV-K (HML-2) activation is required to maintain human melanoma cell plasticity and CD133+ cancer stem cells survival.

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To evaluate the effect of cellulosic polymers (CEL) and curcumin (CUR) on aflatoxin B1 (AFB1) toxic effects on performance, and the biochemical and immunological parameters in broiler chickens, 150 one-day-old male broiler chicks were randomly allocated into five groups with three replicates of 10 chickens per pen: Negative Control (feed); AFB1 (feed + 2 ppm AFB1); CUR (feed + 2 ppm AFB1 + Curcumin 0.2%); CEL (feed + 2 ppm AFB1 + 0.3% Cellulosic polymers); and, CEL + CUR (feed + 2 ppm AFB1 + 0.

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Abstract: New Zealand obese mice (NZO) are characterized by symptoms similar to human metabolic syndrome. Vanadium in different investigations showed anti-diabetic activity but until now an NZO mice model has not been tested with this element. The aim of this study was to investigate anti-diabetic activity of three vanadium compounds (VOSO4, VO(mal)2 and Na(VO(O2)2bpy) x 8H2O) in the NZO model.

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Primary stability is an indicator of subsequent osseointegration of dental implants. However, few studies have compared the implant stability among anatomical regions and bone types; thus, not enough data exist regarding the stability of implants placed in regenerated bone (RB). The present study evaluated primary and long-term stability of implants placed in RB and non-regenerated healed bone (HB).

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Evaluation of consciousness needs to be supported by the evidence of brain activation during external stimulation in patients with unresponsive wakefulness syndrome (UWS). Assessment of patients should include techniques that do not depend on overt motor responses and allow an objective investigation of the spontaneous patterns of brain activity. In particular, electroencephalography (EEG) coherence allows to easily measure functional relationships between pairs of neocortical regions and seems to be closely correlated with cognitive or behavioral measures.

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