Publications by authors named "Antunes D"

Citrullination, a post-translational modification (PTM), plays a critical role in rheumatoid arthritis (RA) by triggering immune responses to citrullinated self-antigens. Some HLA-DRB1 genes encode molecules with the shared epitope (QKRAA/QRRAA) sequence in the peptide-binding groove which preferentially presents citrulline-modified peptides, like vimentin, that intensifies the immune response in RA. In this study, we used computational approaches to evaluate intermolecular interactions between vimentin peptide-ligands (with/without PTM) and HLA-DRB1 alleles associated with a significantly increased risk for RA development.

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The rising incidence of fungal infections coupled with limited treatment options underscores the urgent need for novel antifungal therapies. Riboswitches, particularly thiamin pyrophosphate (TPP) class, have emerged as promising antimicrobial targets. This study presents a comprehensive genome-wide analysis of TPP riboswitches in 156 medically relevant fungi utilizing advanced covariance models (CMs) tailored for fungal sequences.

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Background:  Carpal tunnel syndrome (CTS) has already been described as a possible form of neural leprosy presentation. However, the median nerve can be involved in this neuropathy in proximal segments and, sometimes, with an asymmetric impairment of the digital branches.

Objective:  To detail the pattern of median nerve impairment through nerve conduction study (NCS) and ultrasound evaluation.

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  • The study compared peak oxygen uptake (V̇O2peak), peak heart rate (HRpeak), and peak O2 pulse in hand-cyclists with spinal cord injury during two different tests on the same day.
  • Eight competitive hand-cyclists performed a maximal incremental test and a verification test at 100% V̇O2peak speed, finding that V̇O2peak was significantly higher in the verification test.
  • Despite similar HRpeak values in both tests, the verification test showed a higher peak O2 pulse, indicating its importance for accurately measuring V̇O2peak in this population.
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This study aimed to identify laboratory factors predicting leprosy relapse (LR) after multi-drug therapy (MDT). A case-control study included 80 patients treated with MDT at a national reference center over 12 years. The Relapse Group had 40 patients who relapsed after an average of 89.

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Background: Falls are known to cause injuries ranging from minor to severe, resulting in local or systemic lesions. Addressing prognostic factors associated with falls is crucial for preventing this adverse event through the implementation of patient care protocols. This study aimed to explore the epidemiological, clinical, and pharmacological prognostic factors influencing falls in adult and elderly patients, assessing the timing and impact of these factors using survival curve analysis.

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Background: Treatment failure (TF) in leprosy following multidrug therapy (MDT) presents a significant challenge. The current World Health Organization (WHO) fixed-duration MDT regimen, based on lesion count, might not be adequate. Leprosy lacks clear-cut objective cure criteria, and the predictive value of post-MDT histopathological findings remains uncertain.

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l-asparaginase is an enzyme catalyzing the hydrolysis of l-asparagine into l-aspartate and ammonia, which is of great therapeutic importance in tumor treatment. However, commercially available enzymes are associated with adverse effects, and searching for a new l-asparaginase with better pharmaceutical properties was the aim of this work. The coding sequence for l-asparaginase (MsA) was cloned and expressed.

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  • This study focuses on cell wall nanoparticles (CWNPs) derived from fungal hyphal cell walls to explore how they affect macrophage immune responses.
  • CWNPs were produced using various inhibitors, leading to distinct types that showed different impacts on macrophage activation and viability.
  • The findings suggest that modifying fungal cell walls results in nanoparticles with unique properties, which may influence immune reactions and therapeutic strategies during antifungal treatments.
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  • - A retrospective study was conducted to analyze 10 new cases of canalicular adenoma (CAD), reviewing medical records and histological slides from 2014-2024.
  • - The patients, primarily female with an average age of 61.2 years, presented mostly with solitary, asymptomatic nodules on the upper lip, and some experienced slight pain.
  • - The study emphasized distinct microscopic features of CAD and the utility of specific immunohistochemical markers in distinguishing CAD from other types of salivary gland tumors.
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Producing food in quantity and quality to meet the growing population demand is a challenge for the coming years. In addition to the need to improve the use and efficiency of conventional agricultural inputs, we face climate change and disparity in access to food. In this context, creating innovative, efficient, and ecologically approaches is necessary to transform this global scenario.

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Drug repositioning is an important therapeutic strategy for treating breast cancer. Hsp90β chaperone is an attractive target for inhibiting cell progression. Its structure has a disordered and flexible linker region between the N-terminal and central domains.

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Nanotechnology has brought significant advancements to agriculture through the development of engineered nanomaterials (ENPs). Silver nanoparticles (AgNPs) capped with polysaccharides have been applied in agricultural diagnostics, crop pest management, and seed priming. Hyaluronic acid (HA), a natural polysaccharide with bactericidal properties, has been considered a growth regulator for plant tissues and an inducer of systemic resistance against plant diseases.

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Cellular immunity relies on the ability of a T-cell receptor (TCR) to recognize a peptide (p) presented by a class I major histocompatibility complex (MHC) receptor on the surface of a cell. The TCR-peptide-MHC (TCRpMHC) interaction is a crucial step in activating T-cells, and the structural characteristics of these molecules play a significant role in determining the specificity and affinity of this interaction. Hence, obtaining 3D structures of TCRpMHC complexes offers valuable insights into various aspects of cellular immunity and can facilitate the development of T-cell-based immunotherapies.

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Social learning is learning from the observation of how others interact with the environment. However, in nature, individuals often need to process serial social information and may favour either the most recent information (recency bias), constantly updating knowledge to match the environment, or the information that appeared first in the series (primacy bias), which may slow down adjustment to environmental change. Mate-copying is a widespread form of social learning in a mate choice context related to conformity in mate choice, and where a naive individual develops a preference for a given mate (or mate phenotype) seen being chosen by conspecifics.

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  • Leprosy is a disease that can cause nerve problems, and this study looked at how to find these issues using ultrasound (US) imaging.
  • The researchers compared the nerves of 53 leprosy patients with 53 healthy people, focusing on certain nerves in the arm and leg.
  • They found that many leprosy patients had thicker nerves, especially in the ulnar and tibial nerves, which helps doctors better diagnose and treat leprosy.
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Introduction: Ureteroscopy lithotripsy (URSL) presents a therapeutic option for patients with proximal ureteral calculi warranting active removal. This systematic review and meta-analysis aimed to assess the efficacy of the reverse Trendelenburg (RT) position during this procedure.

Materials: A comprehensive literature search was conducted across PubMed, Embase, and Cochrane databases to identify randomized controlled trials and observational studies comparing RT versus standard positioning (STD) in patients undergoing URSL for proximal ureteral stones.

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Malaria, caused by Plasmodium protozoa with as the most virulent species, continues to pose significant health challenges. Despite the availability of effective antimalarial drugs, the emergence of resistance has heightened the urgency for developing novel therapeutic compounds. In this study, we investigated the enoyl-ACP reductase enzyme of (PfENR) as a promising target for antimalarial drug discovery.

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The cellular immune response comprises several processes, with the most notable ones being the binding of the peptide to the Major Histocompability Complex (MHC), the peptide-MHC (pMHC) presentation to the surface of the cell, and the recognition of the pMHC by the T-Cell Receptor. Identifying the most potent peptide targets for MHC binding, presentation and T-cell recognition is vital for developing peptide-based vaccines and T-cell-based immunotherapies. Data-driven tools that predict each of these steps have been developed, and the availability of mass spectrometry (MS) datasets has facilitated the development of accurate Machine Learning (ML) methods for class-I pMHC binding prediction.

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Recommended standard treatment for leprosy is multidrugtherapy (MDT/WHO), consisting Rifampicin+Dapsone+Clofazimine. Other medications are recommended in cases of resistance, adverse reactions and intolerances, including ROM regimen, Rifampicin+Ofloxacin+Minocycline. Therefore, pharmacovigilance is an important tool in understanding these adverse drug reactions (ADRs), supporting pharmacotherapy management and medication safety.

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Background: Several risk factors have been involved in the poor clinical progression of coronavirus disease-19 (COVID-19), including ageing, and obesity. SARS-CoV-2 may compromise lung function through cell damage and paracrine inflammation; and obesity has been associated with premature immunosenescence, microbial translocation, and dysfunctional innate immune responses leading to poor immune response against a range of viruses and bacterial infections. Here, we have comprehensively characterized the immunosenescence, microbial translocation, and immune dysregulation established in hospitalized COVID-19 patients with different degrees of body weight.

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The reduction of carbon dioxide emissions is crucial to reduce the atmospheric greenhouse effect, fighting climate change and global warming. Electrochemical CO reduction is one of the most promising carbon capture and utilization technologies, that can be powered by solar energy and used to make added-value chemicals and green fuels, providing grid-stability, energy security, and environmental benefits. A two-dimensional finite-elements model for porous electrodes was developed and validated against experimental data, allowing the design and performance improvement of a porous zinc cathode morphology and its operational conditions for an electrolyzer producing syngas via the co-electrolysis of CO and water.

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