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Authors = Malena M. Pérez

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23 pages, 8050 KiB  
Article
Plasma Sphingomyelin Disturbances: Unveiling Its Dual Role as a Crucial Immunopathological Factor and a Severity Prognostic Biomarker in COVID-19
by Diana Mota Toro, Pedro V. da Silva-Neto, Jonatan C. S. de Carvalho, Carlos A. Fuzo, Malena M. Pérez, Vinícius E. Pimentel, Thais F. C. Fraga-Silva, Camilla N. S. Oliveira, Glaucia R. Caruso, Adriana F. L. Vilela, Pedro Nobre-Azevedo, Thiago V. Defelippo-Felippe, Jamille G. M. Argolo, Augusto M. Degiovani, Fátima M. Ostini, Marley R. Feitosa, Rogerio S. Parra, Fernando C. Vilar, Gilberto G. Gaspar, José J. R. da Rocha, Omar Feres, Gabriel P. Costa, Sandra R. C. Maruyama, Elisa M. S. Russo, Ana Paula M. Fernandes, Isabel K. F. M. Santos, Adriana Malheiro, Ruxana T. Sadikot, Vânia L. D. Bonato, Cristina R. B. Cardoso, Marcelo Dias-Baruffi, Átila A. Trapé, Lúcia H. Faccioli, Carlos A. Sorgi and ImmunoCovid Consortium Groupadd Show full author list remove Hide full author list
Cells 2023, 12(15), 1938; https://doi.org/10.3390/cells12151938 - 26 Jul 2023
Cited by 5 | Viewed by 3333
Abstract
SARS-CoV-2 infection triggers distinct patterns of disease development characterized by significant alterations in host regulatory responses. Severe cases exhibit profound lung inflammation and systemic repercussions. Remarkably, critically ill patients display a “lipid storm”, influencing the inflammatory process and tissue damage. Sphingolipids (SLs) play [...] Read more.
SARS-CoV-2 infection triggers distinct patterns of disease development characterized by significant alterations in host regulatory responses. Severe cases exhibit profound lung inflammation and systemic repercussions. Remarkably, critically ill patients display a “lipid storm”, influencing the inflammatory process and tissue damage. Sphingolipids (SLs) play pivotal roles in various cellular and tissue processes, including inflammation, metabolic disorders, and cancer. In this study, we employed high-resolution mass spectrometry to investigate SL metabolism in plasma samples obtained from control subjects (n = 55), COVID-19 patients (n = 204), and convalescent individuals (n = 77). These data were correlated with inflammatory parameters associated with the clinical severity of COVID-19. Additionally, we utilized RNAseq analysis to examine the gene expression of enzymes involved in the SL pathway. Our analysis revealed the presence of thirty-eight SL species from seven families in the plasma of study participants. The most profound alterations in the SL species profile were observed in patients with severe disease. Notably, a predominant sphingomyelin (SM d18:1) species emerged as a potential biomarker for COVID-19 severity, showing decreased levels in the plasma of convalescent individuals. Elevated SM levels were positively correlated with age, hospitalization duration, clinical score, and neutrophil count, as well as the production of IL-6 and IL-8. Intriguingly, we identified a putative protective effect against disease severity mediated by SM (d18:1/24:0), while ceramide (Cer) species (d18:1/24:1) and (d18:1/24:0)were associated with increased risk. Moreover, we observed the enhanced expression of key enzymes involved in the SL pathway in blood cells from severe COVID-19 patients, suggesting a primary flow towards Cer generation in tandem with SM synthesis. These findings underscore the potential of SM as a prognostic biomarker for COVID-19 and highlight promising pharmacological targets. By targeting sphingolipid pathways, novel therapeutic strategies may emerge to mitigate the severity of COVID-19 and improve patient outcomes. Full article
(This article belongs to the Special Issue Sphingolipid Signaling and Human Disease 2022)
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22 pages, 3784 KiB  
Article
The Interplay among Glucocorticoid Therapy, Platelet-Activating Factor and Endocannabinoid Release Influences the Inflammatory Response to COVID-19
by Jonatan C. S. de Carvalho, Pedro V. da Silva-Neto, Diana M. Toro, Carlos A. Fuzo, Viviani Nardini, Vinícius E. Pimentel, Malena M. Pérez, Thais F. C. Fraga-Silva, Camilla N. S. Oliveira, Augusto M. Degiovani, Fátima M. Ostini, Marley R. Feitosa, Rogerio S. Parra, José J. R. da Rocha, Omar Feres, Fernando C. Vilar, Gilberto G. Gaspar, Isabel K. F. M. Santos, Ana P. M. Fernandes, Sandra R. Maruyama, Elisa M. S. Russo, Vânia L. D. Bonato, Cristina R. B. Cardoso, Marcelo Dias-Baruffi, Lúcia H. Faccioli, Carlos A. Sorgi and on behalf of the ImmunoCovid Study Groupadd Show full author list remove Hide full author list
Viruses 2023, 15(2), 573; https://doi.org/10.3390/v15020573 - 19 Feb 2023
Cited by 7 | Viewed by 4542
Abstract
COVID-19 is associated with a dysregulated immune response. Currently, several medicines are licensed for the treatment of this disease. Due to their significant role in inhibiting pro-inflammatory cytokines and lipid mediators, glucocorticoids (GCs) have attracted a great deal of attention. Similarly, the endocannabinoid [...] Read more.
COVID-19 is associated with a dysregulated immune response. Currently, several medicines are licensed for the treatment of this disease. Due to their significant role in inhibiting pro-inflammatory cytokines and lipid mediators, glucocorticoids (GCs) have attracted a great deal of attention. Similarly, the endocannabinoid (eCB) system regulates various physiological processes including the immunological response. Additionally, during inflammatory and thrombotic processes, phospholipids from cell membranes are cleaved to produce platelet-activating factor (PAF), another lipid mediator. Nonetheless, the effect of GCs on this lipid pathway during COVID-19 therapy is still unknown. This is a cross-sectional study involving COVID-19 patients (n = 200) and healthy controls (n = 35). Target tandem mass spectrometry of plasma lipid mediators demonstrated that COVID-19 severity affected eCBs and PAF synthesis. This increased synthesis of eCB was adversely linked with systemic inflammatory markers IL-6 and sTREM-1 levels and neutrophil counts. The use of GCs altered these lipid pathways by reducing PAF and increasing 2-AG production. Corroborating this, transcriptome analysis of GC-treated patients blood leukocytes showed differential modulation of monoacylglycerol lipase and phospholipase A2 gene expression. Altogether, these findings offer a breakthrough in our understanding of COVID-19 pathophysiology, indicating that GCs may promote additional protective pharmacological effects by influencing the eCB and PAF pathways involved in the disease course. Full article
(This article belongs to the Special Issue Host Targeted Therapeutics against Virus Infections)
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16 pages, 2532 KiB  
Article
The Severity of COVID-19 Affects the Plasma Soluble Levels of the Immune Checkpoint HLA-G Molecule
by Jéssica F. C. Cordeiro, Talita M. Fernandes, Diana M. Toro, Pedro V. da Silva-Neto, Vinícius E. Pimentel, Malena M. Pérez, Jonatan C. S. de Carvalho, Thais F. C. Fraga-Silva, Camilla N. S. Oliveira, Jamille G. M. Argolo, Augusto M. Degiovani, Fátima M. Ostini, Enrico F. Puginna, João S. da Silva, Isabel K. F. M. Santos, Vânia L. D. Bonato, Cristina R. B. Cardoso, Marcelo Dias-Baruffi, Lúcia H. Faccioli, Eduardo A. Donadi, Carlos A. Sorgi, Ana P. M. Fernandes and on behalf of the IMMUNOCOVID Study Groupadd Show full author list remove Hide full author list
Int. J. Mol. Sci. 2022, 23(17), 9736; https://doi.org/10.3390/ijms23179736 - 27 Aug 2022
Cited by 10 | Viewed by 3254
Abstract
The non-classical histocompatibility antigen G (HLA-G) is an immune checkpoint molecule that has been implicated in viral disorders. We evaluated the plasma soluble HLA-G (sHLA-G) in 239 individuals, arranged in COVID-19 patients (n = 189) followed up at home or in a [...] Read more.
The non-classical histocompatibility antigen G (HLA-G) is an immune checkpoint molecule that has been implicated in viral disorders. We evaluated the plasma soluble HLA-G (sHLA-G) in 239 individuals, arranged in COVID-19 patients (n = 189) followed up at home or in a hospital, and in healthy controls (n = 50). Increased levels of sHLA-G were observed in COVID-19 patients irrespective of the facility care, gender, age, and the presence of comorbidities. Compared with controls, the sHLA-G levels increased as far as disease severity progressed; however, the levels decreased in critically ill patients, suggesting an immune exhaustion phenomenon. Notably, sHLA-G exhibited a positive correlation with other mediators currently observed in the acute phase of the disease, including IL-6, IL-8 and IL-10. Although sHLA-G levels may be associated with an acute biomarker of COVID-19, the increased levels alone were not associated with disease severity or mortality due to COVID-19. Whether the SARS-CoV-2 per se or the innate/adaptive immune response against the virus is responsible for the increased levels of sHLA-G are questions that need to be further addressed. Full article
(This article belongs to the Special Issue The Immune Checkpoint HLA-G 2.0)
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20 pages, 1844 KiB  
Article
Matrix Metalloproteinases on Severe COVID-19 Lung Disease Pathogenesis: Cooperative Actions of MMP-8/MMP-2 Axis on Immune Response through HLA-G Shedding and Oxidative Stress
by Pedro V. da Silva-Neto, Valéria B. do Valle, Carlos A. Fuzo, Talita M. Fernandes, Diana M. Toro, Thais F. C. Fraga-Silva, Patrícia A. Basile, Jonatan C. S. de Carvalho, Vinícius E. Pimentel, Malena M. Pérez, Camilla N. S. Oliveira, Lilian C. Rodrigues, Victor A. F. Bastos, Sandra O. C. Tella, Ronaldo B. Martins, Augusto M. Degiovani, Fátima M. Ostini, Marley R. Feitosa, Rogerio S. Parra, Fernando C. Vilar, Gilberto G. Gaspar, José J. R. da Rocha, Omar Feres, Eurico Arruda, Sandra R. Maruyama, Elisa M. S. Russo, Angelina L. Viana, Isabel K. F. M. Santos, Vânia L. D. Bonato, Cristina R. B. Cardoso, Jose E. Tanus-Santos, Eduardo A. Donadi, Lucia H. Faccioli, Marcelo Dias-Baruffi, Ana P. M. Fernandes, Raquel F. Gerlach, Carlos A. Sorgi and on behalf of the IMMUNOCOVID Study Groupadd Show full author list remove Hide full author list
Biomolecules 2022, 12(5), 604; https://doi.org/10.3390/biom12050604 - 19 Apr 2022
Cited by 43 | Viewed by 19168
Abstract
Patients with COVID-19 predominantly have a respiratory tract infection and acute lung failure is the most severe complication. While the molecular basis of SARS-CoV-2 immunopathology is still unknown, it is well established that lung infection is associated with hyper-inflammation and tissue damage. Matrix [...] Read more.
Patients with COVID-19 predominantly have a respiratory tract infection and acute lung failure is the most severe complication. While the molecular basis of SARS-CoV-2 immunopathology is still unknown, it is well established that lung infection is associated with hyper-inflammation and tissue damage. Matrix metalloproteinases (MMPs) contribute to tissue destruction in many pathological situations, and the activity of MMPs in the lung leads to the release of bioactive mediators with inflammatory properties. We sought to characterize a scenario in which MMPs could influence the lung pathogenesis of COVID-19. Although we observed high diversity of MMPs in lung tissue from COVID-19 patients by proteomics, we specified the expression and enzyme activity of MMP-2 in tracheal-aspirate fluid (TAF) samples from intubated COVID-19 and non-COVID-19 patients. Moreover, the expression of MMP-8 was positively correlated with MMP-2 levels and possible shedding of the immunosuppression mediator sHLA-G and sTREM-1. Together, overexpression of the MMP-2/MMP-8 axis, in addition to neutrophil infiltration and products, such as reactive oxygen species (ROS), increased lipid peroxidation that could promote intensive destruction of lung tissue in severe COVID-19. Thus, the inhibition of MMPs can be a novel target and promising treatment strategy in severe COVID-19. Full article
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17 pages, 4140 KiB  
Article
sTREM-1 Predicts Disease Severity and Mortality in COVID-19 Patients: Involvement of Peripheral Blood Leukocytes and MMP-8 Activity
by Pedro V. da Silva-Neto, Jonatan C. S. de Carvalho, Vinícius E. Pimentel, Malena M. Pérez, Diana M. Toro, Thais F. C. Fraga-Silva, Carlos A. Fuzo, Camilla N. S. Oliveira, Lilian C. Rodrigues, Jamille G. M. Argolo, Ingryd Carmona-Garcia, Nicola T. Neto, Camila O. S. Souza, Talita M. Fernandes, Victor A. F. Bastos, Augusto M. Degiovani, Leticia F. Constant, Fátima M. Ostini, Marley R. Feitosa, Rogerio S. Parra, Fernando C. Vilar, Gilberto G. Gaspar, José J. R. da Rocha, Omar Feres, Fabiani G. Frantz, Raquel F. Gerlach, Sandra R. Maruyama, Elisa M. S. Russo, Angelina L. Viana, Ana P. M. Fernandes, Isabel K. F. M. Santos, Vânia L. D. Bonato, Antonio L. Boechat, Adriana Malheiro, Ruxana T. Sadikot, Marcelo Dias-Baruffi, Cristina R. B. Cardoso, Lúcia H. Faccioli, Carlos A. Sorgi and on behalf of the IMUNOCOVID Study Groupadd Show full author list remove Hide full author list
Viruses 2021, 13(12), 2521; https://doi.org/10.3390/v13122521 - 15 Dec 2021
Cited by 37 | Viewed by 5160
Abstract
Uncontrolled inflammatory responses play a critical role in coronavirus disease (COVID-19). In this context, because the triggering-receptor expressed on myeloid cells-1 (TREM-1) is considered an intrinsic amplifier of inflammatory signals, this study investigated the role of soluble TREM-1 (sTREM-1) as a biomarker of [...] Read more.
Uncontrolled inflammatory responses play a critical role in coronavirus disease (COVID-19). In this context, because the triggering-receptor expressed on myeloid cells-1 (TREM-1) is considered an intrinsic amplifier of inflammatory signals, this study investigated the role of soluble TREM-1 (sTREM-1) as a biomarker of the severity and mortality of COVID-19. Based on their clinical scores, we enrolled COVID-19 positive patients (n = 237) classified into mild, moderate, severe, and critical groups. Clinical data and patient characteristics were obtained from medical records, and their plasma inflammatory mediator profiles were evaluated with immunoassays. Plasma levels of sTREM-1 were significantly higher among patients with severe disease compared to all other groups. Additionally, levels of sTREM-1 showed a significant positive correlation with other inflammatory parameters, such as IL-6, IL-10, IL-8, and neutrophil counts, and a significant negative correlation was observed with lymphocyte counts. Most interestingly, sTREM-1 was found to be a strong predictive biomarker of the severity of COVID-19 and was related to the worst outcome and death. Systemic levels of sTREM-1 were significantly correlated with the expression of matrix metalloproteinases (MMP)-8, which can release TREM-1 from the surface of peripheral blood cells. Our findings indicated that quantification of sTREM-1 could be used as a predictive tool for disease outcome, thus improving the timing of clinical and pharmacological interventions in patients with COVID-19. Full article
(This article belongs to the Special Issue COVID-19—Advances in Clinical and Epidemiological Aspects)
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