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Authors = Alexandre Morrot

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20 pages, 6852 KiB  
Article
Inhibition of Microbicidal Activity of Canine Macrophages DH82 Cell Line by Capsular Polysaccharides from Cryptococcus neoformans
by Isabel F. LaRocque-de-Freitas, Elias Barbosa da Silva-Junior, Leticia Paixão Gemieski, Beatriz da Silva Dias Lima, Israel Diniz-Lima, Aislan de Carvalho Vivarini, Ulisses G. Lopes, Leonardo Freire-de-Lima, Alexandre Morrot, José Osvaldo Previato, Lucia Mendonça-Previato, Lucia Helena Pinto-da-Silva, Celio G. Freire-de-Lima and Debora Decote-Ricardo
J. Fungi 2024, 10(5), 339; https://doi.org/10.3390/jof10050339 - 8 May 2024
Cited by 5 | Viewed by 2127
Abstract
Cryptococcus neoformans is a lethal fungus that primarily affects the respiratory system and the central nervous system. One of the main virulence factors is the capsule, constituted by the polysaccharides glucuronoxylomannan (GXM) and glucuronoxylomanogalactan (GXMGal). Polysaccharides are immunomodulators. One of the target cell [...] Read more.
Cryptococcus neoformans is a lethal fungus that primarily affects the respiratory system and the central nervous system. One of the main virulence factors is the capsule, constituted by the polysaccharides glucuronoxylomannan (GXM) and glucuronoxylomanogalactan (GXMGal). Polysaccharides are immunomodulators. One of the target cell populations for modulation are macrophages, which are part of the first line of defense and important for innate and adaptive immunity. It has been reported that macrophages can be modulated to act as a “Trojan horse,” taking phagocytosed yeasts to strategic sites or having their machinery activation compromised. The scarcity of information on canine cryptococcosis led us to assess whether the purified capsular polysaccharides from C. neoformans would be able to modulate the microbicidal action of macrophages. In the present study, we observed that the capsular polysaccharides, GXM, GXMGal, or capsule total did not induce apoptosis in the DH82 macrophage cell line. However, it was possible to demonstrate that the phagocytic activity was decreased after treatment with polysaccharides. In addition, recovered yeasts from macrophages treated with polysaccharides after phagocytosis could be cultured, showing that their viability was not altered. The polysaccharides led to a reduction in ROS production and the mRNA expression of IL-12 and IL-6. We observed that GXMGal inhibits MHC class II expression and GXM reduces ERK phosphorylation. In contrast, GXMGal and GXM were able to increase the PPAR-γ expression. Furthermore, our data suggest that capsular polysaccharides can reduce the microbicidal activity of canine macrophages DH82. Full article
(This article belongs to the Special Issue Cryptococcus Infections and Pathogenesis)
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19 pages, 2890 KiB  
Article
A Comparative Analysis of Innate Immune Responses and the Structural Characterization of Spike from SARS-CoV-2 Gamma Variants and Subvariants
by Aline Miranda Scovino, Elizabeth Chen Dahab, Israel Diniz-Lima, Etiele de Senna Silveira, Shana Priscila Coutinho Barroso, Karina Martins Cardoso, Dirlei Nico, Gustavo José Makhoul, Elias Barbosa da Silva-Junior, Celio Geraldo Freire-de-Lima, Leonardo Freire-de-Lima, Leonardo Marques da Fonseca, Natalia Valente, Valeria Nacife, Ana Machado, Mia Araújo, Gustavo Fioravanti Vieira, Alex Pauvolid-Corrêa, Marilda Siqueira and Alexandre Morrot
Microorganisms 2024, 12(4), 720; https://doi.org/10.3390/microorganisms12040720 - 2 Apr 2024
Viewed by 2357
Abstract
The SARS-CoV-2 P.1 variant, responsible for an outbreak in Manaus, Brazil, is distinguished by 12 amino acid differences in the S protein, potentially increasing its ACE-2 affinity and immune evasion capability. We investigated the innate immune response of this variant compared to the [...] Read more.
The SARS-CoV-2 P.1 variant, responsible for an outbreak in Manaus, Brazil, is distinguished by 12 amino acid differences in the S protein, potentially increasing its ACE-2 affinity and immune evasion capability. We investigated the innate immune response of this variant compared to the original B.1 strain, particularly concerning cytokine production. Blood samples from three severe COVID-19 patients were analyzed post-infection with both strains. Results showed no significant difference in cytokine production of mononuclear cells and neutrophils for either variant. While B.1 had higher cytopathogenicity, neither showed viral replication in mononuclear cells. Structural analyses of the S protein highlighted physicochemical variations, which might be linked to the differences in infectivity between the strains. Our studies point to the increased infectivity of P.1 could stem from altered immunogenicity and receptor-binding affinity. Full article
(This article belongs to the Special Issue Parasitic Infection and Host Immunity, 2nd Edition)
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8 pages, 1084 KiB  
Opinion
Bittersweet Sugars: How Unusual Glycan Structures May Connect Epithelial-to-Mesenchymal Transition and Multidrug Resistance in Cancer
by Leonardo Marques da Fonseca, Israel Diniz-Lima, Marcos André Rodrigues da Costa Santos, Tatiany Nunes Franklim, Kelli Monteiro da Costa, Ariely Costa dos Santos, Alexandre Morrot, Debora Decote-Ricardo, Raphael do Carmo Valente, Celio Geraldo Freire-de-Lima, Jhenifer Santos dos Reis and Leonardo Freire-de-Lima
Medicines 2023, 10(6), 36; https://doi.org/10.3390/medicines10060036 - 14 Jun 2023
Cited by 2 | Viewed by 1808
Abstract
Cancer cells are characterized by metabolic reprogramming, which enables their survival in of-ten inhospitable conditions. A very well-documented example that has gained attraction in re-cent years and is already considered a hallmark of transformed cells is the reprogramming of carbohydrate metabolism. Such a [...] Read more.
Cancer cells are characterized by metabolic reprogramming, which enables their survival in of-ten inhospitable conditions. A very well-documented example that has gained attraction in re-cent years and is already considered a hallmark of transformed cells is the reprogramming of carbohydrate metabolism. Such a feature, in association with the differential expression of en-zymes involved in the biosynthesis of glycoconjugates, generically known as glycosyltransfer-ases, contributes to the expression of structurally atypical glycans when compared to those ex-pressed in healthy tissues. The latest studies have demonstrated that glycophenotypic alterations are capable of modulating multifactorial events essential for the development and/or progres-sion of the disease. Herein, we will address the importance of glycobiology in modern medi-cine, focusing on the ability of unusual/truncated O-linked glycans to modulate two complex and essential phenomena for cancer progression: the acquisition of the multidrug resistance (MDR) phenotype and the activation of molecular pathways associated with the epithelial–mesenchymal transition (EMT) process, an event deeply linked with cancer metastasis. Full article
(This article belongs to the Section Cancer Biology and Anticancer Therapeutics)
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18 pages, 3284 KiB  
Article
Increased Trypanosoma cruzi Growth during Infection of Macrophages Cultured on Collagen I Matrix
by Jorgete Logullo, Israel Diniz-Lima, Juliana Dutra B. Rocha, Suzana Cortê-Real, Elias Barbosa da Silva-Júnior, Joyce Cristina Guimarães-de-Oliveira, Alexandre Morrot, Leonardo Marques da Fonseca, Leonardo Freire-de-Lima, Debora Decote-Ricardo and Celio Geraldo Freire-de-Lima
Life 2023, 13(4), 1063; https://doi.org/10.3390/life13041063 - 21 Apr 2023
Cited by 3 | Viewed by 2461
Abstract
The interactions between cell and cellular matrix confers plasticity to each body tissue, influencing the cellular migratory capacity. Macrophages rely on motility to promote their physiological function. These phagocytes are determinant for the control of invasive infections, and their immunological role largely depends [...] Read more.
The interactions between cell and cellular matrix confers plasticity to each body tissue, influencing the cellular migratory capacity. Macrophages rely on motility to promote their physiological function. These phagocytes are determinant for the control of invasive infections, and their immunological role largely depends on their ability to migrate and adhere to tissue. Therefore, they interact with the components of the extracellular matrix through their adhesion receptors, conferring morphological modifications that change their shape during migration. Nevertheless, the need to use in vitro cell growth models with the conditioning of three-dimensional synthetic matrices to mimic the dynamics of cell-matrix interaction has been increasingly studied. This becomes more important to effectively understand the changes occurring in phagocyte morphology in the context of infection progression, such as in Chagas disease. This disease is caused by the intracellular pathogen Trypanosoma cruzi, capable of infecting macrophages, determinant cells in the anti-trypanosomatid immunity. In the present study, we sought to understand how an in vitro extracellular matrix model interferes with T. cruzi infection in macrophages. Using different time intervals and parasite ratios, we evaluated the cell morphology and parasite replication rate in the presence of 3D collagen I matrix. Nevertheless, microscopy techniques such as scanning electron microscopy were crucial to trace macrophage-matrix interactions. In the present work, we demonstrated for the first time that the macrophage-matrix interaction favors T. cruzi in vitro replication and the release of anti-inflammatory cytokines during macrophage infection, in addition to drastically altering the morphology of the macrophages and promoting the formation of migratory macrophages. Full article
(This article belongs to the Special Issue Interactions between Microorganisms, Their Environment and Host)
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3 pages, 203 KiB  
Editorial
Special Issue: “Parasitic Infection and Host Immunity”: Editorial
by Debora Decote-Ricardo, Danielle de Oliveira Nascimento, Leonardo Freire-de-Lima, Alexandre Morrot and Celio Geraldo Freire-de-Lima
Microorganisms 2023, 11(4), 1027; https://doi.org/10.3390/microorganisms11041027 - 14 Apr 2023
Viewed by 1268
Abstract
Parasite–host interactions depend on a complex interplay between the metabolism of the parasite, their antigens, and the host immune response system [...] Full article
(This article belongs to the Special Issue Parasitic Infection and Host Immunity)
18 pages, 4363 KiB  
Review
The Blessed Union of Glycobiology and Immunology: A Marriage That Worked
by Jhenifer Santos dos Reis, Israel Diniz-Lima, Marcos André Rodrigues da Costa Santos, Pedro Marçal Barcelos, Kelli Monteiro da Costa, Raphael do Carmo Valente, Lorrane de Souza Chaves, Luma Petel de Campos, Ariely Costa dos Santos, Rafaela Gomes Correia de Lima, Debora Decote-Ricardo, Alexandre Morrot, Jose Osvaldo Previato, Lucia Mendonça-Previato, Celio Geraldo Freire-de-Lima, Leonardo Marques da Fonseca and Leonardo Freire-de-Lima
Medicines 2023, 10(2), 15; https://doi.org/10.3390/medicines10020015 - 19 Jan 2023
Cited by 2 | Viewed by 3676
Abstract
In this article, we discuss the main aspects regarding the recognition of cell surface glycoconjugates and the immunomodulation of responses against the progression of certain pathologies, such as cancer and infectious diseases. In the first part, we talk about different aspects of glycoconjugates [...] Read more.
In this article, we discuss the main aspects regarding the recognition of cell surface glycoconjugates and the immunomodulation of responses against the progression of certain pathologies, such as cancer and infectious diseases. In the first part, we talk about different aspects of glycoconjugates and delve deeper into the importance of N-glycans in cancer immunotherapy. Then, we describe two important lectin families that have been very well studied in the last 20 years. Examples include the sialic acid-binding immunoglobulin (Ig)-like lectins (siglecs), and galectins. Finally, we discuss a topic that needs to be better addressed in the field of glycoimmunology: the impact of oncofetal antigens on the cells of the immune system. New findings in this area are of great importance for advancement, especially in the field of oncology, since it is already known that cellular interactions mediated by carbohydrate–carbohydrate and/or carbohydrate proteins are able to modulate the progression of different types of cancer in events that compromise the functionality of the immune responses. Full article
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21 pages, 2284 KiB  
Article
Trypanosoma brucei rhodesiense Inhibitor of Cysteine Peptidase (ICP) Is Required for Virulence in Mice and to Attenuate the Inflammatory Response
by Tatiana F. R. Costa, Amy Goundry, Alexandre Morrot, Dennis J. Grab, Jeremy C. Mottram and Ana Paula C. A. Lima
Int. J. Mol. Sci. 2023, 24(1), 656; https://doi.org/10.3390/ijms24010656 - 30 Dec 2022
Cited by 3 | Viewed by 2283
Abstract
The protozoan Trypanosoma brucei rhodesiense causes Human African Trypanosomiasis, also known as sleeping sickness, and penetrates the central nervous system, leading to meningoencephalitis. The Cathepsin L-like cysteine peptidase of T. b. rhodesiense has been implicated in parasite penetration of the blood–brain barrier and [...] Read more.
The protozoan Trypanosoma brucei rhodesiense causes Human African Trypanosomiasis, also known as sleeping sickness, and penetrates the central nervous system, leading to meningoencephalitis. The Cathepsin L-like cysteine peptidase of T. b. rhodesiense has been implicated in parasite penetration of the blood–brain barrier and its activity is modulated by the chagasin-family endogenous inhibitor of cysteine peptidases (ICP). To investigate the role of ICP in T. b. rhodesiense bloodstream form, ICP-null (Δicp) mutants were generated, and lines re-expressing ICPicp:ICP). Lysates of Δicp displayed increased E-64-sensitive cysteine peptidase activity and the mutant parasites traversed human brain microvascular endothelial cell (HBMEC) monolayers in vitro more efficiently. Δicp induced E-selectin in HBMECs, leading to the adherence of higher numbers of human neutrophils. In C57BL/6 mice, no Δicp parasites could be detected in the blood after 6 days, while mice infected with wild-type (WT) or Δicp:ICP displayed high parasitemia, peaking at day 12. In mice infected with Δicp, there was increased recruitment of monocytes to the site of inoculation and higher levels of IFN-γ in the spleen. At day 14, mice infected with Δicp exhibited higher preservation of the CD4+, CD8+, and CD19+ populations in the spleen, accompanied by sustained high IFN-γ, while NK1.1+ populations receded nearly to the levels of uninfected controls. We propose that ICP helps to downregulate inflammatory responses that contribute to the control of infection. Full article
(This article belongs to the Special Issue Peptidases: Role and Function in Health and Disease)
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14 pages, 4503 KiB  
Article
Pulmonary Fibrosis and Hypereosinophilia in TLR9-/- Mice Infected by Cryptococcus gattii
by Elias Barbosa da Silva-Junior, Israel Diniz-Lima, Amanda Couto Silva, Joyce Cristina Guimarães-de-Oliveira, Alexandre Morrot, Leonardo Freire-de-Lima, Leonardo Marques da Fonseca, Lycia de Brito-Gitirana, Debora Decote-Ricardo, Herbert Leonel de Matos Guedes and Celio Geraldo Freire-de-Lima
Pathogens 2022, 11(9), 987; https://doi.org/10.3390/pathogens11090987 - 29 Aug 2022
Cited by 6 | Viewed by 2998
Abstract
Cryptococcus gattii is a worldwide-distributed basidiomycetous yeast that can infect immunocompetent hosts. However, little is known about the mechanisms involved in the disease. The innate immune response is essential to the control of infections by microorganisms. Toll-like receptor 9 (TLR9) is an [...] Read more.
Cryptococcus gattii is a worldwide-distributed basidiomycetous yeast that can infect immunocompetent hosts. However, little is known about the mechanisms involved in the disease. The innate immune response is essential to the control of infections by microorganisms. Toll-like receptor 9 (TLR9) is an innate immune receptor, classically described as a non-methylated DNA recognizer and associated with bacteria, protozoa and opportunistic mycosis infection models. Previously, our group showed that TLR9-/- mice were more susceptible to C. gattii after 21 days of infection. However, some questions about the innate immunity involving TLR9 response against C. gattii remain unknown. In order to investigate the systemic cryptococcal infection, we evaluated C57BL/6 mice and C57BL/6 TLR9-/- after intratracheal infection with 104C. gattii yeasts for 21 days. Our data evidenced that TLR9-/- was more susceptible to C. gattii. TLR9-/- mice had hypereosinophilia in pulmonary mixed cellular infiltrate, severe bronchiolitis and vasculitis and type 2 alveolar cell hyperplasia. In addition, TLR9-/- mice developed severe pulmonary fibrosis and areas with strongly birefringent fibers. Together, our results corroborate the hypothesis that TLR9 is important to support the Th1/Th17 response against C. gattii infection in the murine experimental model. Full article
(This article belongs to the Special Issue Advanced Research on Cryptococcus and Cryptococcosis)
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27 pages, 1998 KiB  
Review
Cryptococcus: History, Epidemiology and Immune Evasion
by Israel Diniz-Lima, Leonardo Marques da Fonseca, Elias Barbosa da Silva-Junior, Joyce Cristina Guimarães-de-Oliveira, Leonardo Freire-de-Lima, Danielle Oliveira Nascimento, Alexandre Morrot, Jose Osvaldo Previato, Lucia Mendonça-Previato, Debora Decote-Ricardo and Celio Geraldo Freire-de-Lima
Appl. Sci. 2022, 12(14), 7086; https://doi.org/10.3390/app12147086 - 13 Jul 2022
Cited by 15 | Viewed by 9284
Abstract
Cryptococcosis is a disease caused by the pathogenic fungi Cryptococcus neoformans and Cryptococcus gattii, both environmental fungi that cause severe pneumonia and may even lead to cryptococcal meningoencephalitis. Although C. neoformans affects more fragile individuals, such as immunocompromised hosts through opportunistic infections, [...] Read more.
Cryptococcosis is a disease caused by the pathogenic fungi Cryptococcus neoformans and Cryptococcus gattii, both environmental fungi that cause severe pneumonia and may even lead to cryptococcal meningoencephalitis. Although C. neoformans affects more fragile individuals, such as immunocompromised hosts through opportunistic infections, C. gattii causes a serious indiscriminate primary infection in immunocompetent individuals. Typically seen in tropical and subtropical environments, C. gattii has increased its endemic area over recent years, largely due to climatic factors that favor contagion in warmer climates. It is important to point out that not only C. gattii, but the Cryptococcus species complex produces a polysaccharidic capsule with immunomodulatory properties, enabling the pathogenic species of Cryptococccus to subvert the host immune response during the establishment of cryptococcosis, facilitating its dissemination in the infected organism. C. gattii causes a more severe and difficult-to-treat infection, with few antifungals eliciting an effective response during chronic treatment. Much of the immunopathology of this cryptococcosis is still poorly understood, with most studies focusing on cryptococcosis caused by the species C. neoformans. C. gattii became more important in the epidemiological scenario with the outbreaks in the Pacific Northwest of the United States, which resulted in phylogenetic studies of the virulent variant responsible for the severe infection in the region. Since then, the study of cryptococcosis caused by C. gattii has helped researchers understand the immunopathological aspects of different variants of this pathogen. Full article
(This article belongs to the Section Applied Microbiology)
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9 pages, 947 KiB  
Review
Cellular Stress and Senescence Induction during Trypanosoma cruzi Infection
by Kamila Guimarães-Pinto, Jesuíno R. M. Ferreira, André L. A. da Costa, Alexandre Morrot, Leonardo Freire-de-Lima, Debora Decote-Ricardo, Celio Geraldo Freire-de-Lima and Alessandra A. Filardy
Trop. Med. Infect. Dis. 2022, 7(7), 129; https://doi.org/10.3390/tropicalmed7070129 - 11 Jul 2022
Cited by 7 | Viewed by 2765
Abstract
Chagas disease (CD) is a neglected tropical disease caused by Trypanosoma cruzi infection that, despite being discovered over a century ago, remains a public health problem, mainly in developing countries. Since T. cruzi can infect a wide range of mammalian host cells, parasite–host [...] Read more.
Chagas disease (CD) is a neglected tropical disease caused by Trypanosoma cruzi infection that, despite being discovered over a century ago, remains a public health problem, mainly in developing countries. Since T. cruzi can infect a wide range of mammalian host cells, parasite–host interactions may be critical to infection outcome. The intense immune stimulation that helps the control of the parasite’s replication and dissemination may also be linked with the pathogenesis and symptomatology worsening. Here, we discuss the findings that support the notion that excessive immune system stimulation driven by parasite persistence might elicit a progressive loss and collapse of immune functions. In this context, cellular stress and inflammatory responses elicited by T. cruzi induce fibroblast and other immune cell senescence phenotypes that may compromise the host’s capacity to control the magnitude of T. cruzi-induced inflammation, contributing to parasite persistence and CD progression. A better understanding of the steps involved in the induction of this chronic inflammatory status, which disables host defense capacity, providing an extra advantage to the parasite and predisposing infected hosts prematurely to immunosenescence, may provide insights to designing and developing novel therapeutic approaches to prevent and treat Chagas disease. Full article
(This article belongs to the Section Vector-Borne Diseases)
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9 pages, 353 KiB  
Commentary
The Sweet Side of Fungal Infections: Structural Glycan Diversity and Its Importance for Pathogenic Adaptation
by Israel Diniz-Lima, Leonardo Marques da Fonseca, Jhenifer Santos dos Reis, Marcos André Rodrigues da Costa Santos, Kelli Monteiro da Costa, Carlos Antonio do Nascimento Santos, Pedro Marçal Barcelos, Kamila Guimarães-Pinto, Alessandra Almeida Filardy, Marco Edilson Freire-de-Lima, Debora Decote-Ricardo, Alexandre Morrot, Celio Geraldo Freire-de-Lima and Leonardo Freire-de-Lima
Medicines 2022, 9(6), 37; https://doi.org/10.3390/medicines9060037 - 16 Jun 2022
Cited by 4 | Viewed by 2993
Abstract
Fungal infections are the most common secondary infections in debilitated individuals in a state of chronic disease or immunosuppression. Despite this, most fungal infections are neglected, mainly due to the lower frequency of their more severe clinical forms in immunocompetent individuals with a [...] Read more.
Fungal infections are the most common secondary infections in debilitated individuals in a state of chronic disease or immunosuppression. Despite this, most fungal infections are neglected, mainly due to the lower frequency of their more severe clinical forms in immunocompetent individuals with a healthy background. However, over the past few years, several cases of severe fungal infections in healthy individuals have provoked a change in the epidemiological dynamics of fungal infections around the world, both due to recurrent outbreaks in previously infrequent regions and the greater emergence of more pathogenic fungal variants affecting healthy individuals, such as in the Cryptococcus genus. Therefore, before the arrival of a scenario of prevalent severe fungal infections, it is necessary to assess more carefully what are the real reasons for the increased incidence of fungal infection globally. What are the factors that are currently contributing to this new possible epidemiological dynamic? Could these be of a structural nature? Herein, we propose a discussion based on the importance of the virulence factors of glycoconjugate composition in the adaptation of pathogenic fungal species into the current scenario of increasing severity of these infections. Full article
5 pages, 275 KiB  
Opinion
Glycobiology of Cancer: Sugar Drives the Show
by Jhenifer Santos dos Reis, Marcos André Rodrigues da Costa Santos, Daniella Pereira Mendonça, Stefani Ingrid Martins do Nascimento, Pedro Marçal Barcelos, Rafaela Gomes Correia de Lima, Kelli Monteiro da Costa, Celio Geraldo Freire-de-Lima, Alexandre Morrot, Jose Osvaldo Previato, Lucia Mendonça Previato, Leonardo Marques da Fonseca and Leonardo Freire-de-Lima
Medicines 2022, 9(6), 34; https://doi.org/10.3390/medicines9060034 - 24 May 2022
Cited by 5 | Viewed by 3239
Abstract
Cancer development and progression is associated with aberrant changes in cellular glycosylation. Cells expressing altered glycan-structures are recognized by cells of the immune system, favoring the induction of inhibitory immune processes which subsequently promote tumor growth and spreading. Here, we discuss about the [...] Read more.
Cancer development and progression is associated with aberrant changes in cellular glycosylation. Cells expressing altered glycan-structures are recognized by cells of the immune system, favoring the induction of inhibitory immune processes which subsequently promote tumor growth and spreading. Here, we discuss about the importance of glycobiology in modern medicine, taking into account the impact of altered glycan structures expressed in cancer cells as potential glycobiomarkers of disease, as well as on cancer development and progression. Full article
16 pages, 1177 KiB  
Review
Immune Responses in Leishmaniasis: An Overview
by Ana Caroline Costa-da-Silva, Danielle de Oliveira Nascimento, Jesuino R. M. Ferreira, Kamila Guimarães-Pinto, Leonardo Freire-de-Lima, Alexandre Morrot, Debora Decote-Ricardo, Alessandra Almeida Filardy and Celio Geraldo Freire-de-Lima
Trop. Med. Infect. Dis. 2022, 7(4), 54; https://doi.org/10.3390/tropicalmed7040054 - 31 Mar 2022
Cited by 91 | Viewed by 13898
Abstract
Leishmaniasis is a parasitic, widespread, and neglected disease that affects more than 90 countries in the world. More than 20 Leishmania species cause different forms of leishmaniasis that range in severity from cutaneous lesions to systemic infection. The diversity of leishmaniasis forms is [...] Read more.
Leishmaniasis is a parasitic, widespread, and neglected disease that affects more than 90 countries in the world. More than 20 Leishmania species cause different forms of leishmaniasis that range in severity from cutaneous lesions to systemic infection. The diversity of leishmaniasis forms is due to the species of parasite, vector, environmental and social factors, genetic background, nutritional status, as well as immunocompetence of the host. Here, we discuss the role of the immune system, its molecules, and responses in the establishment, development, and outcome of Leishmaniasis, focusing on innate immune cells and Leishmania major interactions. Full article
(This article belongs to the Special Issue Feature Papers in Tropical Medicine and Infectious Disease)
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4 pages, 265 KiB  
Opinion
COVID-19 Infection and Neuropathological Features
by Leonardo Freire-de-Lima, Aline Miranda Scovino, Leonardo Marques da Fonseca, Camilla Cristie Barreto Menezes, Carlos Antonio do Nascimento Santos, Marco Edilson Freire de Lima, Debora Decote-Ricardo, Matheus Freire-de-Lima, Kelli Monteiro da Costa, Jhenifer Santos dos Reis, Marcos André Rodrigues da Costa Santos, Celio Geraldo Freire-de-Lima and Alexandre Morrot
Medicines 2021, 8(10), 59; https://doi.org/10.3390/medicines8100059 - 11 Oct 2021
Cited by 1 | Viewed by 3542
Abstract
The pathology associated with COVID-19 infection is progressively being revealed. Recent postmortem assessments have revealed acute airway inflammation as well as diffuse alveolar damage, which bears resemblance to severe acute respiratory syndromes induced by both SARS-CoV and MERS-CoV infections. Although recent papers have [...] Read more.
The pathology associated with COVID-19 infection is progressively being revealed. Recent postmortem assessments have revealed acute airway inflammation as well as diffuse alveolar damage, which bears resemblance to severe acute respiratory syndromes induced by both SARS-CoV and MERS-CoV infections. Although recent papers have highlighted some neuropathologies associated with COVID-19 infection, little is known about this topic of great importance in the area of public health. Here, we discuss how neuroinflammation related to COVID-19 could be triggered by direct viral neuroinvasion and/or cytokine release over the course of the infection. Full article
6 pages, 278 KiB  
Opinion
Autoimmune Disorders & COVID-19
by Leonardo Freire-de-Lima, Aline Miranda Scovino, Camilla Cristie Barreto Menezes, Leonardo Marques da Fonseca, Jhenifer Santos dos Reis, Marcos André Rodrigues da Costa Santos, Kelli Monteiro da Costa, Carlos Antonio do Nascimento Santos, Celio Geraldo Freire-de-Lima and Alexandre Morrot
Medicines 2021, 8(10), 55; https://doi.org/10.3390/medicines8100055 - 28 Sep 2021
Cited by 5 | Viewed by 3616
Abstract
Coronavirus disease 2019 (COVID-19) can progress to severe pneumonia with respiratory failure and is aggravated by the deregulation of the immune system causing an excessive inflammation including the cytokine storm. Since 2019, several studies regarding the interplay between autoimmune diseases and COVID-19 infections [...] Read more.
Coronavirus disease 2019 (COVID-19) can progress to severe pneumonia with respiratory failure and is aggravated by the deregulation of the immune system causing an excessive inflammation including the cytokine storm. Since 2019, several studies regarding the interplay between autoimmune diseases and COVID-19 infections is increasing all over the world. In addition, thanks to new scientific findings, we actually know better why certain conditions are considered a higher risk in both situations. There are instances when having an autoimmune disease increases susceptibility to COVID-19 complications, such as when autoantibodies capable of neutralizing type I IFN are present, and other situations in which having COVID-19 infection precedes the appearance of various autoimmune and autoinflammatory diseases, including multisystem inflammatory syndrome in children (MIS-C), Guillain-Barré syndrome, and Autoimmune haemolytic anaemia (AIHA), thus, adding to the growing mystery surrounding the SARS-CoV-2 virus and raising questions about the nature of its link with autoimmune and autoinflammatory sequelae. Herein, we discuss the role of host and virus genetics and some possible immunological mechanisms that might lead to the disease aggravation. Full article
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