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1.
Chinese Journal of Hepatology ; (12): 776-780, 2023.
Article in Chinese | WPRIM | ID: wpr-986211

ABSTRACT

Type II innate lymphoid cell (ILC2) is a newly identified innate immunological cell that belongs to the lymphocyte lineage in cell morphology, resides in the body's mucosal tissues, and has the dual functions of innate and adaptive immunity to promote tissue remodeling and repair after injury. Additionally, it is involved in the occurrence and development of a variety of liver diseases and plays an important role in maintaining the immunological homeostasis of the liver region. This article reviews the differentiation, development, and biological functions of ILC2, with particular attention to the research progress in liver diseases.


Subject(s)
Humans , Immunity, Innate , Lymphocytes , Cell Differentiation , Liver Diseases
2.
Chinese Critical Care Medicine ; (12): 442-445, 2023.
Article in Chinese | WPRIM | ID: wpr-982610

ABSTRACT

For patients receiving mechanical ventilation, mechanical ventilation is also an injury factor at the same time of treatment, which can lead to or aggravate lung injury, that is, ventilator-induced lung injury (VILI). The typical feature of VILI is that the mechanical stress is transmitted to cells through the pathway, leading to uncontrollable inflammatory cascade reaction, which causes the activation of inflammatory cells in the lung and the release of a large number of cytokines and inflammatory mediators. Among them, innate immunity is also involved in the occurrence and development of VILI. A large number of studies have shown that damaged lung tissue in VILI can regulate inflammatory response by releasing a large number of damage associated molecular pattern (DAMP). Pattern recognition receptor (PRR) participates in the activation of immune response by combining with DAMP, and releases a large number of inflammatory mediators to promote the occurrence and development of VILI. Recent studies have shown that inhibition of DAMP/PRR signaling pathway can play a protective role in VILI. Therefore, this article will mainly discuss the potential role of blocking DAMP/PRR signal pathway in VILI, and provide new ideas for the treatment of VILI.


Subject(s)
Humans , Respiration, Artificial , Respiration , Immunity, Innate , Ventilator-Induced Lung Injury , Inflammation , Inflammation Mediators , Lung
3.
Chinese journal of integrative medicine ; (12): 424-433, 2023.
Article in English | WPRIM | ID: wpr-982275

ABSTRACT

OBJECTIVE@#To investigate the effects of composite Sophora colon-soluble Capsule (CSCC) on gut microbiota-mediated short-chain fatty acids (SCFAs) production and downstream group 3 innate lymphoid cells (ILC3s) of dextran sulfate sodium (DSS)-induced ulcerative colitis (UC) mice model.@*METHODS@#The main components of CSCC were analyzed by hybrid ultra-high-performance liquid chromatography ion mobility spectromety quadrupole time-of-flight mass spectrometry (UHPLC-IM-QTOF/MS). Twenty-four male BALB/c mice were randomly divided into 4 groups (n=6) by using a computer algorithm-generated random digital, including control, DSS model, mesalazine, and CSCC groups. A DSS-induced colitis mice model was established to determine the effects of CSCC by recording colonic weight, colonic length, index of colonic weight, and histological colonic score. The variations in ILC3s were assessed by immunofluorescence and flow cytometry. The results of gut microbiota and SCFAs were acquired by 16s rDNA and gas chromatography-mass spectrometry (GC-MS) analysis. The expression levels of NCR+ ILC3-, CCR6+ Nkp46- (Lti) ILC3-, and ILCreg-specific markers were detected by enzyme-linked immunosorbent assay, and real-time quantitative polymerase chain reaction and Western blot, respectively.@*RESULTS@#The main components of CSCC were matrine, ammothamnine, Sophora flavescens neoalcohol J, and Sophora oxytol U. After 7 days of treatment, CSCC significantly alleviated colitis by promoting the reproduction of intestinal probiotics manifested as upregulation of the abundance of Bacteroidetes species and specifically the Bacteroidales_S24-7 genus (P<0.05). Among the SCFAs, the content of butyric acid increased the most after CSCC treatment. Meanwhile, compared with the model group, Lti ILC3s and its biomarkers were significantly downregulated and NCR+ ILC3s were significantly elevated in the CSCC group (P<0.01). Further experiments revealed that ILC3s were differentiated from Lti ILC3s to NCR+ ILC3s, resulting in interleukin-22 production which regulates gut epithelial barrier function.@*CONCLUSION@#CSCC may exert a therapeutic effect on UC by improving the gut microbiota, promoting metabolite butyric acid production, and managing the ratio between NCR+ ILC3s and Lti ILC3s.


Subject(s)
Male , Animals , Mice , Colitis, Ulcerative/pathology , Immunity, Innate , Butyric Acid/therapeutic use , Sophora , Gastrointestinal Microbiome , Lymphocytes , Colon , Colitis/pathology , Disease Models, Animal , Mice, Inbred C57BL
4.
Chinese Journal of Cellular and Molecular Immunology ; (12): 599-603, 2023.
Article in Chinese | WPRIM | ID: wpr-981905

ABSTRACT

Objective To investigate the relationship between intestinal inflammatory group 2 innate lymphoid cells (iILC2s) and lung ILC2s and its inflammatory response in chronic obstructive pulmonary disease (COPD). Methods Mouse COPD model was established by smoking method. The mice were randomly divided into normal group and COPD group. HE staining was used to detect the pathological changes in lung and intestine tissues of mice in normal group and COPD group, and the contents of natural ILC2s(nILC2s) and iILC2s cells were measured by flow cytometry. Wright-Giemsa staining was used to measure the number of immune cells in the bronchoalveolar lavage fluid (BALF) of mice in normal group and COPD group, and the concentration of IL-13 and IL-4 was detected by ELISA. Results In COPD mice, epithelial cells of the lung and intestinal tissues exhibited pathological hyperplasia, partial atrophy or deletion, inflammatory cell infiltration, increased pathological score and significantly increased neutrophils, monocytes, and lymphocytes in BALF. Lung iILC2s, intestinal nILC2s and iILC2s were increased significantly in the COPD group. The contents of IL-13 and IL-4 in BALF were significantly increased. Conclusion The increase of iILC2s and their related cytokines in COPD lung may be related to intestinal inflammatory ILC2s.


Subject(s)
Mice , Animals , Cytokines , Immunity, Innate , Interleukin-13 , Interleukin-4 , Lymphocytes , Lung/pathology , Pulmonary Disease, Chronic Obstructive , Bronchoalveolar Lavage Fluid , Disease Models, Animal , Intestines
5.
Chinese Journal of Cellular and Molecular Immunology ; (12): 558-563, 2023.
Article in Chinese | WPRIM | ID: wpr-981899

ABSTRACT

Group 3 innate lymphoid cells (ILC3) are an ILC subset that is characterized by the expression of retinoic acid-related orphan nuclear receptor γt (RORγt) and interleukin 22 (IL-22). This review summarizes the role of ILC3 in coordinating innate immunity and adaptive immunity based on current research and elaborate the significance of ILC3 from the perspective of immune system evolution. In addition, based on immune-related functions, we propose a possible time when ILC3 appears in the evolution of the immune system. And then, the research limitations and prospects are discussed.


Subject(s)
Immunity, Innate , Lymphocytes , Tretinoin
6.
Chinese Journal of Cellular and Molecular Immunology ; (12): 552-557, 2023.
Article in Chinese | WPRIM | ID: wpr-981898

ABSTRACT

Group 2 innate lymphoid cells (ILC2s) are the "mirror cells" of Th2 cells. Although the total cell number of ILC2s is far less than that of CD4+ Th2 cells in the body, the activated ILC2s have a more powerful biological activity than CD4+ Th2 cells and can rapidly enhanced Th2-cell inflammatory reaction. It plays an important role in the pathogenesis of allergic respiratory diseases. The transmitters that activate ILC2s include inflammatory cytokines (IL-33, IL-25, TSLP, IL-4, IL-9), lipid transmitters (prostaglandins, leukotrienes), and other activating transmitters (ICOS, Complement C3a, neuropeptide receptor, vasoactive intestinal peptide and calcitonin gene-related peptide, etc). Activated ILC2s produce large amounts of IL-4, IL-5, IL-9, IL-13, and amphiregulin and other inflammatory mediators, and induce airway hyperresponsiveness, mucus secretion and airway remodeling and other respiratory allergic reactions. Therefore, respiratory allergic diseases, especially steroid-dependent asthma, could be treated potentially by inhibiting the activation of ILC2s. Hereby, we summarized the immunobiology of ILC2s, the initiation of ILC2s in allergic inflammation, the relationship between ILC2s and respiratory allergic diseases, and the recent advances in biological agents targeted by ILC2s.


Subject(s)
Humans , Immunity, Innate , Interleukin-4 , Interleukin-9 , Lymphocytes , Hypersensitivity , Cytokines , Respiratory Tract Diseases , Inflammation
7.
Chinese Journal of Contemporary Pediatrics ; (12): 179-185, 2023.
Article in Chinese | WPRIM | ID: wpr-971057

ABSTRACT

OBJECTIVES@#To investigate the changes and significance of type 2 innate lymphoid cells (ILC2), interleukin-33 (IL-33), interleukin-25 (IL-25), thymic stromal lymphopoietin (TSLP), interleukin-5 (IL-5), and interleukin-13 (IL-13) in peripheral blood of preterm infants with bronchopulmonary dysplasia (BPD).@*METHODS@#A total of 76 preterm infants with a gestational age of <32 weeks and a length of hospital stay of ≥14 days who were admitted to the Department of Pediatrics of the Affiliated Hospital of Jiangsu University from September 2020 to December 2021 were enrolled. According to the diagnostic criteria for BPD, they were divided into a BPD group with 30 infants and a non-BPD group with 46 infants. The two groups were compared in terms of the percentage of ILC2 and the levels of IL-33, IL-25, TSLP, IL-5, and IL-13 in peripheral blood on days 1, 7, and 14 after birth.@*RESULTS@#The BPD group had significantly lower birth weight and gestational age than the non-BPD group (P<0.05). On days 7 and 14 after birth, the BPD group had significantly higher levels of ILC2, IL-33, TSLP, and IL-5 than the non-BPD group (P<0.05), and these indices had an area under the curve of >0.7 in predicting the devolpment of BPD (P<0.05). Multivariate logistic regression analysis showed that after adjusting for gestational age and birth weight, peripheral blood IL-33, TSLP and IL-5 on days 7 and 14 after birth were closely related to the devolpment of BPD (P<0.05).@*CONCLUSIONS@#Early innate immune activation and upregulated expression of related factors may be observed in preterm infants with BPD. ILC2, IL-33, TSLP, and IL-5 may be used as biological indicators for early diagnosis of BPD.


Subject(s)
Child , Humans , Infant , Infant, Newborn , Birth Weight , Bronchopulmonary Dysplasia/pathology , Cytokines , Immunity, Innate , Infant, Premature , Interleukin-13 , Interleukin-33 , Interleukin-5 , Lymphocytes/pathology , Thymic Stromal Lymphopoietin
8.
Chinese Journal of Epidemiology ; (12): 360-366, 2023.
Article in Chinese | WPRIM | ID: wpr-969914

ABSTRACT

Continuous evolution of Omicron variant of 2019-nCoV has resulted in a rapid and simultaneous emergences of novel sub-variants with increased immune escape ability, higher reinfection risk and shorter time interval between infections. Compared with the first infection, the reinfection would still pose exceed risk to people's health although the clinical manifestations of the reinfection might be milder and the risk for severe illness or death is lower. The reinfection is highly associated with people's vaccination status, immunity level, age, working and residential factors. Those who have not received 2019-nCoV vaccination, the elderly and those with comorbidities, especially the previous 2019-nCoV patients with severe/critical illness, are at high risk for the reinfection. Booster doses of vaccine might play an additional role in the prevention of the reinfection and severe illness on the basis of natural immunity.


Subject(s)
Aged , Humans , COVID-19 , Reinfection/epidemiology , SARS-CoV-2 , Immunity, Innate
9.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 3-18, 2023.
Article in English | WPRIM | ID: wpr-971661

ABSTRACT

Type I interferon (IFN) is considered as a bridge between innate and adaptive immunity. Proper activation or inhibition of type I IFN signaling is essential for host defense against pathogen invasion, tumor cell proliferation, and overactive immune responses. Due to intricate and diverse chemical structures, natural products and their derivatives have become an invaluable source inspiring innovative drug discovery. In addition, some natural products have been applied in clinical practice for infection, cancer, and autoimmunity over thousands of years and their promising curative effects and safety have been well-accepted. However, whether these natural products are primarily targeting type I IFN signaling and specific molecular targets involved are not fully elucidated. In the current review, we thoroughly summarize recent advances in the pharmacology researches of natural products for their type I IFN activity, including both agonism/activation and antagonism/inhibition, and their potential application as therapies. Furthermore, the source and chemical nature of natural products with type I IFN activity are highlighted and their specific molecular targets in the type I IFN pathway and mode of action are classified. In conclusion, natural products possessing type I IFN activity represent promising therapeutic strategies and have a bright prospect in the treatment of infection, cancer, and autoimmune diseases.


Subject(s)
Biological Products/therapeutic use , Immunity, Innate , Signal Transduction , Interferon Type I/metabolism
10.
Rev. biol. trop ; 70(1)dic. 2022.
Article in Spanish | LILACS, SaludCR | ID: biblio-1423027

ABSTRACT

Introducción: La protección ante agentes biológicos propios y externos de los cnidarios dependen de la inmunidad innata, la cual consta de tres procesos inmunológicos principales: 1) reconocimiento inmunológico, 2) señalización intracelular, y 3) respuesta efectora. Objetivo: Revisar críticamente el conocimiento actual del repertorio molecular involucrado en la respuesta inmune en cnidarios, así como, su papel en el establecimiento de la simbiosis, y las posibles aplicaciones biotecnológicas de las moléculas involucradas en el proceso de inmunidad. Métodos: Se realizó una revisión de artículos científicos encontrados a través de las bases de datos del NCBI, Google Scholar y Scielo, con palabras claves como inmunidad y/o reconocimiento inmunológico en cnidarios, en una ventana de tiempo de la última década, sin descartar literatura clásica más antigua. Resultados: El reconocimiento inmunológico consiste en receptores inmunológicos que reconocen patrones moleculares e inducen respuestas efectoras como la movilización de moléculas al sitio de la infección, la ingestión microbiana y la formación de moléculas que activan cascadas de señalización. La fase de señalización involucra mediadores de la traducción de señales que activan genes de trascripción, y cascadas de señalización intracelular que inician respuestas de defensa adecuadas. Las respuestas efectoras incluyen la capa superficial del mucus, péptidos antimicrobianos, especies reactivas de oxígeno y la respuesta celular mediada por fagocitosis. Por último, se presenta un esquema y una tabla integral de las vías de respuesta inmune en los cnidario. Conclusiones: La inmunidad en Cnidaria está mediada por mecanismos de defensa complejos integrados por receptores de reconocimiento de patógenos, vías de señalización intracelular, células y moléculas efectoras encargadas de la eliminación del patógeno, y reconocimiento-aceptación de simbiontes. El estudio de compuestos activos del sistema inmune en Cnidaria ha sido poco explorado, sin embargo, el trabajo realizado con otros compuestos presentes en las toxinas de este filo, los sitúa como una fuente importante de moléculas antimicrobianas dignas de un análisis de bioprospección.


Introduction: Cnidarians depend on innate immunity for protection against both their own and external biological agents. It consists of three main immunological processes: 1) immune recognition, 2) intracellular signaling, and 3) effector response. Objective: To critically review current knowledge of the molecular repertoire involved in the immune response in cnidarians, its role in symbiosis, and possible biotechnological applications. Methods: We used keywords such as immunity, and immunological recognition in cnidarians, in the NCBI, Scielo and Google Scholar databases, for the last decade. Results: Cnidarian immune recognition consists of molecular pattern receptors and responses such as the mobilization of molecules to the site of infection, microbial ingestion, and the formation of molecules that activate signaling cascades. The signaling phase involves translation mediators that activate transcriptional genes and intracellular signaling cascades that initiate defenses. Effector responses include surface layer mucus, antimicrobial peptides, reactive oxygen species, and the cellular response mediated by phagocytosis. Conclusions: Immunity in Cnidaria is mediated by complex defense mechanisms composed of pathogen recognition receptors, intracellular signaling pathways, effector cells and molecules responsible for pathogen elimination, and recognition of symbionts. There is a potential for toxin compounds useful as antimicrobial molecules.


Subject(s)
Animals , Cnidaria/immunology , Immunity, Innate , Symbiosis
11.
Rev. chil. enferm. respir ; 38(2): 106-116, jun. 2022. ilus, tab
Article in Spanish | LILACS | ID: biblio-1407767

ABSTRACT

Resumen El trasplante pulmonar implica una serie de desafíos, que como lo ha demostrado la historia, no sólo depende de un adecuado desarrollo de técnicas quirúrgicas, sino también de la comprensión de una serie de complejas interacciones inmunológicas celulares y humorales que serán las responsables del tipo de respuesta (innata y/o adquirida) fisiológica y que pudiesen desencadenar las complicaciones asociadas al trasplante (rechazo hiperagudo, agudo o crónico). Cada una de las cuales tiene su potencial prevención y/o tratamiento. El poder conocer esta serie de respuestas, permite al clínico anticiparse a algunos de estos eventos y evitar de mejor forma el daño y las consecuencias que pueden producir en los casos de trasplante pulmonar.


Lung transplantation involves a series of challenges, which as history has shown, depends not only on an adequate development of surgical techniques, but also on the understanding of a series of complex cellular and humoral immunological interactions that will be responsible for the type of physiological response (innate - acquired) and that could trigger the complications associated with transplantation (hyperacute, acute or chronic rejection). Each of which has its potential prevention and treatment. Being able to know this series of responses, allows the clinician to anticipate some of these events and to avoid in a better way the damage and the consequences that can occur in cases of lung transplantation.


Subject(s)
Humans , Transplantation Immunology/immunology , Lung Transplantation , Graft Rejection/immunology , T-Lymphocytes/immunology , Autoimmunity , Nuclear Factor 45 Protein , Graft Rejection/prevention & control , Immunity, Cellular , Immunity, Innate , Immunosuppressive Agents
12.
Acta Physiologica Sinica ; (6): 1031-1038, 2022.
Article in Chinese | WPRIM | ID: wpr-970098

ABSTRACT

Microglia have the ability to mediate innate immune memory and can be reprogrammed by primary stimuli to enhance or inhibit the immune response of microglia to secondary stimuli. Inflammatory stimulation is an important factor for microglia to mediate innate immune memory. Single or repeated stimulation can induce microglia to form different phenotypes. Microglia-mediated innate immune response is involved in the regulation of immune memory. Enhancer modification is a key pathway of microglia epigenetic regulation, and the H3K27ac enhancer marker is closely related to immune training. TGF-β1 mediates the interaction between IL-10 and IL-1β, thereby influencing the microglial phenotype. Microglia glycolysis activity is increased after immune training, and oxidative phosphorylation is associated with immune tolerance. Innate immune memory is closely associated with neurodegenerative diseases, brain tumors, brain damage and psychosis. Further study on the mechanism of microglia-mediated innate immune memory is helpful to understand the occurrence and development of central nervous system diseases and provide new options for the treatment of central nervous system diseases.


Subject(s)
Humans , Microglia/metabolism , Epigenesis, Genetic , Trained Immunity , Immunity, Innate , Nervous System Diseases
13.
Chinese Journal of Traumatology ; (6): 1-10, 2022.
Article in English | WPRIM | ID: wpr-928475

ABSTRACT

Sepsis is a life-threatening clinical syndrome and one of the most challenging health problems in the world. Pathologically, sepsis and septic shock are caused by a dysregulated host immune response to infection, which can eventually lead to multiple organ failure and even death. As an adaptor transporter between the endoplasmic reticulum and Golgi apparatus, stimulator of interferon response cGAMP interactor 1 (STING1, also known as STING or TMEM173) has been found to play a vital role at the intersection of innate immunity, inflammation, autophagy, and cell death in response to invading microbial pathogens or endogenous host damage. There is ample evidence that impaired STING1, through its immune and non-immune functions, is involved in the pathological process of sepsis. In this review, we discuss the regulation and function of the STING1 pathway in sepsis and highlight it as a suitable drug target for the treatment of lethal infection.


Subject(s)
Humans , Autophagy , Immunity, Innate , Multiple Organ Failure , Sepsis , Shock, Septic
14.
China Journal of Chinese Materia Medica ; (24): 1359-1369, 2022.
Article in Chinese | WPRIM | ID: wpr-928063

ABSTRACT

UPLC-Q-TOF-MS combined with network pharmacology and experimental verification was used to explore the mechanism of acupoint sticking therapy(AST) in the intervention of bronchial asthma(BA). The chemical components of Sinapis Semen, Cory-dalis Rhizoma, Kansui Radix, Asari Radix et Rhizoma, and Zingiberis Rhizoma Recens were retrieved from TCMSP as self-built database. The active components in AST drugs were analyzed by UPLC-Q-TOF-MS, and the targets were screened out in TCMSP and Swiss-TargetPrediction. Targets of BA were collected from GeneCards, and the intersection of active components and targets was obtained by Venny 2.1.0. The potential targets were imported into STRING and DAVID for PPI, GO, and KEGG analyses. The asthma model induced by house dust mite(HDM) was established in mice. The mechanism of AST on asthmatic mice was explored by pulmonary function, Western blot, and flow cytometry. The results indicated that 54 active components were obtained by UPLC-Q-TOF-MS and 162 potential targets were obtained from the intersection. The first 53 targets were selected as key targets. PPI, GO, and KEGG analyses showed that AST presumedly acted on SRC, PIK3 CA, and other targets through active components such as sinoacutine, sinapic acid, dihydrocapsaicin, and 6-gingerol and regulated PI3 K-AKT, ErbB, chemokine, sphingolipid, and other signaling pathways to intervene in the pathological mechanism of BA. AST can improve lung function, down-regulate the expression of PI3 K and p-AKT proteins in lung tissues, enhance the expression of PETN protein, and reduce the level of type Ⅱ innate immune cells(ILC2 s) in lung tissues of asthmatic mice. In conclusion, AST may inhibit ILC2 s by down-regulating the PI3 K-AKT pathway to relieve asthmatic airway inflammation and reduce airway hyperresponsiveness.


Subject(s)
Animals , Mice , Acupuncture Points , Asthma/drug therapy , Drugs, Chinese Herbal , Immunity, Innate , Lymphocytes , Network Pharmacology
15.
Chinese Journal of Biotechnology ; (12): 1837-1846, 2022.
Article in Chinese | WPRIM | ID: wpr-927821

ABSTRACT

We researched the mechanism of African swine fever virus (ASFV) protein E248R in regulating the cGAS-STING pathway. First, we verified via the dual-luciferase reporter assay system that E248R protein inhibited the secretion of IFN-β induced by cGAS-STING or HT-DNA in a dose-dependent manner. The relative quantitative PCR analysis indicated that the overexpression of E248R inhibited HT-DNA-induced transcription of IFN-b1, RANTES, IL-6, and TNF-α in PK-15 cells. Next, we found that E248R interacted with STING by co-immunoprecipitation assay and laser confocal microscopy. Finally, we demonstrated that E248R inhibited the expression of STING protein by using Western blotting. We demonstrated for the first time that the E248R protein of ASFV suppressed the host innate immune response via inhibiting STING expression. The results are pivotal in extending the understanding of the ASFV immune escape and can guide the design of vaccines against ASFV.


Subject(s)
Animals , African Swine Fever Virus/genetics , DNA , Immunity, Innate , Nucleotidyltransferases/metabolism , Signal Transduction , Swine
16.
Acta Physiologica Sinica ; (6): 265-275, 2022.
Article in Chinese | WPRIM | ID: wpr-927602

ABSTRACT

Group 3 innate lymphoid cells (ILC3) as a family member of innate lymphoid cells (ILCs), have been defined as novel innate immune cells in the past decade. ILC3 include a variety of heterogenous subsets with different phenotypes and functions, which are mainly distributed in barrier organs such as the intestine, lung and skin. They play an important role in immune regulation, tissue repair and lymphoid tissue formation. However, in various inflammatory diseases, ILC3 become dysregulated and participate in the pathogenesis through secreting a series of cytokines such as interleukin (IL)-17, IL-22, interferon-γ (IFN-γ) and granulocyte-macrophage colony-stimulating factor (GM-CSF) to modulate other immune cells and induce the formation of ectopic lymphoid structures. Therefore, it is of great significance to explore the phenotype and function of ILC3 in order to advance the understanding of inflammatory diseases and find new therapeutic targets. In this article, the phenotypic characteristics, biological functions and research progress of ILC3 in inflammatory diseases were reviewed.


Subject(s)
Cytokines , Immunity, Innate , Interferon-gamma , Intestines , Lymphocytes
17.
Protein & Cell ; (12): 90-101, 2022.
Article in English | WPRIM | ID: wpr-929171

ABSTRACT

The cyclic GMP-AMP (cGAMP) synthase (cGAS) has been identified as a cytosolic double stranded DNA sensor that plays a pivotal role in the type I interferon and inflammation responses via the STING-dependent signaling pathway. In the past several years, a growing body of evidence has revealed that cGAS is also localized in the nucleus where it is associated with distinct nuclear substructures such as nucleosomes, DNA replication forks, the double-stranded breaks, and centromeres, suggesting that cGAS may have other functions in addition to its role in DNA sensing. However, while the innate immune function of cGAS is well established, the non-canonical nuclear function of cGAS remains poorly understood. Here, we review our current understanding of the complex nature of nuclear cGAS and point to open questions on the novel roles and the mechanisms of action of this protein as a key regulator of cell nuclear function, beyond its well-established role in dsDNA sensing and innate immune response.


Subject(s)
Humans , Cell Nucleus/immunology , Immunity, Innate , Nucleotidyltransferases/immunology , Signal Transduction/immunology
18.
Braz. j. otorhinolaryngol. (Impr.) ; 87(6): 661-670, Nov.-Dec. 2021. graf
Article in English | LILACS | ID: biblio-1350335

ABSTRACT

Abstract Introduction: Nuocytes play an important role in Type 2 immunity. However, the contribution of ILC2s to allergic rhinitis remains to be clearly elucidated. Objective: To evaluate the role of nuocytes from mesenteric lymph node on allergic responses in mice. Methods: After intraperitoneal administration of interleukin IL-25 and IL-33 to wild-type and Il17br-/-Il1rl1-/- double-deficient mice, nuocytes were purified from the the nasal-associated lymphoid tissue and mesenteric lymph nodes. Then, we assessed productions of IL-5 and IL-13 in nuocytes' cultures. Finally, we adoptively transferred the mesenteric lymph node-derived nuocytes from wild-type and Il17br-/-Il1rl1-/- mice to the murine model of allergic rhinitis to evaluate their roles in nasal allergic responses. Results: We showed that nuocytes in the mesenteric lymph nodes of wild-type mice were upregulated after application of IL-25 and IL-33, and were induced to produce IL-5 and IL-13. Numbers of sneezing and nasal rubbing as well as eosinophils were all enhanced after the adoptive transfer of wild-type nuocytes. Concentrations of IL-5, IL-13, IL-25 and IL-33 in nasal lavage fluid of allergic mice were also increased. However, nuocytes fromIl17br-/-Il1rl1-/- mice did not increase sneezing and nasal rubbing and eosinophilia, and upregulate the above cytokines in the nasal lavage fluid. Conclusion: The findings demonstrate that nuocytes from the mesenteric lymph nodes of wildtype mice promote allergic responses in a mouse model.


Resumo Introdução: Os nuócitos desempenham um papel importante na imunidade do tipo 2. No entanto, a contribuição das interleucinas ILC2s na rinite alérgica ainda precisa ser elucidada. Objetivo: Avaliar o papel dos nuócitos de linfonodos mesentéricos nas respostas alérgicas em camundongos. Método: Após a administração intraperitoneal de interleucina (IL)-25 e IL-33 em camundongos do tipo selvagem e camundongos Il17br-/-Il1rl1-/- com deficiência dupla, os nuócitos foram purificados do tecido linfoide associado a mucosa nasal e linfonodos mesentéricos. Em seguida, avaliamos as produções de IL-5 e IL-13 em culturas de nuócitos. Finalmente, transferimos adotivamente os nuócitos derivados de linfonodos mesentéricos de camundongos do tipo selvagem e camundongos Il17br-/-Il1rl1-/- para o modelo murino de rinite alérgica para avaliar seu papel nas respostas alérgicas nasais. Resultados: Mostramos que os nuócitos nos linfonodos mesentéricos de camundongos do tipo selvagem estavam up-regulados após a aplicação de IL-25 e IL-33 e foram induzidos a produzir IL-5 e IL-13. Os espirros e friçcão nasal, bem como os eosinófilos, aumentaram após a transferência adotiva de nuócitos do tipo selvagem. As concentrações de IL-5, IL-13, IL-25 e IL-33 no líquido da lavagem nasal de camundongos alérgicos também estavam aumentadas. Entretanto, os nuócitos de camundongos Il17br-/-Il1rl1-/- não aumentaram os espirros e a friçcão nasal ou eosinofilia e up-regularam as citocinas acima no líquido de lavagem nasal. Conclusão: Os achados demonstram que os nuócitos dos linfonodos mesentéricos de camundongos selvagens promovem respostas alérgicas em um modelo de camundongo.


Subject(s)
Animals , Mice , Rhinitis, Allergic , Immunity, Innate , Lymphocytes , Cytokines , Disease Models, Animal , Interleukin-1 Receptor-Like 1 Protein , Lymph Nodes , Nasal Mucosa
19.
Rev. habanera cienc. méd ; 20(4): e4101, 2021. tab, graf
Article in Spanish | LILACS, CUMED | ID: biblio-1289625

ABSTRACT

Introducción: La duración de la inmunidad natural generada por la COVID-19 está por definir, lo que determina la probable reinfección. Objetivo: Destacar la necesidad de mantener las medidas de prevención a propósito de un caso de reinfección en un trabajador sanitario. Presentación de caso: Paciente femenina de 48 años de edad con antecedentes de salud que, en junio, 2020 y marzo, 2021 se le diagnóstica la COVID-19, en ambos casos con el comportamiento de enfermedad sintomática leve. Después de 24 horas de comenzar con cefalea, mareos y tos seca se confirma el diagnóstico de infección por SARS CoV-2 con PCR positivo y umbral de ciclo (CT) en 24.84. Pasados 9 meses y 9 días de la infección original, y dos días posteriores a recibir la vacuna BNT162b2 (Pfizer-BioNTech), comienza con malestar general, tos seca, secreción nasal y dolor de garganta, con PCR positivo y CT de 17.61. Conclusiones: La posibilidad de la reinfección por la COVID-19 orienta la necesidad de fortalecer las acciones de prevención de la transmisión en instituciones de salud en tanto las evidencias científicas nos provean de recursos más eficaces para su control(AU)


Introduction: The duration of natural immunity generated by COVID-19 is yet to be defined, which determines the probable reinfection. Objective: To analyze issues related to natural infection and the need to maintain prevention practices regarding a case of reinfection in a health care worker. Case presentation: Forty-eight-year-old female patient without comorbidities who was diagnosed with COVID-19 in June 2020 and March 2021, in both cases as a mild symptomatic disease. Twenty-four hours after the onset with headache, dizziness, and dry cough, the diagnosis of SARS CoV-2 infection was confirmed by positive PCR and cycle threshold (CT) at 24.84. Nine months and nine days after original infection, and two days after receiving the BNT162b2 vaccine (Pfizer-BioNTech), the patient began with general malaise, dry cough, runny nose, and sore throat, with a positive PCR and CT of 17.61. Conclusions: The possibility of reinfection by COVID-19 points to the need to strengthen transmission prevention practices in healthcare facilities as long as scientific evidence provides us with more effective resources for its control(AU)


Subject(s)
Humans , Female , Middle Aged , Reinfection , COVID-19 , Health Facilities , Immunity, Innate , Polymerase Chain Reaction , Severe Acute Respiratory Syndrome
20.
Arq. bras. cardiol ; 117(1): 91-99, July. 2021. tab, graf
Article in Portuguese | LILACS | ID: biblio-1285230

ABSTRACT

Resumo Fundamento A obesidade é uma condição inflamatória crônica de baixo grau relacionada a distúrbios cardíacos. No entanto, o mecanismo responsável pela inflamação cardíaca relacionada à obesidade não é claro. O receptor do tipo toll 4 (TLR-4) pertence a um receptor da família das transmembranas, responsável pela resposta imune, cuja ativação estimula a produção de citocinas pró-inflamatórias. Objetivo Testar se a ativação do receptor TLR-4 participa do processo de cardiomiopatia da obesidade, devido à produção de citocinas por meio da ativação do NF-ĸB. Métodos Ratos Wistar machos foram randomizados em dois grupos: o grupo controle (C, n = 8 animais) que recebeu dieta padrão/água e o grupo obeso (OB, n = 8 animais) que foi alimentado com dieta rica em açúcar e gordura e água mais 25% de sacarose por 30 semanas. Análise nutricional: peso corporal, índice de adiposidade, alimentos, água e ingestão calórica. Análise de distúrbios relacionados à obesidade: glicose plasmática, ácido úrico e triglicerídeos, HOMA-IR, pressão arterial sistólica, TNF-α no tecido adiposo. A análise cardíaca incluiu: expressão das proteínas TLR-4 e NF-ĸB, níveis de TNF-α e IL-6. Comparação pelo teste t de Student não pareado ou teste de Mann-Whitney com um valor de p <0,05 como estatisticamente significativo. Resultados O grupo OB apresentou obesidade, glicose elevada, triglicerídeos, ácido úrico, HOMA, pressão arterial sistólica e TNF-α no tecido adiposo. O grupo OB apresentou remodelação cardíaca e disfunção diastólica. A expressão de TLR-4 e NF-ĸB e os níveis de citocinas foram maiores em OB. Conclusão Nossos achados concluem que, em uma condição obesogênica, a inflamação derivada da ativação do TLR-4 cardíaco pode ser um mecanismo capaz de levar à remodelação e disfunção cardíaca.


Abstract Background Obesity is a chronic low-grade inflammation condition related to cardiac disorders. However, the mechanism responsible for obesity-related cardiac inflammation is unclear. The toll-like receptor 4 (TLR-4) belongs to a receptor of the transmembrane family responsible for the immune response whose activation stimulates the production of proinflammatory cytokines. Objective To test whether the activation of the TLR-4 receptor participates in the obesity cardiomyopathy process, due to cytokine production through NF-ĸB activation. Methods Male Wistar rats were randomized into two groups: the control group (C, n= 8 animals) that received standard diet/water and the obese group (OB, n= 8 animals) that were fed a high sugar-fat diet and water plus 25% of sucrose for 30 weeks. Nutritional analysis: body weight, adiposity index, food, water, and caloric intake. Obesity-related disorders analysis: plasma glucose, uric acid and triglycerides, HOMA-IR, systolic blood pressure, TNF-α in adipose tissue. Cardiac analysis included: TLR-4 and NF-ĸB protein expression, TNF-α and IL-6 levels. Comparison by unpaired Student's t-test or Mann- Whitney test with a p-value < 0.05 as statistically significant. Results The OB group showed obesity, high glucose, triglycerides, uric acid, HOMA, systolic blood pressure, and TNF-α in adipose tissue. OB group presented cardiac remodeling and diastolic dysfunction. TLR-4 and NF-ĸB expression and cytokine levels were higher in OB. Conclusion Our findings conclude that, in an obesogenic condition, the inflammation derived from cardiac TLR-4 activation can be a mechanism able to lead to remodeling and cardiac dysfunction.


Subject(s)
Animals , Male , Rats , Toll-Like Receptor 4 , Cardiomyopathies , Rats, Wistar , Immunity, Innate , Inflammation , Obesity
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