Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 161
Filter
1.
Sci Rep ; 14(1): 17837, 2024 08 01.
Article in English | MEDLINE | ID: mdl-39090190

ABSTRACT

Immunotherapy is a promising alternative treatment for canine mast cell tumour (MCT). However, evasion of immune recognition by downregulating major histocompatibility complex (MHC) molecules might decline treatment efficiency. Enhancing MHC expression through interferon-gamma (IFN-γ) is crucial for effective immunotherapy. In-house and reference canine MCT cell lines derived from different tissue origins were used. The impacts of IFN-γ treatment on cell viability, expression levels of MHC molecules, as well as cell apoptosis were evaluated through the MTT assay, RT-qPCR and flow cytometry. The results revealed that IFN-γ treatment significantly influenced the viability of canine MCT cell lines, with varying responses observed among different cell lines. Notably, IFN-γ treatment increased the expression of MHC I and MHC II, potentially enhancing immune recognition and MCT cell clearance. Flow cytometry analysis in PBMCs-mediated cytotoxicity assays showed no significant differences in overall apoptosis between IFN-γ treated and untreated canine MCT cell lines across various target-to-effector ratios. However, a trend towards higher percentages of late and total apoptotic cells was observed in the IFN-γ treated C18 and CMMC cell lines, but not in the VIMC and CoMS cell lines. These results indicate a variable response to IFN-γ treatment among different canine MCT cell lines. In summary, our study suggests IFN-γ's potential therapeutic role in enhancing immune recognition and clearance of MCT cells by upregulating MHC expression and possibly promoting apoptosis, despite variable responses across different cell lines. Further investigations are necessary to elucidate the underlying mechanisms and evaluate IFN-γ's efficacy in in vivo models.


Subject(s)
Apoptosis , Interferon-gamma , Leukocytes, Mononuclear , Animals , Dogs , Interferon-gamma/metabolism , Interferon-gamma/pharmacology , Apoptosis/drug effects , Cell Line, Tumor , Leukocytes, Mononuclear/metabolism , Leukocytes, Mononuclear/immunology , Leukocytes, Mononuclear/drug effects , Cell Survival/drug effects , Mast Cells/immunology , Mast Cells/metabolism , Mast Cells/drug effects , Major Histocompatibility Complex , Mastocytoma/veterinary , Mastocytoma/immunology , Dog Diseases/immunology , Cytotoxicity, Immunologic , Histocompatibility Antigens Class I/metabolism , Histocompatibility Antigens Class I/genetics
2.
Front Immunol ; 15: 1418897, 2024.
Article in English | MEDLINE | ID: mdl-39148726

ABSTRACT

Mast cells (MCs) are bone-marrow-derived haematopoietic cells that are widely distributed in human tissues. When activated, they will release tryptase, histamine and other mediators that play major roles in a diverse array of diseases/disorders, including allergies, inflammation, cardiovascular diseases, autoimmune diseases, cancers and even death. The multiple pathological effects of MCs have made their stabilizers a research hotspot for the treatment of related diseases. To date, the clinically available MC stabilizers are limited. Considering the rapidly increasing incidence rate and widespread prevalence of MC-related diseases, a comprehensive reference is needed for the clinicians or researchers to identify and choose efficacious MC stabilizers. This review analyzes the mechanism of MC activation, and summarizes the progress made so far in the development of MC stabilizers. MC stabilizers are classified by the action mechanism here, including acting on cell surface receptors, disturbing signal transduction pathways and interfering exocytosis systems. Particular emphasis is placed on the clinical applications and the future development direction of MC stabilizers.


Subject(s)
Mast Cells , Humans , Mast Cells/immunology , Mast Cells/metabolism , Mast Cells/drug effects , Animals , Signal Transduction , Molecular Targeted Therapy
3.
Front Immunol ; 15: 1327040, 2024.
Article in English | MEDLINE | ID: mdl-39104520

ABSTRACT

Background: The proximity of activated T cells and mast cells in the lesional skin of patients with chronic spontaneous urticaria (CSU) is held to contribute to the development of wheals and angioedema. In a previous study, we demonstrated that increased IL-17 expression in T cells and mast cells in skin lesions of patients with CSU is associated with T/mast cell proximity, but the mechanisms that drive T cell/mast cell co-localization remain unknown. Objectives: To assess if chemokines expressed in lesional CSU skin contribute to T cell/mast cell proximity. Patients and methods: Biopsies from lesional CSU skin were compared to biopsies from healthy skin for expression of CCR5 and its ligand CCL3 by CD4+ T cells and mast cells, respectively. Results: Numbers of CCR5-positive CD4+ T cells in lesional CSU skin were significantly increased as compared to healthy normal skin (p < 0.0001). The number of mast cells expressing CCL3 (ligand for CCR5) in CSU skin was also increased (p < 0.0002) and significant association with T-cell close proximity (p < 0.0001) is noticed. Conclusions: The close proximity of T cells and mast cells in the skin of severe CSU may be driven, at least in part by increased CCR5 and CCL3 expression. Therapies that target CCL3 interaction with CCR5 should be assessed for their effects in CSU.


Subject(s)
CD4-Positive T-Lymphocytes , Chemokine CCL3 , Chronic Urticaria , Mast Cells , Receptors, CCR5 , Skin , Humans , Mast Cells/immunology , Mast Cells/metabolism , Skin/immunology , Skin/pathology , Skin/metabolism , Chronic Urticaria/immunology , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/metabolism , Chemokine CCL3/metabolism , Adult , Male , Receptors, CCR5/metabolism , Female , Middle Aged , Biopsy
4.
Cells ; 13(15)2024 Jul 24.
Article in English | MEDLINE | ID: mdl-39120272

ABSTRACT

Sulphated glycosaminoglycans (GAGs) such as heparin are a major component of mast cell granules and form the matrix within which biogenic mediators are stored. Since GAGs released from mast cells also play an important role in helminth expulsion, understanding GAG storage can offer new insights into mast cell function. Sodium butyrate (NaBu), a short-chain fatty acid, causes ultrastructural changes within the granules of human mast cells (HMC-1) and increases their histamine content. Therefore, we hypothesized that NaBu treatment would also modify the storage of polysaccharides such as GAGs. NaBu (1 mM) significantly increased GAG content and granularity in a time- and concentration-dependent manner without affecting cell viability and metabolic activity. NaBu increased the expression of enzymes associated with heparin biosynthesis (GLCE, NDST1, NDST2, HS6ST1, and GALT1) in a time-dependent manner. A cholesteryl butyrate emulsion (CholButE) increased heparin content after 24 and 48 h and modestly altered the expression of genes involved in heparin biosynthesis. Similar to NaBu, CholButE reduced cell proliferation without significantly altering viability or metabolic activity. These data show that butyrate increases the synthesis and storage of heparin in human mast cells, perhaps by altering their metabolic pathways.


Subject(s)
Heparin , Mast Cells , Humans , Mast Cells/metabolism , Mast Cells/drug effects , Heparin/pharmacology , Heparin/metabolism , Cell Survival/drug effects , Butyrates/pharmacology , Butyrates/metabolism , Cell Proliferation/drug effects , Butyric Acid/pharmacology , Cell Line , Cholesterol Esters/metabolism
5.
Cells ; 13(15)2024 Jul 23.
Article in English | MEDLINE | ID: mdl-39120269

ABSTRACT

Mast cells are the major effector cells that mediate IgE-dependent allergic reactions. We sought to use integrated network analysis to identify genomic biomarkers associated with high response in IgE-mediated activation of primary human mast cells. Primary human mast cell cultures derived from 262 normal donors were categorized into High, Average and Low responder groups according to their activation response profiles. Transcriptome analysis was used to identify genes that were differentially expressed in different responder cultures in their baseline conditions, and the data were analyzed by constructing a personalized perturbed profile (PEEP). For upregulated genes, the construction of PEEP for each individual sample of all three responder groups revealed that High responders exhibited a higher percentage of "perturbed" samples whose PEEP values lay outside the normal range of expression. Moreover, the integration of PEEP of four selected upregulated genes into distinct sets of combinatorial profiles demonstrated that the specific pattern of upregulated expression of these four genes, in a tandem combination, was observed exclusively among the High responders. In conclusion, this combinatorial approach was useful in identifying a set of genomic biomarkers that are associated with high degranulation response in human mast cell cultures derived from the blood of a cohort of normal donors.


Subject(s)
Biomarkers , Cell Degranulation , Immunoglobulin E , Mast Cells , Humans , Mast Cells/metabolism , Immunoglobulin E/metabolism , Biomarkers/metabolism , Gene Expression Profiling , Genomics , Transcriptome/genetics , Up-Regulation/genetics , Cells, Cultured
6.
Front Immunol ; 15: 1421175, 2024.
Article in English | MEDLINE | ID: mdl-39091492

ABSTRACT

Age-related macular degeneration (AMD), a prevalent and progressive degenerative disease of the macula, is the leading cause of blindness in elderly individuals in developed countries. The advanced stages include neovascular AMD (nAMD), characterized by choroidal neovascularization (CNV), leading to subretinal fibrosis and permanent vision loss. Despite the efficacy of anti-vascular endothelial growth factor (VEGF) therapy in stabilizing or improving vision in nAMD, the development of subretinal fibrosis following CNV remains a significant concern. In this review, we explore multifaceted aspects of subretinal fibrosis in nAMD, focusing on its clinical manifestations, risk factors, and underlying pathophysiology. We also outline the potential sources of myofibroblast precursors and inflammatory mechanisms underlying their recruitment and transdifferentiation. Special attention is given to the potential role of mast cells in CNV and subretinal fibrosis, with a focus on putative mast cell mediators, tryptase and granzyme B. We summarize our findings on the role of GzmB in CNV and speculate how GzmB may be involved in the pathological transition from CNV to subretinal fibrosis in nAMD. Finally, we discuss the advantages and drawbacks of animal models of subretinal fibrosis and pinpoint potential therapeutic targets for subretinal fibrosis.


Subject(s)
Fibrosis , Granzymes , Macular Degeneration , Humans , Animals , Macular Degeneration/pathology , Macular Degeneration/metabolism , Macular Degeneration/etiology , Granzymes/metabolism , Retina/pathology , Retina/metabolism , Retina/immunology , Mast Cells/immunology , Mast Cells/metabolism , Choroidal Neovascularization/pathology , Choroidal Neovascularization/metabolism
7.
World J Gastroenterol ; 30(23): 2927-2930, 2024 Jun 21.
Article in English | MEDLINE | ID: mdl-38946872

ABSTRACT

In this editorial, we focus specifically on the mechanisms by which pancreatic inflammation affects pancreatic cancer. Cancer of the pancreas remains one of the deadliest cancer types. The highest incidence and mortality rates of pancreatic cancer are found in developed countries. Trends of pancreatic cancer incidence and mortality vary considerably worldwide. A better understanding of the etiology and identification of the risk factors is essential for the primary prevention of this disease. Pancreatic tumors are characterized by a complex microenvironment that orchestrates metabolic alterations and supports a milieu of interactions among various cell types within this niche. In this editorial, we highlight the foundational studies that have driven our understanding of these processes. In our experimental center, we have carefully studied the mechanisms of that link pancreatic inflammation and pancreatic cancer. We focused on the role of mast cells (MCs). MCs contain pro-angiogenic factors, including tryptase, that are associated with increased angiogenesis in various tumors. In this editorial, we address the role of MCs in angiogenesis in both pancreatic ductal adenocarcinoma tissue and adjacent normal tissue. The assessment includes the density of c-Kit receptor-positive MCs, the density of tryptase-positive MCs, the area of tryptase-positive MCs, and angiogenesis in terms of microvascularization density.


Subject(s)
Mast Cells , Neovascularization, Pathologic , Pancreatic Neoplasms , Tumor Microenvironment , Humans , Pancreatic Neoplasms/pathology , Pancreatic Neoplasms/metabolism , Pancreatic Neoplasms/immunology , Mast Cells/metabolism , Mast Cells/immunology , Tumor Microenvironment/immunology , Carcinoma, Pancreatic Ductal/pathology , Carcinoma, Pancreatic Ductal/immunology , Carcinoma, Pancreatic Ductal/metabolism , Pancreas/pathology , Pancreas/immunology , Pancreas/metabolism , Animals , Pancreatitis/metabolism , Pancreatitis/pathology , Pancreatitis/immunology , Risk Factors , Inflammation Mediators/metabolism , Tryptases/metabolism , Inflammation/metabolism
9.
Sci Rep ; 14(1): 15049, 2024 07 01.
Article in English | MEDLINE | ID: mdl-38951167

ABSTRACT

Vincristine (VCR) is one of the most widely used chemotherapy agents in treating pediatric cancer. Nonetheless, it is known to cause dose-dependent neurotoxicity which can impact virtually every organ system. Despite its widespread use, the precise impact of VCR on the lower urinary tract (LUT) remains inadequately elucidated. Our initial clinical and translational investigations suggest a sex-specific influence of childhood VCR exposure on LUT function. Thus, the current study aimed to investigate the late effects of systemic VCR exposure on LUT physiology and the underlying mechanisms, focusing on dosage and male-sex, employing juvenile CD-1 mice as a model. Male mice subjected to VCR exhibited augmented functional bladder capacity accompanied by frequent non-void contractions during awake cystometry, alongside mast cell accumulation within the bladder, compared to the saline-treated control group. Noteworthy functional changes were observed in bladder strips from the VCR group, including decreased nerve-mediated contraction, heightened contractile responses to cholinergic and purinergic agonists, enhanced responsiveness to histamine-primarily via histamine receptor 1 (Hrh1)-and an augmented relaxation effect with compound 48/80 (a mast cell degranulator), relative to the control group. Significant changes in gene expression levels associated with neuroinflammation and nociception were observed in both the bladder and lumbosacral dorsal root ganglia (Ls-DRG) of the VCR group. These findings suggest that VCR exposure during childhood, particularly in males, triggers neuroimmune responses in the bladder and Ls-DRG, amplifying responsiveness to neurotransmitters in the bladder, thereby contributing to LUT dysfunction characterized by a mixed bladder phenotype as a late effect during survivorship.


Subject(s)
Urinary Bladder , Vincristine , Animals , Male , Mice , Urinary Bladder/drug effects , Urinary Bladder/pathology , Female , Vincristine/adverse effects , Vincristine/pharmacology , Mast Cells/drug effects , Mast Cells/metabolism , Humans , Sex Factors , Dose-Response Relationship, Drug , Antineoplastic Agents, Phytogenic/adverse effects , Antineoplastic Agents, Phytogenic/pharmacology
10.
Methods Enzymol ; 700: 1-32, 2024.
Article in English | MEDLINE | ID: mdl-38971596

ABSTRACT

Biophysical coupling between the inner and outer leaflets, known as inter-leaflet or transbilayer coupling, is a fundamental organizational principle in the plasma membranes of live mammalian cells. Lipid-based interactions between the two leaflets are proposed to be a primary mechanism underlying transbilayer coupling. However, there are only a few experimental evidence supporting the existence of such interactions in live cells. This is seemingly due to the lack of experimental strategies to perturb the lipid composition in one leaflet and quantitative techniques to evaluate the biophysical properties of the opposite leaflet. The existing strategies often dependent on immobilization and clustering a component in one of the leaflets and technically demanding biophysical tools to evaluate the effects on the opposing leaflet. In the recent years, the London group developed a simple but elegant method, namely methyl-alpha-cyclodextrin catalyzed lipid exchange (LEX), to efficiently exchange outer leaflet lipids with an exogenous lipid of choice. Here, we adopted this method to perturb outer leaflet lipid composition. The corresponding changes in the inner leaflet is evaluated by comparing the diffusion of lipid probes localized in this leaflet in unperturbed and perturbed conditions. We employed highly multiplexed imaging fluorescence correlation spectroscopy (ImFCS), realized in a commercially available or home-built total internal reflection fluorescence microsocope equipped with a fast and sensitive camera, to determine diffusion coefficient of the lipid probes. Using the combination of LEX and ImFCS, we directly demonstrate lipid-based transbilayer coupling that does not require immobilization of membrane components in live mast cells in resting conditions. Overall, we present a relatively straightforward experimental strategy to evaluate transbilayer coupling quantitively in live cells.


Subject(s)
Spectrometry, Fluorescence , Spectrometry, Fluorescence/methods , Animals , Lipid Bilayers/metabolism , Lipid Bilayers/chemistry , Cell Membrane/metabolism , Cell Membrane/chemistry , Mast Cells/metabolism , Humans
11.
Int J Mol Sci ; 25(13)2024 Jul 03.
Article in English | MEDLINE | ID: mdl-39000431

ABSTRACT

Wheat allergy is a major type of food allergy with the potential for life-threatening anaphylactic reactions. Common wheat, Triticum aestivum (hexaploid, AABBDD genome), was developed using tetraploid wheat (AABB genome) and the ancient diploid wheat progenitor (DD genome)-Aegilops tauschii. The potential allergenicity of gluten from ancient diploid wheat is unknown. In this study, using a novel adjuvant-free gluten allergy mouse model, we tested the hypothesis that the glutenin extract from this ancient wheat progenitor will be intrinsically allergenic in this model. The ancient wheat was grown, and wheat berries were used to extract the glutenin for testing. A plant protein-free colony of Balb/c mice was established and used in this study. The intrinsic allergic sensitization potential of the glutenin was determined by measuring IgE response upon transdermal exposure without the use of an adjuvant. Clinical sensitization for eliciting systemic anaphylaxis (SA) was determined by quantifying the hypothermic shock response (HSR) and the mucosal mast cell response (MMCR) upon intraperitoneal injection. Glutenin extract elicited a robust and specific IgE response. Life-threatening SA associated and a significant MMCR were induced by the glutenin challenge. Furthermore, proteomic analysis of the spleen tissue revealed evidence of in vivo Th2 pathway activation. In addition, using a recently published fold-change analysis method, several immune markers positively and negatively associated with SA were identified. These results demonstrate for the first time that the glutenin from the ancient wheat progenitor is intrinsically allergenic, as it has the capacity to elicit clinical sensitization for anaphylaxis via activation of the Th2 pathway in vivo in mice.


Subject(s)
Allergens , Anaphylaxis , Glutens , Mice, Inbred BALB C , Th2 Cells , Triticum , Wheat Hypersensitivity , Animals , Anaphylaxis/immunology , Th2 Cells/immunology , Th2 Cells/metabolism , Mice , Triticum/immunology , Triticum/chemistry , Glutens/immunology , Wheat Hypersensitivity/immunology , Allergens/immunology , Immunoglobulin E/immunology , Immunoglobulin E/blood , Disease Models, Animal , Female , Mast Cells/immunology , Mast Cells/metabolism , Mast Cells/drug effects , Proteomics/methods
12.
Cell Rep ; 43(7): 114482, 2024 Jul 23.
Article in English | MEDLINE | ID: mdl-38985670

ABSTRACT

Secretory granule (SG) fusion is an intermediate step in SG biogenesis. However, the precise mechanism of this process is not completely understood. We show that Golgi-derived mast cell (MC) SGs enlarge through a mechanism that is dependent on phosphoinositide (PI) remodeling and fusion with LC3+ late endosomes (amphisomes), which serve as hubs for the fusion of multiple individual SGs. Amphisome formation is regulated by the tyrosine phosphatase PTPN9, while the subsequent SG fusion event is additionally regulated by the tetraspanin protein CD63 and by PI4K. We also demonstrate that fusion with amphisomes imparts to SGs their capacity of regulated release of exosomes. Finally, we show that conversion of PI(3,4,5)P3 to PI(4,5)P2 and the subsequent recruitment of dynamin stimulate SG fission. Our data unveil a key role for lipid-regulated interactions with the endocytic and autophagic systems in controlling the size and number of SGs and their capacity to release exosomes.


Subject(s)
Exosomes , Mast Cells , Secretory Vesicles , Exosomes/metabolism , Mast Cells/metabolism , Animals , Secretory Vesicles/metabolism , Tetraspanin 30/metabolism , Mice , Endosomes/metabolism , Membrane Fusion , Golgi Apparatus/metabolism
13.
Int J Mol Sci ; 25(14)2024 Jul 10.
Article in English | MEDLINE | ID: mdl-39062810

ABSTRACT

Inhibitors of sodium/glucose cotransporter 2 (SGLT2), such as empagliflozin and canagliflozin, have been widely used to block glucose reabsorption in the proximal tubules of kidneys in patients with diabetes. A meta-analysis suggested that SGLT2 inhibitors are associated with a decreased risk of asthma development. Therefore, we investigated whether SGLT2 inhibitors could suppress allergic asthma. Empagliflozin and canagliflozin suppressed the in vitro degranulation reaction induced by antigens in a concentration-dependent manner in RBL-2H3 mast cells. Empagliflozin and canagliflozin were administered to BALB/c mice sensitized to ovalbumin (OVA). The administration of empagliflozin or canagliflozin significantly suppressed OVA-induced airway hyper-responsiveness and increased the number of immune cells and pro-inflammatory cytokine mRNA expression levels in bronchoalveolar lavage fluid. The administration of empagliflozin and canagliflozin also suppressed OVA-induced histopathological changes in the lungs. Empagliflozin and canagliflozin also suppressed serum IgE levels. These results suggested that empagliflozin and canagliflozin may be applicable for the treatment of allergic asthma by suppressing immune responses.


Subject(s)
Asthma , Benzhydryl Compounds , Canagliflozin , Glucosides , Mice, Inbred BALB C , Ovalbumin , Sodium-Glucose Transporter 2 Inhibitors , Animals , Canagliflozin/pharmacology , Canagliflozin/therapeutic use , Sodium-Glucose Transporter 2 Inhibitors/pharmacology , Sodium-Glucose Transporter 2 Inhibitors/therapeutic use , Asthma/drug therapy , Asthma/immunology , Glucosides/pharmacology , Glucosides/therapeutic use , Benzhydryl Compounds/pharmacology , Benzhydryl Compounds/therapeutic use , Mice , Ovalbumin/adverse effects , Lung/pathology , Lung/drug effects , Lung/metabolism , Mast Cells/drug effects , Mast Cells/metabolism , Mast Cells/immunology , Immunoglobulin E/blood , Immunoglobulin E/immunology , Bronchoalveolar Lavage Fluid , Rats , Cytokines/metabolism , Cell Degranulation/drug effects , Disease Models, Animal , Sodium-Glucose Transporter 2/metabolism , Male
14.
Mol Pain ; 20: 17448069241272149, 2024.
Article in English | MEDLINE | ID: mdl-39079948

ABSTRACT

Cadaverine is an endogenous metabolite produced by the gut microbiome with various activity in physiological and pathological conditions. However, whether cadaverine regulates pain or itch remains unclear. In this study, we first found that cadaverine may bind to histamine 4 receptor (H4R) with higher docking energy score using molecular docking simulations, suggesting cadaverine may act as an endogenous ligand for H4R. We subsequently found intradermal injection of cadaverine into the nape or cheek of mice induces a dose-dependent scratching response in mice, which was suppressed by a selective H4R antagonist JNJ-7777120, transient receptor potential vanilloid 1 (TRPV1) antagonist capsazepine and PLC inhibitor U73122, but not H1R antagonist or TRPA1 antagonist or TRPV4 antagonist. Consistently, cadaverine-induced itch was abolished in Trpv1-/- but not Trpa1-/- mice. Pharmacological analysis indicated that mast cells and opioid receptors were also involved in cadaverine-induced itch in mice. scRNA-Seq data analysis showed that H4R and TRPV1 are mainly co-expressed on NP2, NP3 and PEP1 DRG neurons. Calcium imaging analysis showed that cadaverine perfusion enhanced calcium influx in the dissociated dorsal root ganglion (DRG) neurons, which was suppressed by JNJ-7777120 and capsazepine, as well as in the DRG neurons from Trpv1-/- mice. Patch-clamp recordings found that cadaverine perfusion significantly increased the excitability of small diameter DRG neurons, and JNJ-7777120 abolished this effect, indicating involvement of H4R. Together, these results provide evidences that cadaverine is a novel endogenous pruritogens, which activates H4R/TRPV1 signaling pathways in the primary sensory neurons.


Subject(s)
Cadaverine , Ganglia, Spinal , Mice, Inbred C57BL , Pruritus , TRPV Cation Channels , Animals , Pruritus/metabolism , Pruritus/chemically induced , TRPV Cation Channels/metabolism , Ganglia, Spinal/metabolism , Ganglia, Spinal/drug effects , Male , Cadaverine/analogs & derivatives , Cadaverine/pharmacology , Cadaverine/metabolism , Mice , Mice, Knockout , Humans , Mast Cells/metabolism , Mast Cells/drug effects , TRPA1 Cation Channel/metabolism , Sensory Receptor Cells/metabolism , Sensory Receptor Cells/drug effects , Receptors, G-Protein-Coupled/metabolism , Capsaicin/analogs & derivatives
15.
Int J Mol Sci ; 25(13)2024 Jul 06.
Article in English | MEDLINE | ID: mdl-39000527

ABSTRACT

Mast cells are essential immune cells involved in the host's defence against gastrointestinal nematodes. To evade the immune response, parasitic nematodes produce a variety of molecules. Galectin 1, produced by Teladorsagia circumcincta (Tci-gal-1), reduces mast cell degranulation and selectively regulates mediator production and release in an IgE-dependent manner. To uncover the activity of Tci-gal-1, we have examined the effect of the protein on gene expression, protein production, and apoptosis in activated basophilic leukaemia RBL-2H3 cells. Rat RBL-2H3 cells were activated with anti-DNP IgE and DNP-HSA, and then treated with Tci-gal-1. Microarray analysis was used to examine gene expression. The levels of several apoptosis-related molecules and cytokines were determined using antibody arrays and ELISA. Early and late apoptosis was evaluated cytometrically. Degranulation of cells was determined by a ß-hexosaminidase release assay. Treatment of activated RBL-2H3 cells with Tci-gal-1 resulted in inhibited apoptosis and decreased degranulation, although we did not detect significant changes in gene expression. The production of pro-apoptotic molecules, receptor for advanced glycation end products (RAGE) and Fas ligand (FasL), and the cytokines IL-9, IL-10, IL-13, TNF-α, and IL-2 was strongly inhibited. Tci-gal-1 modulates apoptosis, degranulation, and production of cytokines by activated RBL-2H3 cells without detectable influence on gene transcription. This parasite protein is crucial for modulation of the protective immune response and the inhibition of chronic inflammation driven by mast cell activity.


Subject(s)
Apoptosis , Cell Degranulation , Immunoglobulin E , Leukemia, Basophilic, Acute , Animals , Rats , Immunoglobulin E/immunology , Cell Line, Tumor , Leukemia, Basophilic, Acute/metabolism , Leukemia, Basophilic, Acute/immunology , Leukemia, Basophilic, Acute/pathology , Mast Cells/immunology , Mast Cells/metabolism , Cytokines/metabolism , Galectins/metabolism , Helminth Proteins/pharmacology , Helminth Proteins/metabolism , Galectin 1/metabolism , Galectin 1/genetics
16.
Article in English | MEDLINE | ID: mdl-39067315

ABSTRACT

Artemisia capillaris Thunb. (A. capillaris) is a well-known traditional Chinese herbal medicine with a wide range of pharmacological effects, such as soothing the liver and gallbladder, heat clearance, and detoxifying. Hence, its extract is commonly added to various traditional Chinese medicine formulas. Traditional Chinese medicine injection (TCMI) is a mature pharmaceutical dosage form developed using TCM theory combined with modern science and technology. Notably, allergic reactions, especially pseudo­allergic reactions (PARs), greatly limited the use of these injections. Therefore, screening pseudo­allergic components in A. capillaris extract is clinically significant. In the present study, we proposed a two-dimensional screening and identification system based on mas-related G protein-coupled receptor X2-HALO-tag/cell membrane chromatography (MrgX2-HALO-tag/CMC) high performance liquid chromatography mass spectrometry (HPLC-MS); seven potential active components were screened from 75 % ethanol extract of A. capillaris: NCA, CA, CCA, 1,3-diCQA, ICA-B, ICA-A, and ICA-C. The receptor-ligand interactions between these seven compounds and MrgX2 protein were analyzed using frontal analysis and molecular docking technology. Furthermore, a mast cell degranulation-related assay was used to assess the pseudo­allergic activity of these compounds. The screened compounds can serve as ligands of MrgX2, and this study provides a research basis for pseudo­allergic reactions caused by TCMIs containing A. capillaris.


Subject(s)
Artemisia , Receptors, G-Protein-Coupled , Artemisia/chemistry , Chromatography, High Pressure Liquid/methods , Humans , Ligands , Receptors, G-Protein-Coupled/metabolism , Drugs, Chinese Herbal/chemistry , Drugs, Chinese Herbal/analysis , Drugs, Chinese Herbal/pharmacology , Plant Extracts/chemistry , Plant Extracts/pharmacology , Mast Cells/drug effects , Mast Cells/metabolism , Animals , Molecular Docking Simulation , Mass Spectrometry/methods , Nerve Tissue Proteins , Receptors, Neuropeptide
17.
Int J Biol Macromol ; 275(Pt 2): 133704, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38972655

ABSTRACT

To identify the key amino acids (AAs) affecting the allergenicity of hemocyanin (HC) allergens from Chinese mitten crabs, in this study, two epitopes, P1-SHFTGSKSNPEQR and P2-LSPGANTITR were employed and four potential key AAs (P1: F3 and N9 and P2: N6 and R10) were predicted. Mast cell and mouse models revealed that four mutants induced lower levels of immunoglobulin E (IgE) and Th2 type cytokines (15.47-49.89 %), proving that F3, N9, N6, and R10 were the key AAs of two epitopes. Mutants reduce allergic responses via the Th2 pathway. However, the roles of every key AA affecting allergenicity were different (P1-F3 > N9 and P2-N6 > R10). In addition, lower transport and higher efflux were observed in the mutants during transport absorption by Caco-2 cells. The allergenicity of HC was stronger when the transport absorption efficiency of epitopes and mutants was higher and their efflux was lower. Our study provides a novel method for revealing the allergenic molecular mechanisms of food allergens.


Subject(s)
Allergens , Amino Acids , Hemocyanins , Mast Cells , Animals , Allergens/immunology , Allergens/genetics , Allergens/chemistry , Humans , Hemocyanins/immunology , Hemocyanins/chemistry , Mice , Amino Acids/immunology , Caco-2 Cells , Mast Cells/immunology , Mast Cells/metabolism , Immunoglobulin E/immunology , Epitopes/immunology , Brachyura/immunology , Cytokines/metabolism , Amino Acid Sequence , Mutation
18.
Toxicology ; 506: 153882, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38971550

ABSTRACT

Diazinon is an organophosphorus (OP) insecticides used in agriculture, home gardening and indoor pest control in Japan. It can activate macrophages and induce pro-inflammatory responses and has been reported to cause airway hyper-reactivity, suggesting the possibility of asthma exacerbation from exposure to OP insecticides. Despite the correlation between insecticide use and the pathogenesis of allergic diseases, there have been no reports on the effects of diazinon on mast cell function. Therefore, in this study, we investigated the effects of diazinon on mast cell function in rat basophilic leukemia (RBL)-2H3 cells. Surprisingly, we found that diazinon inhibited mast cell activation, although the degree of inhibition varied with concentration. Diazinon induced reactive oxygen species (ROS) generation and HO-1 expression at a concentration of 150 µM without affecting cell viability. Diazinon inhibited A23187-mediated degranulation and Tnf and Il4 expression in RBL-2H3 cells but did not affect calcium influx. Suppression of degranulation by diazinon was reversed when the culture supernatant was removed. As a signaling event downstream of calcium influx, diazinon inhibited the phosphorylation of extracellular signal-regulated kinase (ERK) induced by A23187, whereas the phosphorylation of p38 had little effect. IgE cross-linking-mediated degranulation as well as the induction of Tnf and IL4 expression was significantly inhibited by diazinon, while diazinon had little effect on calcium influx. In conclusion, diazinon inhibited mast cell activation, including degranulation and cytokine expression. When evaluating the in vivo effects of diazinon, its potential to inhibit mast cell activation should be considered in the pathophysiology and development of allergic diseases in terms of basic and clinical aspects, respectively, although the effect of diazinon varies depending on the cell type.


Subject(s)
Cell Degranulation , Cytokines , Diazinon , Insecticides , Mast Cells , Diazinon/toxicity , Animals , Mast Cells/drug effects , Mast Cells/metabolism , Rats , Cytokines/metabolism , Insecticides/toxicity , Cell Degranulation/drug effects , Reactive Oxygen Species/metabolism , Cell Line, Tumor , Cell Survival/drug effects
19.
Am J Physiol Renal Physiol ; 327(3): F476-F488, 2024 Sep 01.
Article in English | MEDLINE | ID: mdl-38991005

ABSTRACT

The etiology of interstitial cystitis/bladder pain syndrome (IC/BPS) is unknown but likely multifactorial. IC/BPS symptoms can be exacerbated by psychological stress, but underlying mechanisms remain to be defined. Transient receptor potential vanilloid 1 (TRPV1) channels, expressed on nerve fibers, have been implicated in bladder dysfunction and colonic hypersensitivity with stress in rodents. Histamine/H1R activation of TRPV1+ nerves increases bladder afferent fiber sensitivity to distension. TRPV1 channels are also expressed on mast cells, previously implicated in contributing to IC/BPS etiology and symptoms. We have examined the contribution of TRPV1 and mast cells to bladder dysfunction after repeated variate stress (RVS). RVS increased (P ≤ 0.05) serum and fecal corticosterone expression and induced anxiety-like behavior in wild-type (WT) mice. Intravesical instillation of the selective TRPV1 antagonist capsazepine (CPZ) rescued RVS-induced bladder dysfunction in WT mice. Trpv1 knockout (KO) mice did not increase voiding frequency with RVS and did not exhibit increased serum corticosterone expression despite exhibiting anxiety-like behavior. Mast cell-deficient mice (B6.Cg-Kitw-sh) failed to demonstrate RVS-induced increased voiding frequency or serum corticosterone expression, whereas control (no stress) mast cell-deficient mice had similar functional bladder capacity to WT mice. TRPV1 protein expression was significantly increased in the rostral lumbar (L1-L2) spinal cord and dorsal root ganglia (DRG) in WT mice exposed to RVS, but no changes were observed in lumbosacral (L6-S1) spinal segments or DRG. These studies demonstrated TRPV1 and mast cell involvement in RVS-induced increased voiding frequency and suggest that TRPV1 and mast cells may be useful targets to mitigate stress-induced urinary bladder dysfunction.NEW & NOTEWORTHY Using pharmacological tools and transgenic mice in a repeated variate stress (RVS) model in female mice, we demonstrate that transient receptor potential vanilloid 1 (TRPV1) and mast cells contribute to the increased voiding frequency observed following RVS. TRPV1 and mast cells should continue to be considered as targets to improve bladder function in stress-induced bladder dysfunction.


Subject(s)
Corticosterone , Mast Cells , Mice, Inbred C57BL , Mice, Knockout , Stress, Psychological , TRPV Cation Channels , Urinary Bladder , Animals , TRPV Cation Channels/metabolism , TRPV Cation Channels/genetics , Mast Cells/metabolism , Female , Urinary Bladder/metabolism , Urinary Bladder/innervation , Stress, Psychological/complications , Stress, Psychological/metabolism , Corticosterone/blood , Disease Models, Animal , Cystitis, Interstitial/metabolism , Cystitis, Interstitial/physiopathology , Cystitis, Interstitial/pathology , Cystitis, Interstitial/genetics , Mice , Urination , Capsaicin/pharmacology , Capsaicin/analogs & derivatives , Behavior, Animal , Anxiety/metabolism
20.
Life Sci Alliance ; 7(10)2024 Oct.
Article in English | MEDLINE | ID: mdl-39009412

ABSTRACT

Treatments for Alzheimer's disease have primarily focused on removing brain amyloid plaques to improve cognitive outcomes in patients. We developed small compounds, known as BK40143 and BK40197, and we hypothesize that these drugs alleviate microglial-mediated neuroinflammation and induce autophagic clearance of neurotoxic proteins to improve behavior in models of neurodegeneration. Specificity binding assays of BK40143 and BK40197 showed primary binding to c-KIT/Platelet Derived Growth Factor Receptors (PDGFR)α/ß, whereas BK40197 also differentially binds to FYVE finger-containing phosphoinositide kinase (PIKFYVE). Both compounds penetrate the CNS, and treatment with these drugs inhibited the maturation of peripheral mast cells in transgenic mice, correlating with cognitive improvements on measures of memory and anxiety. In the brain, microglial activation was profoundly attenuated and amyloid-beta and tau were reduced via autophagy. Multi-kinase inhibition, including c-KIT, exerts multifunctional effects to reduce neurodegenerative pathology via autophagy and microglial activity and may represent a potential therapeutic option for neurodegeneration.


Subject(s)
Alzheimer Disease , Disease Models, Animal , Mice, Transgenic , Microglia , Proto-Oncogene Proteins c-kit , Alzheimer Disease/drug therapy , Alzheimer Disease/metabolism , Animals , Mice , Proto-Oncogene Proteins c-kit/metabolism , Microglia/drug effects , Microglia/metabolism , Autophagy/drug effects , Humans , Amyloid beta-Peptides/metabolism , Protein Kinase Inhibitors/pharmacology , Protein Kinase Inhibitors/therapeutic use , Brain/metabolism , Brain/drug effects , Brain/pathology , Mast Cells/drug effects , Mast Cells/metabolism , tau Proteins/metabolism , Plaque, Amyloid/metabolism , Plaque, Amyloid/drug therapy , Behavior, Animal/drug effects , Male
SELECTION OF CITATIONS
SEARCH DETAIL