NETosis and Calcium influx in Dromedary Camel Neutrophils after in vitro Toll-like Receptor Stimulation

Q4 Veterinary World''s Veterinary Journal Pub Date : 2023-03-25 DOI:10.54203/scil.2023.wvj23
Khuzama Albahrani, Jumanah Alessa, Baraa Falemban, M. Alkuwayti, J. Hussen
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Abstract

Neutrophilic granulocytes are vital immune cells of the early response to pathogens. They contribute to the antimicrobial response through phagocytosis, production of reactive oxygen species, cytokine production, degranulation, and NET-formation. Neutrophil extracellular traps (NETs), also known as NETosis, are a critical antibacterial effector mechanism of cells of myeloid effector cells, including neutrophils and macrophages. Toll-like receptors (TLRs) are pattern recognition receptors (PRRs) that mediate pathogen sensing through the recognition of microbial structures known as pathogen-associated molecular patterns (PAMPs). The present study aimed to investigate the potential of several TLR ligands that mimic the sensing of bacterial and viral pathogens to stimulate NET-formation or Ca2+ influx in camel neutrophils. Neutrophils were purified from blood and were stimulated in vitro with ligands to TLR4, TLR2/1, TLR7/8, or TLR3. Net-formation was analyzed using the DNA-sensitive dye SYTOX™ Green and staining with antibodies to the neutrophil's granular enzyme myeloperoxidase. Real-time stimulation-induced Ca2+ influx was measured using the Ca2+-sensitive dye Flou-4 and flow cytometry. Only the TLR4-ligand lipopolysaccharide (LPS) could induce NET-formation in camel neutrophils, while none of the investigated TLR agonists showed a Ca2+ influx-inducing effect in camel neutrophils. The current study represents the first report on the impact of direct activation of TLR on NET-formation and Ca2+ influx in camel neutrophils with a selective effect of LPS on NET-formation induction. Future studies may investigate the molecular mechanisms behind the different responsiveness of bovine and camel neutrophils to TLR stimulation.
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体外toll样受体刺激后单峰骆驼中性粒细胞的NETosis和钙内流
嗜中性粒细胞是对病原体早期反应的重要免疫细胞。它们通过吞噬作用、活性氧的产生、细胞因子的产生、脱颗粒和NET的形成来促进抗菌反应。中性粒细胞外陷阱(NETs),也称为NETosis,是髓系效应细胞(包括中性粒细胞和巨噬细胞)细胞的关键抗菌效应机制。Toll样受体(TLRs)是一种模式识别受体(PRRs),通过识别被称为病原体相关分子模式(PAMP)的微生物结构来介导病原体感知。本研究旨在研究几种模拟细菌和病毒病原体感应的TLR配体刺激骆驼中性粒细胞中NET形成或Ca2+内流的潜力。中性粒细胞从血液中纯化,并在体外用TLR4、TLR2/1、TLR7/8或TLR3的配体刺激。使用DNA敏感染料SYTOX分析网络形成™ 绿色,用中性粒细胞颗粒酶髓过氧化物酶抗体染色。使用Ca2+敏感染料Flou-4和流式细胞术测量实时刺激诱导的Ca2+内流。只有TLR4配体脂多糖(LPS)可以在骆驼中性粒细胞中诱导NET的形成,而所研究的TLR激动剂都没有在骆驼中性白细胞中显示出Ca2+内流诱导作用。本研究首次报道了TLR的直接激活对骆驼中性粒细胞中NET形成和Ca2+内流的影响,以及LPS对NET形成诱导的选择性作用。未来的研究可能会研究牛和骆驼中性粒细胞对TLR刺激的不同反应性背后的分子机制。
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来源期刊
World''s Veterinary Journal
World''s Veterinary Journal Veterinary-Veterinary (all)
CiteScore
1.00
自引率
0.00%
发文量
43
期刊介绍: The World''s Veterinary Journal (ISSN 2322-4568) is an international, peer reviewed open access journal aims to publish the high quality material from veterinary scientists'' studies. All accepted articles are published Quarterly in full text on the Internet. WVJ publishes the results of original scientific researches, reviews, case reports and short communications, in all fields of veterinary science. In details, topics are: Behavior Environment and welfare Animal reproduction and production Parasitology Endocrinology Microbiology Immunology Pathology Pharmacology Epidemiology Molecular biology Immunogenetics Surgery Virology Physiology Vaccination Gynecology Exotic animals Animal diseases Radiology Ophthalmology Dermatology Chronic disease Anatomy Non-surgical pathology issues of small to large animals Cardiology and oncology.
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