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首页> 外文期刊>Glycoconjugate journal >Neutralization of B. anthracis toxins during ex vivo phagocytosis
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Neutralization of B. anthracis toxins during ex vivo phagocytosis

机译:体内吞噬过程中炭疽杆菌毒素的中和

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Glycoconjugates (GCs) are recognized as stimulation and signaling agents, affecting cell adhesion, activation, and growth of living organisms. Among GC targets, macrophages are considered ideal since they play a central role in inflammation and immune responses against foreign agents. In this context, we studied the effects of highly selective GCs in neutralizing toxin factors produced by B. anthracis during phagocytosis using murine macrophages. The effects of GCs were studied under three conditions: A) prior to, B) during, and C) following exposure of macrophages to B. anthracis individual toxin (protective antigen [PA], edema factor [EF], lethal factor [LF] or toxin complexes (PA-EF-LF, PA-EF, and PA-LF). We employed ex vivo phagocytosis and post-phagocytosis analysis including direct microscopic observation of macrophage viability, and macrophage activation. Our results demonstrated that macrophages are more prone to adhere to GC-altered PA-EF-LF, PA-EF, and PA-LF toxin complexes. This adhesion results in a higher phagocytosis rate and toxin complex neutralization during phagocytosis. In addition, GCs enhance macrophage viability, activate macrophages, and stimulate nitric oxide (NO) production. The present study may be helpful in identifying GC ligands with toxin-neutralizing and/or immunomodulating properties. In addition, our study could suggest GCs as new targets for existing vaccines and the prospective development of vaccines and immunomodulators used to combat the effects of B. anthracis.
机译:糖缀合物(GCs)被认为是刺激和信号传导剂,影响细胞粘附,活化和活生物体的生长。在GC靶标中,巨噬细胞被认为是理想的,因为它们在炎症和针对外来因子的免疫反应中起着核心作用。在这种情况下,我们研究了高选择性气相色谱在中和鼠巨噬细胞吞噬过程中中和炭疽芽孢杆菌产生的毒素因子的作用。在以下三个条件下研究了GC的作用:A)巨噬细胞暴露于炭疽杆菌单个毒素(保护性抗原[PA],浮肿因子[EF],致死因子[LF])之前,B)期间和C)之后或毒素复合物(PA-EF-LF,PA-EF和PA-LF),我们采用了离体吞噬作用和吞噬作用后分析,包括直接显微镜下观察巨噬细胞的活力和巨噬细胞的活化,结果表明巨噬细胞更容易发生粘附到GC改变的PA-EF-LF,PA-EF和PA-LF毒素复合物上,这种粘附作用可提高吞噬作用中的吞噬率和毒素复合物的中和作用;此外,GC还可以增强巨噬细胞的活力,激活巨噬细胞和刺激一氧化氮的产生,本研究可能有助于鉴定具有毒素中和和/或免疫调节特性的GC配体,此外,我们的研究还可能建议将GC用作现有疫苗的新靶标以及对疫苗的前瞻性开发疫苗和免疫调节剂,用于对抗炭疽杆菌的影响。

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