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鬼臼毒素和芦丁调节 M1(iNOS+)巨噬细胞并减轻小鼠致死性辐射(LR)诱导的炎症反应。

Podophyllotoxin and Rutin Modulate M1 (iNOS+) Macrophages and Mitigate Lethal Radiation (LR) Induced Inflammatory Responses in Mice.

机构信息

Laboratory of Translational Medicine, School of Life Science, University of Hyderabad, Hyderabad, India.

Institute of Nuclear Medicine and Allied Sciences, Defence Research and Development Organization, New Delhi, India.

出版信息

Front Immunol. 2019 Feb 12;10:106. doi: 10.3389/fimmu.2019.00106. eCollection 2019.

Abstract

Accidental exposure to lethal doses of Gamma radiation leads to the systemic inflammatory syndrome which causes mortality. In view of this, management of hemopoietic syndrome by modulating pro-inflammatory response in clinically manageable time period seems to be the most appropriate strategy for encountering radiation induced damage and recovery. As both tissue and peripheral macrophages are critical for the management of radiation induced injuries, we have unraveled the immunomodulatory potential of radioprotective formulation (G-003M) on peripheral macrophages populations in this study. G-003M inhibited lethal radiation induced NO and Th1 effector cytokines in the exposed macrophages indicating its M1 dim polarizing capacity. In similar lines, conditioning of mice with G-003M before lethal irradiation (LR) inhibited LR induced titre of Th1 effector cytokines in both serums as well as in lung, small intestine, and spleen tissue confirming its immunomodulatory potential. G-003M potentially down modulated inflammatory response in LPS induced inflammatory model and enhanced M2 polarization of iNOS+ M1 effector macrophages providing a molecular hint on G-003M mechanism of action on macrophages. These observations revealed that G-003M potentially modulate pro-inflammatory programming of macrophages and mitigate radiation-induced inflammatory stress which is believed to contribute significantly to radioprotective attribute of G-003M. In this study, we demonstrate that Rutin and Podophyllotoxin drive M1/M2 polarization of LR primed macrophages apart from protecting DNA from radiation. These drugs have the capacity to programme innate immune cells like macrophages which may be involved in homeostasis during recovery.

摘要

意外暴露于致死剂量的伽马射线会导致全身炎症综合征,从而导致死亡。鉴于此,在临床可管理的时间段内通过调节促炎反应来管理造血综合征似乎是应对辐射损伤和恢复的最恰当策略。由于组织和外周巨噬细胞对于管理辐射诱导的损伤都至关重要,因此我们在这项研究中揭示了放射保护制剂(G-003M)对外周巨噬细胞群体的免疫调节潜力。G-003M 抑制了暴露的巨噬细胞中致命辐射诱导的 NO 和 Th1 效应细胞因子的产生,表明其具有 M1 偏极化能力。类似地,在用 G-003M 对小鼠进行条件预处理后,再进行致死辐射(LR)照射,可抑制 LR 在血清和肺、小肠和脾组织中诱导的 Th1 效应细胞因子的产生,证实了其免疫调节潜力。G-003M 可能在 LPS 诱导的炎症模型中下调炎症反应,并增强 iNOS+M1 效应巨噬细胞的 M2 极化,为 G-003M 对巨噬细胞作用机制提供了分子线索。这些观察结果表明,G-003M 可能调节巨噬细胞的促炎编程,并减轻辐射引起的炎症应激,这被认为是 G-003M 放射保护特性的重要贡献因素。在这项研究中,我们证明了芦丁和鬼臼毒素除了保护 DNA 免受辐射外,还可以驱动 LR 致敏巨噬细胞的 M1/M2 极化。这些药物具有编程先天免疫细胞(如巨噬细胞)的能力,这可能涉及到恢复期间的体内平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26aa/6379314/89b547a5638b/fimmu-10-00106-g0001.jpg

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