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人参酸性多糖对骨髓细胞的辐射防护作用

Radioprotective effects of an acidic polysaccharide of Panax ginseng on bone marrow cells.

作者信息

Kim Hyun Ji, Kim Mi Hyoung, Byon Yun Young, Park Jae Woo, Jee Youngheun, Joo Hong Gu

机构信息

Department of Veterinary Medicine, College of Applied Life Sciences, Cheju National University, Jeju 690-756, Korea.

出版信息

J Vet Sci. 2007 Mar;8(1):39-44. doi: 10.4142/jvs.2007.8.1.39.

Abstract

An acidic polysaccharide of Panax ginseng (APG), so called ginsan is known to have important immunomodulatory activities. It was recently reported that APG has radioprotective effects in mice but the detailed mechanism was not fully elucidated. This study examined the effects of APG on bone marrow cells (BMs). The phenotypical and functional changes in APG-treated BMs after gamma radiation were studied. The benefit of APG on BMs damaged by gamma radiation was determined by measuring the cell viability. Using 2 different assays, a pretreatment with APG significantly increased the viability of BMs against gamma radiation. APG-treated BMs had a significantly higher amount of IL-12, which is a major cytokine for immune responses, compared with the medium-treated BMs. The expression of MHC class II molecules of APG-treated BMs was also increased, and APG-treated BMs showed significantly higher levels of allogeneic CD4(+) T lymphocyte proliferation. Furthermore, APG-treated mice had a larger number of BMs after gamma radiation than the control mice, and the BMs of APG-treated mice were successfully cultured into dendritic cells, which are the representative antigenpresenting cells. Overall, this study shows that APG alters the phenotype of BMs, increases the viability and alloreactivity of BMs after gamma radiation both in vitro and in vivo. Therefore, APG may be a good candidate radioprotective agent for BMs.

摘要

人参的一种酸性多糖(APG),即所谓的人参聚糖,已知具有重要的免疫调节活性。最近有报道称APG对小鼠有辐射防护作用,但具体机制尚未完全阐明。本研究考察了APG对骨髓细胞(BMs)的影响。研究了γ射线照射后经APG处理的BMs的表型和功能变化。通过测量细胞活力来确定APG对受γ射线损伤的BMs的益处。使用两种不同的检测方法,用APG预处理可显著提高BMs对γ射线的活力。与培养基处理的BMs相比,经APG处理的BMs中白细胞介素-12(一种免疫反应的主要细胞因子)的含量显著更高。经APG处理的BMs中主要组织相容性复合体II类分子的表达也有所增加,且经APG处理的BMs显示出更高水平的同种异体CD4(+)T淋巴细胞增殖。此外,经γ射线照射后,APG处理的小鼠的BMs数量比对照小鼠更多,并且经APG处理的小鼠的BMs成功培养成了树突状细胞,树突状细胞是典型的抗原呈递细胞。总体而言,本研究表明APG改变了BMs的表型,在体外和体内均可提高γ射线照射后BMs的活力和同种异体反应性。因此,APG可能是一种良好的BMs辐射防护剂候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ea/2872695/970e753a98d9/jvs-8-39-g001.jpg

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