西洋参改变cs诱导的人淋巴细胞DNA损伤和氧化应激。

Tung-Kwang Lee, Kevin F O'Brien, Weidong Wang, Chao Sheng, Tao Wang, Roberta M Johnke, Ron R Allison
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引用次数: 13

摘要

人参的多重生物活性与其抗氧化能力密切相关,而抗氧化能力与人参皂苷含量有关。由于辐射诱导的细胞死亡和组织损伤的关键机制是产生攻击细胞DNA的活性氧(ROS),因此本研究侧重于标准化北美人参提取物(NAGE)对(137)cs诱导的人外周血淋巴细胞(PBL)氧化应激的影响,该研究来自10名健康个体(6M/4F),年龄为42.7 +/- 4.6岁。在两个不同的时间点(照射前0小时和24小时),我们将NAGE(250 - 1000微克ml(-1))应用于单核细胞培养,进行细胞动力学-阻断微核(MN)测定,并测定PBL中的氧化应激状态。我们发现,在这两个时间点,在辐照(1 Gy和2 Gy)后,NAGE以浓度依赖的方式显著降低了PBL中的MN产量(P
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American Ginseng Modifies Cs-Induced DNA Damage and Oxidative Stress in Human Lymphocytes.

The multifold bioactive medicinal properties of ginseng have been closely linked to its antioxidative ability, which is related to its ginsenoside content. Since the key mechanism of radiation-induced cell death and tissue damage is the generation of reactive oxygen species (ROS) that attack cellular DNA, this study focuses on the impact of a standardized North American ginseng extract (NAGE) on (137)Cs-induced oxidative stress in human peripheral lymphocytes (PBL) obtained from 10 healthy individuals (6M/4F), 42.7 +/- 4.6 years of age. At two different time points (0 h and 24 h before irradiation), we applied NAGE (250 - 1000 microg ml(-1)) to mononuclear cell cultures for cytokinesis-block micronuclei (MN) assay and determination of the state of oxidative stress in PBL. We found that at both time points, NAGE significantly reduced the MN yields in PBL after irradiation (1 and 2 Gy) in a concentration-dependent manner (P<0.001). Compared with radiation alone, the maximum reduction rate of MN yield were 51.1% and 49.1% after 1 Gy and 2 Gy exposures, respectively. We also found that before irradiation the presence of NAGE in the culture medium resulted in a significant increased intracellular total antioxidant capacity (TAC) in PBL. At both time points, the increment of (137)Cs-induced MN yields in PBL was positively correlated with the increment of intracellular ROS production (R = 0.6 - 0.7, P = 0.002), but negatively correlated with the reduction of TAC levels (R = -0.4 -0.5, P = 0.02 - 0.004). However, the presence of NAGE in the culture medium significantly increased the TAC levels, while concomitantly decreasing both ROS production and MN yields in PBL (P<0.001). Our findings that NAGE is effective in protecting human PBL against radiation-induced oxidative stress should encourage further in vivo study of dietary supplementation with NAGE as an effective natural radiation countermeasure.

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