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作为生物标志物的苏氏圆腹鯵的放射防护剂量测定,针对遗传毒性检测所感知的伽马辐射剂量。

Radio-protective dosimetry of Pangasius sutchi as a biomarker, against gamma radiation dosages perceived by genotoxic assays.

机构信息

Centre For Environmental Nuclear Research, SRM Institute of Science and Technology, Administrative Block 4th Floor, Room No -2, SRM Nagar, Potheri, Chennai 603203, India.

Centre For Environmental Nuclear Research, SRM Institute of Science and Technology, Administrative Block 4th Floor, Room No -2, SRM Nagar, Potheri, Chennai 603203, India.

出版信息

Ecotoxicol Environ Saf. 2018 Nov 30;164:629-640. doi: 10.1016/j.ecoenv.2018.08.071. Epub 2018 Aug 28.

Abstract

Exposure to ionizing radiation is harmful to any living organism. It may cause varying levels of genetic mutation or ultimately death. Synthetic compounds have been used to counteract the hazardous effect of radiation on the live cells, but the possibility of these synthetic compounds being harmful to the organism being treated also exists. Herbal formulations are thus being explored as a possible alternative for the synthetic radioprotectant. Induction of DNA damage in fishes caused by ionizing radiation and its protection by phytocompounds is a hardly studied topic. In this study, we analyzed the radioprotective effect of Gymnema sylvestre leaves extract (GS) and its active compound gymnemagenin (GG) against different doses of gamma radiation (Co) on the freshwater fish Pangasius sutchi. The radioprotective efficacy was assessed by micronuclei and alkaline comet assays. The freshwater fish P. sutchi was pre-treated with intramuscular injection (IM) of amifostine (83.3 mg/kg of B.W.), GS (25 mg/kg of B.W.) and GG (0.3 mg/kg of B.W.), 1 h prior to the gamma radiation. The fishes were exposed to LD, LD and LD of gamma radiation and the protection activities were assessed by analyzing the number of micronuclei (MN) and erythrocytic abnormalities in the blood after 2, 4, 8, 16 and 32 days after exposure. Compared to the irradiated fishes, frequency of erythrocytic abnormalities were decreased in response to the radio-protection in the amifostine treated groups for all three doses of gamma radiation (LD - 77.62%), (LD - 80.11%) and (LD - 82.30%); GS (LD - 62.66%), (LD - 69.74%) and (LD - 70.81%); and GG (LD - 49.42%), (LD 53.43%) and (LD - 58.42%). Similarly, a significant radio-protective effect in terms of decremented DNA damage was observed using the comet assay after post exposure. The percentage of protection noted for amifostine was (LD - 58.68%), (LD - 64.52%) and (LD - 74.40%); GS (LD - 53.84%), (LD - 59.02%) and (LD - 65.97%); GG (LD - 49.85%), (LD - 52.56%) and (LD - 64.30%). From the current study, we can conclude that the radioprotective efficacy of the GS is similar to the synthetic compound (amifostine) and also greater than the bioactive compound (GG). The synergetic effect of the plant extract which leads to a better protection than the bioactive compound must be further studied. MN and Comet assays can easily identify the damage due to radiation exposure and thus can be used as predictive biomarkers for aquatic organisms exposed to radiation.

摘要

电离辐射对任何生物体都是有害的。它可能导致不同程度的基因突变,最终导致死亡。人们已经使用合成化合物来抵消辐射对活细胞的有害影响,但这些合成化合物对被治疗的生物体也可能有害。因此,人们正在探索草药制剂作为合成辐射防护剂的替代品。鱼类因电离辐射引起的 DNA 损伤及其被植物化合物的保护作用是一个研究甚少的课题。在这项研究中,我们分析了毛叶番荔枝叶提取物(GS)及其活性化合物 Gymnemagenin(GG)对不同剂量γ辐射(Co)对淡水鱼 Pangasius sutchi 的辐射防护作用。通过微核和碱性彗星试验评估了辐射防护效果。将淡水鱼 P. sutchi 用肌肉内注射(IM)用氨磷汀(83.3mg/kg BW)、GS(25mg/kg BW)和 GG(0.3mg/kg BW)预处理,在接受γ辐射前 1 小时。将鱼类暴露于 LD、LD 和 LD 的γ辐射下,并在暴露后 2、4、8、16 和 32 天后分析血液中微核和红细胞异常的数量来评估保护活性。与辐照鱼类相比,三种剂量的γ辐射(LD-77.62%)、(LD-80.11%)和(LD-82.30%)、GS(LD-62.66%)、(LD-69.74%)和(LD-70.81%)以及 GG(LD-49.42%)、(LD-53.43%)和(LD-58.42%)中,红细胞异常的频率因辐射保护而降低。同样,在暴露后使用彗星试验观察到 DNA 损伤减少具有显著的辐射防护作用。氨磷汀的保护率为(LD-58.68%)、(LD-64.52%)和(LD-74.40%);GS(LD-53.84%)、(LD-59.02%)和(LD-65.97%);GG(LD-49.85%)、(LD-52.56%)和(LD-64.30%)。从目前的研究中,我们可以得出结论,GS 的辐射防护效果与合成化合物(氨磷汀)相似,也大于生物活性化合物(GG)。植物提取物的协同作用导致的保护作用优于生物活性化合物,这一点必须进一步研究。微核和彗星试验可以很容易地识别出因辐射暴露而造成的损伤,因此可以作为暴露于辐射的水生生物的预测生物标志物。

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