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Plant Extracts and Plant-Derived Compounds: Promising Players in Countermeasure Strategy Against Radiological Exposure: A Review

机译:植物提取物和植物衍生化合物:应对放射线对策的有前途的参与者:综述

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Radiation exposure leads to several pathophysiological conditions, including oxidative damage, inflammationand fibrosis, thereby affecting the survival of organisms. This review explores the radiation countermeasureproperties of fourteen (14) plant extracts or plant-derived compounds against these cellular manifestations. It wasaimed at evaluating the possible role of plants or its constituents in radiation countermeasure strategy. All the 14plant extracts or compounds derived from it and considered in this review have shown some radioprotection indifferent in vivo, ex-vivo and or in vitro models of radiological injury. However, few have demonstrated advantagesover the others. C. majus possessing antioxidant, anti-inflammatory and immunomodulatory effects appearsto be promising in radioprotection. Its crude extracts as well as various alkaloids and flavonoids derived fromit, have shown to enhance survival rate in irradiated mice. Similarly, curcumin with its antioxidant and theability to ameliorate late effect of radiation exposure, combined with improvement in survival in experimentalanimal following irradiation, makes it another probable candidate against radiological injury. Furthermore,the extracts of P. hexandrum and P. kurroa in combine treatment regime, M. piperita, E. officinalis, A. sinensis,nutmeg, genistein and ginsan warrants further studies on their radioprotective potentials. However, one that hasreceived a lot of attention is the dietary flaxseed. The scavenging ability against radiation-induced free radicals,prevention of radiation-induced lipid peroxidation, reduction in radiation cachexia, level of inflammatorycytokines and fibrosis, are some of the remarkable characteristics of flaxseed in animal models of radiation injury.While countering the harmful effects of radiation exposure, it has shown its ability to enhance survival rate inexperimental animals. Further, flaxseed has been tested and found to be equally effective when administeredbefore or after irradiation, and against low doses (≤5 Gy) to the whole body or high doses (12-13.5 Gy) to thewhole thorax. This is particularly relevant since apart from the possibility of using it in pre-conditioning regimein radiotherapy, it could also be used during nuclear plant leakage/accidents and radiological terrorism, whichare not pre-determined scenarios. However, considering the infancy of the field of plant-based radioprotectors,all the above-mentioned plant extracts/plant-derived compounds deserves further stringent study in differentmodels of radiation injury.
机译:辐射暴露会导致多种病理生理状况,包括氧化损伤,炎症和纤维化,从而影响生物的生存。这篇综述探讨了十四(14)种植物提取物或植物衍生的化合物针对这些细胞表现的辐射对策特性。它旨在评估植物或其成分在辐射对策策略中的可能作用。在本综述中考虑的所有14种植物提取物或化合物均已在放射损伤的体内,离体和/或体外模型中显示出一些无差异的放射防护。但是,很少有人展示出优于其他人的优势。具有抗氧化,抗炎和免疫调节作用的玛氏梭菌似乎在放射防护中很有前途。它的粗提物以及衍生自其的各种生物碱和类黄酮已显示出可以提高辐照小鼠的存活率。类似地,姜黄素具有抗氧化剂和改善辐射暴露后期效应的能力,并结合放射后实验动物的存活率提高,使其成为抵抗放射损伤的另一种候选药物。此外,在联合处理方案中,六角茴香和苦瓜提取物,M。piperita,E。officinalis,A。sinensis,肉豆蔻,染料木黄酮和ginsan值得进一步研究其辐射防护潜​​力。但是,饮食亚麻籽已经引起了广泛的关注。亚麻籽在辐射损伤动物模型中的一些显着特征是具有抗辐射诱导的自由基的清除能力,防止辐射诱导的脂质过氧化作用,降低辐射恶病质,炎性细胞因子水平和纤维化的能力。辐射暴露表明,它具有提高实验动物成活率的能力。此外,已经对亚麻籽进行了测试,发现在辐射之前或之后施用亚麻籽具有同等效力,并且对全身的低剂量(≤5Gy)或对整个胸部的高剂量(12-13.5 Gy)都是有效的。这一点特别重要,因为除了可以在预处理放射疗法中使用它外,它还可以在核电厂泄漏/意外事件和放射恐怖主义期间使用,这不是预定的方案。然而,考虑到基于植物的辐射防护剂领域的起步阶段,所有上述植物提取物/植物衍生的化合物都需要在不同辐射损伤模型中进行更严格的研究。

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