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Utilization of cytogenetic biomarkers as a tool for assessment of radiation injury and evaluation of radiomodulatory effects of various medicinal plants – a review

机译:利用细胞遗传学生物标记物作为评估辐射损伤和评估各种药用植物的放射调节作用的工具–综述

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Abstract: Systematic biological measurement of “cytogenetic endpoints” has helped phenomenally in assessment of risks associated with radiation exposure. There has been a surge in recent times for the usage of radioactive materials in health care, agriculture, industrial, and nuclear power sectors. The likelihood of radiation exposure from accidental or occupational means is always higher in an overburdened ecosystem that is continuously challenged to meet the population demands. Risks associated with radiation exposure in this era of modern industrial growth are minimal as international regulations for maintaining the safety standards are stringent and strictly adhered to, however, a recent disaster like “Fukushima” impels us to think beyond. The major objective of radiobiology is the development of an orally effective radio-modifier that provides protection from radiation exposure. Once available for mass usage, these compounds will not only be useful for providing selective protection against accidental and occupational radiation exposure but also help to permit use of higher doses of radiation during treatment of various malignancies curtailing unwarranted adverse effects imposed on normal tissues. Bio-active compounds isolated from natural sources enriched with antioxidants possess unique immune-modulating properties, thus providing a double edged benefit over synthetic radioprotectors. We aim to provide here a comprehensive overview of the various agents originating from plant sources that portrayed promising radioprotection in various experimental models with special emphasis on studies that used cytogenetic biomarkers. The agents will include crude extracts of various medicinal plants, purified fractions, and herbal preparations.
机译:摘要:“细胞遗传学终点”的系统生物学测量在评估与辐射暴露相关的风险方面显着帮助。近年来,在医疗保健,农业,工业和核电领域中放射性物质的使用激增。在一个过度负荷的生态系统中,通过意外或职业手段暴露于辐射的可能性始终较高,而该生态系统不断受到挑战以满足人口需求。由于维护安全标准的国际法规严格且严格遵守,因此在现代工业发展时代,与辐射暴露相关的风险极小。然而,最近发生的类似“福岛”之类的灾难迫使我们进行更多思考。放射生物学的主要目标是开发一种有效的辐射修饰剂,该修饰剂可防止辐射。一旦可大量使用,这些化合物不仅可用于提供针对意外和职业性辐射暴露的选择性保护,而且还有助于在治疗各种恶性肿瘤的过程中允许使用更高剂量的辐射,从而减少对正常组织的不必要的不​​良影响。从富含抗氧化剂的天然来源中分离出的生物活性化合物具有独特的免疫调节特性,因此比合成的放射防护剂具有双重优势。我们的目的是在此提供各种植物来源的全面概述,这些来源在各种实验模型中都描绘了有希望的放射防护,尤其侧重于使用细胞遗传学生物标记物的研究。这些药剂将包括各种药用植物的粗提物,纯化的级分和草药制剂。

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