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首页> 外文期刊>International Journal of Natural Resource Ecology and Management >Hematological Indicators of Hydrobionts as a Biomarker of Anthropogenic Pollution of the Aquatic Environment
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Hematological Indicators of Hydrobionts as a Biomarker of Anthropogenic Pollution of the Aquatic Environment

机译:水性血液学指标作为水生环境的人为污染生物标志物

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The problem of preserving the environment, in conditions of intensive development of natural resources, is becoming more and more important every year. In many regions of the world, significant problems with water supply are already noticeable as a result of the quantitative and qualitative depletion of water resources through their irrational use. In the 20th century, hundreds of thousands of tons of organic compounds such as PAHs (polycyclic aromatic hydrocarbons), PCBs (polychlorinated biphenyls), OCPs (organochlorine pesticides), and inorganic (heavy metals) were produced and partially released into the environment. Water bodies have often been and still are the collectors of many of the listed substances. In civilized countries, the population is seriously concerned about the problem of possible remote and long-term adverse effects of pollutants on the environment in general and aquatic ecosystems in particular. Objective: Monitoring the state of aquatic ecosystems and searching for methods to effectively assess the level of pollution and identify its sources. To date, the main assessment of water quality is usually carried out on the basis of chemical-analytical methods. And these methods determine only the presence and amount of chemical elements in the tested water samples, but cannot determine the specifics of the formation of the quality of the tested water samples, due to the very large number of possible combinations of chemical compounds in aqueous solutions, including the behavior of anthropogenic compounds and the natural vulnerability of aquatic ecosystems to the combined effects of their pollution. Method: Assessment of the state of organisms living in changing environmental conditions makes it possible to reveal the patterns of responses at different levels of organization (molecular, cellular, organismal), predict the occurrence of diseases, and identify specific biological effects and the etiology of diseases. In this regard, the possibility of using biological markers as tools for assessing water quality is of particular interest. As a result of the research, biomarkers have been developed for assessing the quality of the aquatic environment, based on hematological parameters and characteristics of morphological and functional changes in blood cells of aquatic organisms. A change in the blood formula and an increase in the number of cells with nuclear abnormalities when exposed to water samples are shown, for example from the Desna and Dnieper rivers. Conclusion: The results obtained can be extrapolated to a certain extent to human health, given the fact that river water is one of the main sources of drinking water for the population of many countries of the World.
机译:保留环境的问题,在自然资源的密集发展条件下,每年都变得越来越重要。在世界的许多地区,由于水资源的定量和定性耗尽通过其非理性使用,水供应的重大问题已经明显。在20世纪,生产并部分释放到环境中,并部分地释放到20世纪数十万吨有机化合物如PAHS(多环芳烃),PCB(多环芳烃),近千(多环芳族烃类),多氯联苯(多氯联苯),OCP(有机氯农药)和无机(重金属)。水体往往是并且仍然是许多上市物质的收藏家。在文明国家,人口严重关注污染物在一般和水生生态系统中可能的远程和长期不利影响的问题。目的:监测水生生态系统的状态,并寻找有效评估污染水平并确定其来源的方法。迄今为止,通常在化学分析方法的基础上进行水质的主要评估。这些方法仅确定测试水样中的化学元素的存在和量,而是由于水溶液中的化合物的可能组合数量非常多的组合,不能确定测试水样的形成的细节,包括人为化合物的行为以及水生生态系统的天然脆弱性,以污染的综合影响。方法:评估生活在不断变化的环境条件下的生物状态使得可以揭示不同级别的组织(分子,细胞,有机体)的反应模式,预测疾病的发生,并确定特定的生物学效应和病因疾病。在这方面,使用生物标志物作为评估水质的工具的可能性特别感兴趣。由于研究,基于水生生物的血细胞形态学和功能变化的形态学和功能变化的特征,已经开发了用于评估水生环境的质量的生物标志物。示出了血型的变化和在暴露于水样时具有核异常的细胞数量的增加,例如来自DESNA和DNIEPER河流。结论:鉴于河水是世界上许多国家人口的饮用水主要来源之一,可以将获得的结果推断为人类健康。

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