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Hepato-Nephrocitic System: A Novel Model of Biomarkers for Analysis of the Ecology of Stress in Environmental Biomonitoring

机译:肝肾系统:一种新型的生物标志物模型用于环境生物监测中的应激生态分析

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摘要

Bombus presents a serious global decline of populations and even loss of species. This phenomenon is complex and multifactorial: environmental degradation due to increasing cultivation and grazing areas, indiscriminate use of agrochemicals, and a plethora of xenobiotics daily discharged in the environment. We proposed that bees have an integrated cell system, which ensures protection against chemical stressors up to a certain limit. Therefore, this hypothesis was tested, exposing workers of Bombus morio to cadmium, a harmful trace metal nowadays widespread in our society. The workers were kept in BOD (26°C, RH 70%, in the dark), fed ad libitum, and divided into a control group (n = 20) and an experimental group (n = 20). For the first group, we offered 2 mL of distilled water; for the experimental groups, 2mL of cadmium at 1 ppb. In relation to the control group, exposed bees showed that their fat body and hemocytes responded in synchronization with pericardial cells in a topographical and temporal cascade of events, where the fat body is the first barrier against xenobiotics, followed by pericardial cells. The immune cells participate throughout the process. To this system, we proposed the name of hepato-nephrocitic system (HNS), which may explain many phenomena that remain unclear in similar research with Apis mellifera and other species of bees, as shown in this paper. The bee’s HNS is a system of highly responsive cells to toxicants, considered a novel parameter for the study of the ecology of stress applied in environmental management.
机译:熊蜂在全球范围内造成了严重的人口减少,甚至物种丧失。这种现象是复杂和多因素的:由于耕种和放牧面积的增加导致环境退化,农药的滥用,每天排放到环境中的过多的异生物素。我们提出蜜蜂具有集成的细胞系统,可确保对化学应激源的保护达到一定限度。因此,对该假设进行了检验,使Bombus morio工人暴露于镉,镉是当今社会广泛使用的有害微量金属。将工人饲养在BOD(26°C,相对湿度70%,在黑暗中),随意进食,并分为对照组(n = 20)和实验组(n = 20)。对于第一组,我们提供了2 mL蒸馏水。对于实验组,使用2毫升1 ppb的镉。相对于对照组,暴露的蜜蜂表明它们的脂肪体和血细胞在地形和时间上的级联事件中与心包细胞同步反应,其中脂肪体是对抗异生物素的第一个障碍,其次是心包细胞。免疫细胞参与整个过程。对于该系统,我们提出了肝肾系统(HNS)的名称,这可以解释许多现象,在类似的研究中,该现象与蜜蜂和其他蜜蜂相似,如本文所示。蜜蜂的HNS是一种对毒物具有高响应性的细胞系统,被认为是研究环境管理中压力生态学的新参数。

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