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首页> 外文期刊>Environmental Monitoring and Assessment >EFFECT OF POTASSIUM DICHROMATE AND FENITROTHION ON HEMOGLOBINS OF CHIRONOMUS RIPARIUS MG. (DIPTERA, CHIRONOMIDAE) LARVAE: POTENTIAL BIOMARKER OF ENVIRONMENTAL MONITORING
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EFFECT OF POTASSIUM DICHROMATE AND FENITROTHION ON HEMOGLOBINS OF CHIRONOMUS RIPARIUS MG. (DIPTERA, CHIRONOMIDAE) LARVAE: POTENTIAL BIOMARKER OF ENVIRONMENTAL MONITORING

机译:重铬酸钾和去铁硫磷对瑞氏无核小球藻血球蛋白的影响。 (双翅目,手足纲)幼虫:环境监测的潜在生物标记

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摘要

In an attempt to identify Chironomus hemoglobins as biomarkers for environmental monitoring, alterations in the hemoglobins in Chironomus riparius Mg. (Diptera: Chironomidae) larvae, exposed to potassium dichromate and fenitrothion, were investigated under laboratory conditions. The hemoglobins were evaluated in terms of their total contents by a cyanomethemoglobin procedure, individual components by electrophoresis of isoelectric focusing, and their oxidation by multi wavelength rapid-scanning spectrophotometry. The total hemoglobin contents increased at the high level of fenitrothion exposure. No variations in the individual hemoglobin component levels were found, by exposure to either fenitrothion or potassium dichromate. Whereas, the absorption spectra of the hemoglobins showed decreases in the peaks corresponding to the oxyhemoglobins by exposure to both compounds, but more sensitively by the chromium, which probably reflects the increase of the autoxidation of the oxyhemoglobins to methemoglobins by these compounds. These results suggest that autoxidation of the hemoglobins in Chironomus riparius seems to be a sensitive parameter in response to redox-active chemical exposure, and this biochemical parameter could be developed as a biomarker in environmental monitoring.
机译:为了将Chironomus血红蛋白鉴定为用于环境监测的生物标记,尝试了Chironomus riparius Mg中血红蛋白的变化。在实验室条件下研究了暴露于重铬酸钾和杀nitro硫磷中的(双翅目:Chironomidae)幼虫。血红蛋白的总含量通过氰化血红蛋白法进行评估,通过等电聚焦电泳对单个成分进行评估,并通过多波长快速扫描分光光度法对其进行氧化。在高浓度的杀nitro硫酮接触下,总血红蛋白含量增加。通过接触杀fe硫磷或重铬酸钾,未发现个体血红蛋白成分水平发生变化。然而,血红蛋白的吸收光谱显示出通过暴露于两种化合物而对应于氧合血红蛋白的峰减少,但是铬更敏感,这可能反映了这些化合物将氧合血红蛋白自氧化为高铁血红蛋白的增加。这些结果表明,Chironomus riparius中血红蛋白的自氧化似乎是对氧化还原活性化学暴露的敏感参数,并且该生化参数可以作为环境监测中的生物标记物。

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