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Study of Behavioral Changes and Photosynthetic Activity of &i&Euglenas gracilis&/i& in the Presence of Effluents from the Laboratory of Clinical Analysis

机译:研究& i& euglenas gracilis的行为变化和光合活性的研究。在临床分析实验室存在污水

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Healthcare waste has now been increasingly studied in terms of the risks or dangers that can cause the environment and human health. Waste generated in clinical analysis laboratories (CALs) deserves attention, because, due to the advent of the concept of emergent pollution, it is doubtful if the materials or reagents are disposed in the sewage by CALs, which are currently considered non-contaminated or with low risk potential, under current legislation, may actually impact the environment with actions not yet understood. This study was experimental and conducted at the Environmental Laboratory of the University of the Region of Joinville. It was used Euglena gracilis (primary trophic level) algae exposed to effluents from five sectors of a CAL: Biochemistry, Hematology, Viral Load, Tuberculosis and Immunochemistry. Samples were collected from the siphons attached to the wash sinks of the CAL materials. To verify changes in algae that denote environmental danger, behavioral changes were analyzed via NGTOX, and chlorophyll concentration was calculated by chlorophyll extraction according to Mendel’s method. Viral Load (VL) and Hematology (HT) sectors were the ones that most affected algae (Tukey test). In both sectors, there was inhibition of algae mobility and gravitaxy: in VL, due to the presence of chaotropic agents that denature organic structures; and in HT, due to the change in membrane permeability attributed to methylene blue. Also in HT, there was a search for algae adaptation by increasing the rise to the surface in order to overcome the lower luminosity due to the coloration of the environment, which also affects photosynthesis. Regarding the concentration of a-chlorophyll, the VL and HT were the most affected as well, being the first one the one that had more concentration reduction because of the presence of chaotropic agents. Considering new parameters evaluated, the discarded compounds need to be better evaluated for risk, as they affect algal photosynthesis. Procedures for removal of these compounds should be considered.
机译:现在,医疗保障垃圾已经越来越多地研究了可能导致环境和人类健康的风险或危险。临床分析实验室(CAL)产生的废物值得关注,因为,由于出现急促污染的概念的出现,如果材料或试剂在污水中被CALS被污染,目前被认为是非污染或与之污染在目前的立法下,低风险潜力可能实际上影响了尚未理解的行动的环境。本研究是在加入维尔大学的环境实验室进行的实验性的。它被用来从CAL的五个部门暴露于污水的euglena Gracilis(初级营养水平)藻类:生物化学,血液学,病毒载荷,结核和免疫化学。从附着在CAL材料的洗涤水槽附着的虹吸物中收集样品。为了验证表示环境危险的藻类的变化,通过NGTOX分析行为变化,并且根据孟德尔的方法,通过叶绿素提取计算叶绿素浓度。病毒载荷(VL)和血液学(HT)扇区是最受影响的藻类(Tukey Test)。在两个扇区中,由于存在可变性结构的络合物,存在抗藻类迁移率和引力:在VL中;并且在HT中,由于膜渗透性归因于亚甲蓝的变化。同样在HT中,通过增加表面上升以克服由于环境的着色而克服较低的亮度来搜索藻类适应性,这也影响光合作用。关于A-叶绿素的浓度,VL和HT也受到最大影响,是由于存在切色剂的存在更高的第一浓度。考虑评估的新参数,需要更好地评估丢弃的化合物,因为它们影响藻类光合作用。应考虑去除这些化合物的程序。

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