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Aneugenic, clastogenic, and multi-toxic effects of diethyl phthalate exposure

机译:邻苯二甲酸二乙酯暴露的鸟类,裂殖和多种毒性作用

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Diethyl phthalate (DEP) is a compound which is used in many industrial fields, especially in cosmetic sector and causes contamination in air, water, and soil due to its widespread usage. In this study, the potential toxic effects of DEP were investigated by using physiological, anatomical, biochemical, and cytogenetic parameters in Allium cepa. The micronucleus (MN) test specifically aimed to elucidate the aneugenic and clastogenic effects of DEP. Physiological effects were determined by germination percentage, root length, weight gain parameters, and cytogenetic effects were investigated by mitotic index (MI) and chromosomal abnormality (CA) test. Malondialdehyde (MDA) level, catalase (CAT), and superoxide dismutase (SOD) activities were investigated as oxidative damage indicators and structural changes were investigated with anatomical cross sections. For this purpose, Allium cepa bulbs were divided into four groups as control and application groups and the application groups were germinated with 1.0, 2.2, and 4.4 mu M DEP for 72 h. As a result, it was determined that germination percentage, weight gain and root length decreased, CA frequency, MDA level, SOD, and CAT activities were increased in DEP-treated groups when compared with the control group. DEP has been found to induce CA in root tip cells such as fragment, chromosome bridge, c-mitosis, sticky chromosome, and unequal chromatin distribution. When MN formations induced by DEP application were examined, both large-scale and small-scale MNs were determined. MN formation in both sizes indicates that DEP has both clastogenic and aneugenic effects. And also, it was found that DEP application caused structural changes and especially anatomic damages such as necrosis in 4.4 mu M DEP application. As a result, it was found that DEP caused various toxic effects depending on the dose and that A. cepa test material was a useful indicator in determining these effects.
机译:邻苯二甲酸二乙酯(DEP)是在许多工业领域中使用的化合物,特别是在化妆品部门中,由于其广泛使用而导致空气,水和土壤中的污染。在这项研究中,通过使用促进CEPA的生理学,解剖学,生物化学和细胞遗传学参数来研究DEP的潜在毒性作用。微核(MN)测试专门旨在阐明DEP的鸟类和抗植物效应。通过萌发百分比,根长度,重量增益参数和通过有丝分裂指数(MI)和染色体异常(CA)测试来确定生理效果和细胞遗传学效应。丙二醛(MDA)水平,过氧化氢酶(猫)和超氧化物歧化酶(SOD)活性被研究为氧化损伤指标,并用解剖截面研究了结构性变化。为此目的,将CEPA灯泡分为四组,作为对照和施用组,施用组均用1.0,2.2和4.4μmdep萌发72小时。结果,在与对照组相比,在DEP处理基团中,确定萌发百分比,重量增益和根长度降低,Ca频率,MDA水平,SOD和猫活性增加。已发现Dep诱导根尖细胞中的Ca,如片段,染色体桥,C-丝分裂,粘性染色体和不等染色质分布。当检查DEP申请诱导的MN形成时,确定大规模和小规模的MNS。两种尺寸的Mn形成表明DEP具有抗植物和鸟类效应。而且,发现DEP申请引起了结构性变化,特别是解剖损伤,如4.4 mu M DEP应用中的坏死。结果,发现Dep引起了各种毒性作用,这取决于剂量,并且A.CEPA测试材料是确定这些效果的有用指标。

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