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赛丹(endosulfan)在烟草和土壤中的残留研究 被引量:5
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作者 曹爱华 徐光军 +2 位作者 冯涛 刘保安 李莹 《中国烟草科学》 CSCD 1999年第3期40-44,共5页
本文研究了赛丹及其代谢物在烟草中的分析方法及在烟叶、土壤中的降解规律。采用气相色谱法( E C D)测定。赛丹 3 种异构体的最小检知量和最低检出浓度分别为:α13×1011g、β15×1011g、e... 本文研究了赛丹及其代谢物在烟草中的分析方法及在烟叶、土壤中的降解规律。采用气相色谱法( E C D)测定。赛丹 3 种异构体的最小检知量和最低检出浓度分别为:α13×1011g、β15×1011g、end3×10- 11g,α6×104m g/kg、β11×10- 3m g/kg、end24×10- 3m g/kg。回收率均在 8244% ~101% 之间,变异系数均在11% ~62% 之间。测得最终干烟叶中10d 的样品残留量平均为883m g/kg,15d 的样品残留量平均为447m g/kg。赛丹在烟草中降解规律为前期较快,后期相对较慢,在鲜烟叶中半衰期只有1d 左右,在土壤中半衰期为10d 左右,60d 的最终残留量平均为 006m g/kg,对土壤不会造成环境影响。 展开更多
关键词 赛丹 烟草 残留分析 气相色谱 杀虫剂 土壤
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硫丹(endosulfan)在苹果和土壤中的残留动态研究 被引量:13
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作者 明九雪 钱传范 申继忠 《中国农业大学学报》 CAS CSCD 北大核心 1998年第3期95-100,共6页
用带电子捕获检测器的气相色谱仪测定了硫丹(endosulfan)在苹果和土壤中的残留及消解动态。两年两地的试验结果表明,硫丹在苹果中消解快,但在土壤中消解相当慢;硫丹在苹果和土壤中的半衰期为2.1~2.3d和15~26d。在整个苹果生长... 用带电子捕获检测器的气相色谱仪测定了硫丹(endosulfan)在苹果和土壤中的残留及消解动态。两年两地的试验结果表明,硫丹在苹果中消解快,但在土壤中消解相当慢;硫丹在苹果和土壤中的半衰期为2.1~2.3d和15~26d。在整个苹果生长期,使用硫丹175mg·L-1和350mg·L-1喷雾2次、3次,最后1次施药距采收间隔期为15~30d,硫丹在苹果中的残留量低于最大残留限量。 展开更多
关键词 硫丹 残留分析 气相色谱 苹果 土壤
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Chronic effect of endosulfan on the testicular functions of rat 被引量:5
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作者 K.C.Chitra C.Latchoumycandane P.P.Mathur 《Asian Journal of Andrology》 SCIE CAS CSCD 1999年第4期203-206,共4页
Aim: To find out the toxic effect of endosulfan on the testicular function of pubertal rats. Methods: Male rats of pu-bertal age were orally administered endosulfan at a dose of 1.0 mg/kg body weight for 30 days. Twen... Aim: To find out the toxic effect of endosulfan on the testicular function of pubertal rats. Methods: Male rats of pu-bertal age were orally administered endosulfan at a dose of 1.0 mg/kg body weight for 30 days. Twenty-four hours af-ter the last treatment, the rats were sacrificed and the testis, epididymis, seminal vesicles and ventral prostate were re-moved and weighed. A 10 % testicular homogenate was prepared for biochemical estimations. Results: In endosul-fan-treated rats, there were a reduction in the body weight and the weights of testis and accessory sex organs, a de-crease in the testicular lactate and pyruvate activities, and in the testicular DNA and RNA concentrations, whereas thetesticular protein concentration was slightly increased; the specific activity of testicular steroidogenic enzyme, 3β-OH-steroid dehydrogenase and the ascorbic acid level were decreased, which were correlated with a decrease in steroidoge-nesis. The lysosomal enzyme acid phosphatase and brash-border enzyme alkaline phosphatase activities were also de-creased in the testis of treated rats. Conclusion: In pubertal rats, endosulfan treatment inhibits the testicular functions.(Asian J Androl 1999 Dec; 1: 203-206) 展开更多
关键词 PESTICIDES endosulfan TESTIS steroidogenesis RATS ESTROGENS
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Endosulfan-mediated Biochemical Changes in the Freshwater Fish Clarias batrachus 被引量:2
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作者 G.TRIPATHI PRIYANKA VERMA 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2004年第1期47-56,共10页
Objective Endosulfan is an extremely toxic organochlorine pesticide to aquatic organisms which might be hampering fish health through impairment of metabolism sometimes leading to death. So an experimental protocol wa... Objective Endosulfan is an extremely toxic organochlorine pesticide to aquatic organisms which might be hampering fish health through impairment of metabolism sometimes leading to death. So an experimental protocol was designed to look at endosulfan effects on a number of selected biochemical endpoints as well as to develop a mechanistic understanding of biochemical effects of endosulfan in freshwater fish. Methods The adult freshwater catfish Clarias batrachus were collected and acclimatized to laboratory condition for two weeks prior to experimentation. The toxicity bioassay test of commercial grade endosulfan (35% EC) was conducted for 21 days to determine its initial lethal concentration. The fish were exposed to sublethal concentration of endosulfan (0.06 mg/L) for 21 days. Pesticide - withdrawal experiments were also performed to study recovery. Protein synthesis inhibitors were injected to know the possible mechanism of recovery. The specimens of C. batrachus were sacrificed and brain, liver and caudal white skeletal muscle were removed. Tissues were homogenized and fractions were obtained by differential centrifugation. The activities of citrate synthase (CS), glucose 6-phosphate dehydrogenase (G6-PDH) and lactate dehydrogease (LDH) were assayed spectrophotometrically. Similarly, DNA, RNA and protein content were measured as per standard procedure. Results The exposure of sublethal concentration of endosulfan decreased the activity of citrate synthase (CS) and glucose 6-phosphate dehydrogenase (G6-PDH) in the brain, liver and skeletal muscle of the freshwater catfish, C. batrachus. The brain lactate dehydrogenase (LDH) activity was also reduced in response to endosulfan toxicity. The maximum reduction in activities of these enzyme was 34%-43%. Withdrawal of endosulfan restored the enzyme activity to control level in all the three tissues. The recovery in enzyme activity appears to be due to dissociation of endosulfan or its metabolite(s) from the enzyme molecules and/or fresh synthesis of enzymes. The treatment of actinomycin D or cycloheximide partially inhibited the withdrawal-dependent increase in enzyme activity. This substantiates de novo synthesis of enzyme during recovery period. Since the reduction in enzyme activity was more pronounced in response to actinomycin D, endosulfan might be inhibiting the transcription process. But endosulfan did not produce any significant effect on DNA content and RNA/DNA. However, the RNA and protein contents of brain, liver and skeletal muscle decreased significantly in tissues. The maximum decrease in RNA and protein was approximately 30%-37%. Withdrawal of endosulfan from the medium for 21 days restored the RNA, and protein contents nearly to their control levels. The treatment of actinomycin D or cycloheximide partially inhibited the withdrawal- dependent increase in these macromolecular contents. This effect was more pronounced in case of actinomycin D which again supports the possibility of endosulfan-induced inhibition at transcription level. Conclusion The present study suggests endosulfan-induced impairment of metabolism in fish, which appeared to be due to inhibition of transcription at some unknown points. 展开更多
关键词 CATFISH endosulfan CS G6-PDH LDH DNA RNA RNA/DNA ratio and protein
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Malate and Lactate Dehydrogenases of a Freshwater Catfish: Impact of Endosulfan 被引量:2
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作者 G. TRIPATHI S. P. SHUKLA 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 1990年第1期52-64,共13页
A sublethal concentration of technical grade endosulfan (END) inhibited 35 to 55% of the activities of cytoplasmic malate dehydrogenase (cMDH), mitochondrial malate dehydrogenase (mMDH), and lactate dehydrogenase (LDH... A sublethal concentration of technical grade endosulfan (END) inhibited 35 to 55% of the activities of cytoplasmic malate dehydrogenase (cMDH), mitochondrial malate dehydrogenase (mMDH), and lactate dehydrogenase (LDH) in the liver and the skeletal muscle of a freshwater catfish, Clarias halrachus, after 7 days of exposure. The activity remained in the inhibited state up to 28 days. The withdrawal of END from the medium after 1 week of exposure gradually restored the activities to control levels within 21 days in the skeletal muscle and 28 days in the liver. The administration of actinomycin D or cycloheximide between the 14th and the 21st day of the withdrawal of END almost completely inhibited the withdrawal-dependent recovery in the activities of all the three enzymes. This indicates de novo synthesis of the enzymes during the recovery period. A conjoint treatment of END and triiodothyronine (T_3) raised the activities of cMDH, mMDH, and LDH in the liver and the skeletal muscle up to the control levels. This shows that the inhibitory effect of END may be relieved in presence of T_3. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed few changes in the pattern of cytoplasmic proteins of the liver and the skeletal muscle in response to exposure to END. 1990 Academic Press. Inc. 展开更多
关键词 ND Impact of endosulfan Malate and Lactate Dehydrogenases of a Freshwater Catfish
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Nano-Phytotechnological Remediation of Endosulfan Using Zero Valent Iron Nanoparticles 被引量:1
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作者 Harikumar P. S. Pillai Jesitha Kottekottil 《Journal of Environmental Protection》 2016年第5期734-744,共11页
Endosulfan, an organochlorine pesticide, is known for its toxicity and ability to accumulate in the environment. In India endosulfan was banned only in 2011 and hence toxic residues are still persistent in the environ... Endosulfan, an organochlorine pesticide, is known for its toxicity and ability to accumulate in the environment. In India endosulfan was banned only in 2011 and hence toxic residues are still persistent in the environment. The abilities of three plant species Chittaratha (Alpinia calcarata), Tulsi (Ocimum sanctum), and Lemongrass (Cymbopogon citratus) to remove endosulfan from soil in the absence and presence of zerovalent iron nanoparticles (nZVIs) (1000 mg/Kg of soil), i.e., by phytoremediation and nano-phytoremediation, were determined. Extracted soil samples from the experimental plot were analyzed using Gas Chromatograph with Electron Capture Detector (GC-ECD) and final dehalogenated product was confirmed by Mass Spectrometer (MS). A. calcarata had the best efficiency compared to the other two plant species and the efficiency decreased in the order A. calcarata > O. sanctum> C. citrates. The initial endosulfan removal rate was high (82% was removed within 7 days) when nano phytoremediation experiments were conducted with A. calcarata but then gradually decreased, probably because the activity of nZVI decreased over time. The nZVI endosulfan degradation mechanism appears to involve hydrogenolysis and sequential dehalogenation which was confirmed by GC-MS analysis. Only small amounts of endosulfan were accumulated in the plants because the added nZVIs might have promoted the reductive dechlorination of endosulfan. 展开更多
关键词 endosulfan PHYTOREMEDIATION Nano-Phytoremediation Zerovalent Iron Nanoparticles
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Biomonitoring of endosulfan toxicity in human
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作者 SANTOSH KUMAR KARN ADITYA UPADHYAY AWANISH KUMAR 《BIOCELL》 SCIE 2022年第7期1771-1777,共7页
Chemicals are comprehensively used worldwide to control herbs,weeds,pests,and other competing agents with various growing crops.The consumption of crops grown with these chemicals(even in small quantities)can upshot i... Chemicals are comprehensively used worldwide to control herbs,weeds,pests,and other competing agents with various growing crops.The consumption of crops grown with these chemicals(even in small quantities)can upshot into accumulation in the human body.People can accidentally inhale these hazardous chemicals if they are in an area where they were applied.These chemicals can be ingested in a human with contaminated food and drinks.Ultimately it causes various adverse effects(chronic toxicity,teratogenic,mutagenic,carcinogenic effect,reproductive,and organ toxicity)on human health.Among the pool of these chemicals used as pesticides in the environment,exposure of endosulfan to humans has a potential health risk throughout the globe.The poisoning of endosulfan is reported frequently in society,therefore,this article highlights the toxicological and other harmful properties of endosulfan to humans and emphasized its essential biomonitoring.Its quick monitoring and effective hazard evaluation are possible with multiomics technologies and some other analytical approaches.This review summarizes the introduction and mechanism of action of endosulfan along with some other toxic chemicals used in the agriculture work,the toxicity of endosulfan in human/environment,and importantly its biomonitoring(detection of chemicals and their metabolites in a biological sample)in human because biomonitoring is often considered as the most preferred method.Biomonitoring could be easily done in human samples(blood,hair,milk,and urine)with a multi-omics approach,which is a quick,reliable,and state-of-the-art technique. 展开更多
关键词 endosulfan Agricultural use TOXICITY Biomonitoring in human
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Biotransformation of endosulfan by the tiger worm, <i>Eisenia fetida</i>
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作者 Byeoung-Soo Park Jae-Hong Yoo +2 位作者 Jeong-Han Kim Jang-Eok Kim Sung-Eun Lee 《Journal of Agricultural Chemistry and Environment》 2012年第1期20-27,共8页
This study assesses the role of the earthworm, Eisenia fetida, in the breakdown of endosulfan in a soil environment. Two strains of E. fetida were used in this study to assess the effect of salinity on toxicity and me... This study assesses the role of the earthworm, Eisenia fetida, in the breakdown of endosulfan in a soil environment. Two strains of E. fetida were used in this study to assess the effect of salinity on toxicity and metabolism of endosulfan in these earthworms. One strain of E. fetida (R) was reared in high salinity soil (over 2.0 dS/m of electric conductivity) from Shiwha lake, Korea. A control strain (W) was reared in pig manure compost. Acute toxicity of endosulfan was lower in the R strain when endosulfan was injected. In vitro metabolic studies of endosulfan based on microsomal preparations showed that both strains produced two major metabolites, endosulfan sulfate and endosulfan diol. The production rate of endodulfan sulfate was not significantly different between the strains, while endosulfan diol production was significantly different. In vivo metabolism studies showed only one primary metabolite, endosulfan sulfate, was produced by both strains. HPLC-MS/MS analysis showed annetocin was the indicative protein newly expressed in the R strain in relation to salinity exposure. These findings suggest salinity may induce hydrolyzing enzymes to produce endosulfan diol from endosulfan. 展开更多
关键词 endosulfan endosulfan DIOL endosulfan Sulfate Eisenia Fetida Salinity LC-MS/MS Annetocin
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Remediation of Endosulfan by Biotic and Abiotic Methods
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作者 Puthenveedu S. P. Harikumar Kottekottil Jesitha Mannodi Sreechithra 《Journal of Environmental Protection》 2013年第5期418-425,共8页
Endosulfan is a persistent, toxic broad-spectrum organochlorine insecticide and acaricide used on food and non-food crops. To overcome the problem of hydrophobicity of endosulfan, surfactants play a major role in soil... Endosulfan is a persistent, toxic broad-spectrum organochlorine insecticide and acaricide used on food and non-food crops. To overcome the problem of hydrophobicity of endosulfan, surfactants play a major role in soil remediation. A concentration of 1 g/L tween 80 released 83.89% ± 1.22% of endosulfan from the soil in 24 hours and a total of only 13.96% ± 0.14% was found remaining in the soil. Phytoremediation is an emerging technology that promises effective and inexpensive cleanup of contaminated hazardous waste sites. The potential of aquatic plant species Salvinia molesta and the terrestrial plant species, Spinach (Spinacia oleracea) and Tomato (Solanum lycopersicum), to remove persistent organochlorine pesticide endosulfan from contaminated water and soil respectively were investigated. Remediation of endosulfan in water using different aquatic plants showed that Salvinia molesta is more efficient in endosulfan removal as the percentage removal of endosulfan obtained was 97.94% ± 0.33% in 21 days (with an initial concentration of 123 μg/L endosulfan). Among the selected terrestrial plant species, Spinach and Tomato, percentage removal of endosulfan was found to be higher with tomato. On Day 21, complete removal of pesticide (with an initial concentration of 140 μg/Kg endosulfan) occurred in the soil in which phytoremediation was done with tomato while spinach took about 28 days for complete removal of endosulfan. Microbial degradation offers an effective approach to remove toxicants from the environment. Microbial degradation of endosulfan was studied and Pseudomonas species was able to completely degrade endosulfan in 16 days. The technologies developed can be utilized for the complete removal of endosulfan from a contaminated area. The surfactant enhanced recovery and phytoremediation will help to decontaminate the polluted water and soil. The recovered endosulfan in the surfactants and plants can be subjected to biodegradation by bacterial species using a bio reactor. 展开更多
关键词 endosulfan Surfactant TWEEN 80 PHYTOREMEDIATION PSEUDOMONAS
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Endosulfan Causes Neoplastic Changes in the Liver Cells of Mice
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作者 Arun Kumar Mohammad Ali +3 位作者 Jitendra Kumar Singh Akhileshwari Nath Sudhir Kumar Srivastava Ranjit Kumar 《Open Journal of Pathology》 2014年第3期86-93,共8页
The rapid growth in global population continues to challenge the world’s ability to provide enough food. As one of the most crucial issues for human development, food production must increase to offset hunger and pov... The rapid growth in global population continues to challenge the world’s ability to provide enough food. As one of the most crucial issues for human development, food production must increase to offset hunger and poverty as well as social unrest. To augment the yield of crops a variety of pesticides like Endosulfan, Rogor, Aldrin, Chlorpyrifos, etc. are being used liberally by the farmers. In the present investigation, Endosulfan was administered orally (daily) by gavage method to female Swiss albino mice group for 4 weeks @ 3.0 mg/kg b.w. After that, they were left for 6 months and then sacrificed and liver tissues were fixed for light microscopy and Transmission Electron Microscopic study. The histopathological study of Endosulfan administered group liver showed hepatocytes with congestion in central vein with less dense cytoplasm, haemorrhaged bile duct, degenerated cytoplasm and central vein with vacuolations in sinusoidal spaces. Neoplastic changes in hepatocytes are the major finding of study. The ultrastuctural study revealed dilation in the nuclear pore complex and massive movement of cytoplasmic material from cytoplasm to the nucleus which is major finding which denotes neoplastic changes. Presence of abundant free lying polyribosomes in the cytoplasm, which denotes neoplastic changes in the cellis also one of theimportant finding observed. The present study thus deciphers that Endosulfan toxicity leads to onset of neoplasia thence carcinogenesis in liver cells in Swiss albino mice which is the novel finding in the field of toxicology. 展开更多
关键词 endosulfan NEOPLASIA Liver Cell Light MICROSCOPY Transmission ELECTRON MICROSCOPY
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α-Endosulfan Removal from Water by Adsorption over Natural Clays from Burkina Faso: An Isothermal Study
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作者 Arsène H. Yonli Hermann A. Kabore Jean Koulidiati 《Journal of Materials Science and Chemical Engineering》 2014年第11期49-57,共9页
The present study carried out the α-endosulfan removal from water by adsorption over natural clays from the western region of Burkina Faso. The adsorption experiments were performed over raw clay samples at room temp... The present study carried out the α-endosulfan removal from water by adsorption over natural clays from the western region of Burkina Faso. The adsorption experiments were performed over raw clay samples at room temperature in batch reactor and the obtained adsorption isotherms were well fitted by Fowler-Guggenheim model. It was pointed out for all samples that α-endosulfan was physisorbed in the interlayer space of the clay samples. The maximal adsorption capacities were respectively about 9.12, 6.98 and 4.13 mg/g for KO2, KO1 and KW1 samples. The differences in terms of adsorption capacity for the three samples were due to the presence of illite in the samples KO2 and KO1 when the KW1 sample contained essentially kaolinite in its structure. When the interlayer space was large enough as for samples with illite a greater amount of α-endosulfan molecules were adsorbed. It was also shown that the samples with the higher surface area were the most efficient for the removal of α-endosulfan molecules from water. Moreover, this study exhibited that the α-endosulfan adsorption depended on the crystallites size;the samples presenting largest crystallites had the greatest adsorption capacities. 展开更多
关键词 α-endosulfan REMOVAL WATER NATURAL Clays Burkina Faso
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“科教兴市”战略促进淮安经济发展——刁红国 多功能杀虫剂——硫丹(Endosulfan)
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作者 张晓军 《江苏科技信息》 2001年第11期56-56,共1页
本品为促进作物生长的调节剂,通过ISO9002质量体系认证。乙烯具有控制植物的顶端优势,加快果实成熟,促进器官脱落,控制性别分化,打破种子休眠等多种效应。乙烯利能促进作物早熟,使植株矮化、抗倒伏,缩短作物生长期,提高产量、改善品质... 本品为促进作物生长的调节剂,通过ISO9002质量体系认证。乙烯具有控制植物的顶端优势,加快果实成熟,促进器官脱落,控制性别分化,打破种子休眠等多种效应。乙烯利能促进作物早熟,使植株矮化、抗倒伏,缩短作物生长期,提高产量、改善品质、节省劳力,适用范围广、投入产出大、回报率高。适用于棉花、橡胶、烟草、果树、蔬菜、水稻等作物。棉花催熟时,使用本品100~150g,配成50g药液,于早霜前半个月喷洒;增加橡胶乳汁排泌时,一般用原液与水或乳剂载体配成5%~8%浓度,涂于割面即可;烟草催熟和减少尼古丁时,在收获前每亩用本剂50~100g稀释成50~100kg水溶液进行全株喷雾。根据不同作物与用途,本品可作叶面、果实或整株喷洒,或作果实浸渍。乙烯利是酸性药剂,因此不能与碱性物质混用。稀释后的乙烯利溶液,由于酸性下降,稳定性变差,故要随配随用。 展开更多
关键词 多功能杀虫剂 硫丹 endosulfan 有机氯杀虫剂
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Acute toxicity and biodegradation of endosulfan by the polychaeta Perinereis aibuhitensis in an indoor culture
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作者 康庆浩 张立涛 +2 位作者 张志峰 隋正红 许准旭 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2013年第1期75-80,共6页
The polychaete Perinereis aibuhitensis, a key species in estuarine ecosystems, can improve the culture condition of sediment. Endosulfan is an organochlorine pesticide used globally to control insects and mites; howev... The polychaete Perinereis aibuhitensis, a key species in estuarine ecosystems, can improve the culture condition of sediment. Endosulfan is an organochlorine pesticide used globally to control insects and mites; however, it is a source of pollution in aquaculture as a result of runoff or accidental release. In this study, we evaluated the toxicity of endosulfan to polychaeta and its ability to improve polluted sediment. Specifically, the effects of a series of endosulfan concentrations (0, 1.25, 2.5, 5, 10, 15, and 20 mg/L) were investigated, and the results indicated that the 24-h median lethal concentration (24-h LC 50 ) was 55.57 mg/L, while the 48-h median lethal concentration (48-h LC 50 ) was 15.56 mg/L, and the safe concentration was about 1.556 mg/L. In a 30-d exposure experiment, the animal specimen could decompose endosulfan effectively while improving endosulfan-polluted aquatic sediment. 展开更多
关键词 双齿围沙蚕 急性毒性 硫丹 室内文化 生物降解 半数致死浓度 水生沉积物 河口生态系统
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Endosulfan residues and farmers’replacement behaviors of endosulfan in the north-west inland cotton region
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作者 Shuyan Zhou Yang Zhang +3 位作者 Jingjing Wang Shikun Cheng Fuyan Zhuo Yun Hong 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2024年第4期35-47,共13页
We assessed the situation of endosulfan residues in cotton fields after the endosulfan ban came into effect and the current knowledge,attitude,and practice(KAP)of cotton farmers on the phase-out of endosulfan and the ... We assessed the situation of endosulfan residues in cotton fields after the endosulfan ban came into effect and the current knowledge,attitude,and practice(KAP)of cotton farmers on the phase-out of endosulfan and the application of alternative technologies.Topsoil samples(n=91)of cotton fields were collected from the major cotton-producing areas in China,namely the north-west inland cotton region,and the endosulfan residues were analyzed.A KAP survey was carried out for cotton farmers,and 291 questionnaires were distributed.The influences of gender,age,education background,cotton planting years,publicity and training,income sources,and other factors on cotton farmers’KAP were analyzed.The results showed that endosulfan sulfate was the main endosulfan residue in the soil,followed byβ-endosulfan andα-endosulfan,the average residual contents were 0.569,0.139,and 0.060μg/kg,respectively.The results of the KAP study showed that cotton farmers scored low on knowledge about the phase-out of endosulfan and the application of alternative technologies but high on attitude and practice.The number of family members,years of cotton planting,age,and the cottonplanting area had different degrees of influence on KAP scores.The training could significantly improve the KAP scores of cotton farmers;training should be more targeted and designed reasonably for key groups,such as men and the population under 30,followed by training them to use pesticides safely.For large-scale cotton growers,training should focus on green prevention and control technologies. 展开更多
关键词 Cotton fields endosulfan residues FARMERS KAP survey Replacement behaviours
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Biodegradation of organochlorine pesticide endosulfan by bacterial strain Alcaligenes faecalis JBW4 被引量:4
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作者 Lingfen Kong Shaoyuan Zhu +7 位作者 Lusheng Zhu Hui Xie Kunchang Su Tongxiang Yan Jun Wang Jinhua Wang Fenghua Wang Fengxia Sun 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第11期2257-2264,共8页
The recently discovered endosulfan-degrading bacterial strain Alcaligenesfaecalis JBW4 was isolated from activated sludge. This strain is able to use endosulfan as a carbon and energy source. The optimal conditions fo... The recently discovered endosulfan-degrading bacterial strain Alcaligenesfaecalis JBW4 was isolated from activated sludge. This strain is able to use endosulfan as a carbon and energy source. The optimal conditions for the growth of strain JBW4 and for biodegradation by this strain were identified, and the metabolic products of endosulfan degradation were studied in detail. The maximum level of endosulfan biodegradation by strain JBW4 was obtained using broth at an initial pH of 7.0, an incubation temperature of 40℃ and an endosulfan concentration of I00 mg/L. The concentration of endosulfan was determined by gas chromatography. Strain JBW4 was able to degrade 87.5% of α-endosulfan and 83.9% of β-endosulfan within 5 days. These degradation rates are much higher than the previously reported bacterial strains. Endosulfan diol and endosulfan lactone were the major metabolites detected by gas chromatography-mass spectrometry; endosulfan sulfate, which is a persistent and toxic metabolite, was not detected. These results suggested that A. faecalis JBW4 degrades endosulfan via a non-oxidative pathway. The biodegradation of endosulfan by A. faecalis is reported for the first time. Additionally, the present study indicates that strain JBW4 may have potential for the biodegradation of endosulfan residues. 展开更多
关键词 bacterial biodegradation endosulfan Alcaligenesfaecalis optimal conditions endosulfan diol non-oxidative pathway
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Mutagenic and cytotoxic potential of Endosulfan and Lambda-cyhalothrin—In vitro study describing individual and combined effects of pesticides 被引量:3
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作者 Umber Saleem Sohail Ejaz +5 位作者 Muhammad Ashraf Muhammad Ovais Omer Imran Iltaf Zainab Batool Riffat Fatima Msbah Afzal 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第7期1471-1479,共9页
Excessive use of pesticides poses increased risks to non target species including humans. In the developing countries, lack of proper awareness about the toxic potential of pesticides makes the farmer more vulnerable ... Excessive use of pesticides poses increased risks to non target species including humans. In the developing countries, lack of proper awareness about the toxic potential of pesticides makes the farmer more vulnerable to pesticide linked toxicities, which could lead to diverse pathological conditions. The toxic potential of a pesticide could be determined by their ability to induce genetic mutations and cytotoxicity. Hence, determination of genetic mutation and cytotoxicity of each pesticide is unavoidable to legislate health and safety appraisal about pesticides. The objective of current investigation was to determine the genotoxic and cytotoxic potential of Endosulfan(EN) and Lambda-cyhalothrin(LC); individually and in combination. 3-(4,5-Dimethylthiazol-2-yl)-2,5-Diphenyltetrazolium Bromide(MTT) assay was utilized to determine cytotoxicity, while two mutant histidine dependent Salmonella strains(TA98, TA100) were used to determine the mutagenicity of EN and LC.Moreover, mutagenicity assay was conducted with and without S9 to evaluate the effects of metabolic activation on mutagenicity. Even though a dose dependent increase in the number of revertant colonies was detected with EN against both bacterial strains, a highly significant(p 〈 0.05) increase in the mutagenicity was detected in TA98 with S9. In comparison, data obtained from LC revealed less mutagenic potential than EN. Surprisingly,the non-mutagenic individual-concentrations of EN and LC showed dose dependent mutagenicity when combined. Combination of EN and LC synergistically induced mutagenicity both in TA98 and TA100. MTT assay spotlighted comparable dose dependent cytotoxicity effects of both pesticides. Interestingly, the combination of EN and LC produced increased reversion and cytotoxicity at lower doses as compared to each pesticide, concluding that pesticide exposure even at sub-lethal doses can produce cytotoxicity and genetic mutations, which could lead to carcinogenicity. 展开更多
关键词 endosulfan Lambda-cyhalothrin Mutagenicity Cytotoxicity
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Isolation and characterization of endosulfan-degrading bacteria from contaminated agriculture soils
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作者 Mehdi Hassanshahian Zahra Shahi 《Journal of Coastal Life Medicine》 2016年第4期290-294,共5页
Objective:To isolate and characterize endosulfan-degrading bacteria from Kerman pistachio orchards.Methods:Endosulfan-degrading bacteria were enriched in Bushnell-Hass medium.Identification and sequencing of prevalent... Objective:To isolate and characterize endosulfan-degrading bacteria from Kerman pistachio orchards.Methods:Endosulfan-degrading bacteria were enriched in Bushnell-Hass medium.Identification and sequencing of prevalent degrading strains was performed by using PCR based on amplifying 16S rDNA.Results:The results showed that the soils of pistachio orchards have some degrading bacteria that are suitable for elimination of endosulfan from soils and the environment.Four endosulfandegrading bacteria strains belong to Achromobacter xylosoxidans(strain EN3),Pseudomonas azotoformans(strain EN4),Pseudomonas brassicacearum(strain EN7)and Pseudomonas thivervalensis(strain EN8),respectively.The best degrading strain(EN7),up to 100 mg/L,illustrated a good growth,whereas the growth was reduced in concentration higher than 100 mg/L.The results of gas chromatography confirmed the decomposition of organic pesticide by degrading-bacteria.Conclusions:By using these strains and other biological reclamation methods we can eliminate bio-environmental problems. 展开更多
关键词 Agricultural pesticide Degrading bacteria endosulfan KERMAN
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Determination of five endosulfan pesticides in the fish pond water by dispersive liquid–liquid microextraction combined with GC–MS
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作者 Fangmin Xu Lingyun Liu +1 位作者 Wanli Wei Ruolun Xu 《Forensic Sciences Research》 2017年第1期40-45,共6页
A simple and rapid dispersive liquid-liquid microextraction(DLLME)technique coupled with gas chromatography-ion trap mass spectrometry(GC-MS)was developed for the extraction and analysis of five endosulfan pesticides ... A simple and rapid dispersive liquid-liquid microextraction(DLLME)technique coupled with gas chromatography-ion trap mass spectrometry(GC-MS)was developed for the extraction and analysis of five endosulfan pesticides from the fish pond water.In this work,different parameters affecting the extraction process such as the type and volume of extraction solvent,type and volume of disperser solvent,and extraction time were studied and optimized.Under optimized conditions,the enrichment factor ranged from 189 to 269 and the relative recovery ranged from 88.5%to 94.9%.The linear range was 2.0-80.0 mg/L;the limits of detection and quantitation were in the range 0.04-1.06 mg/L and 0.12-3.53 mg/L,respectively.The relative standard deviations were in the range 0.94%-2.08%(n D 5).The obtained results show that DLLME combined with GC-MS is a fast and simple method for the determination of endosulfan pesticides in fish pond water. 展开更多
关键词 Forensic science forensic toxicology gas chromatography–mass spectrometry liquid–liquid microextraction analytic sample preparation methods endosulfan PESTICIDES fish pond water
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Cytochrome P450 BM3 of Bacillus megaterium-A possible endosulfan biotransforming gene
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作者 Muhil Vannan Seralathan Saravanadevi Sivanesan +4 位作者 Amit Bafana Sanjay Madanchand Kashyap Arrigo Patrizio Kannan Krishnamurthi Tapan Chakrabarti 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第11期2307-2314,共8页
Computing chemistry was applied to understand biotransforrnation mechanism of an organochlorine pesticide, endosulfan. The stereo specific metabolic activity of human CYP-2B6 (cytochrome P450) on endosulfan has been... Computing chemistry was applied to understand biotransforrnation mechanism of an organochlorine pesticide, endosulfan. The stereo specific metabolic activity of human CYP-2B6 (cytochrome P450) on endosulfan has been well demonstrated. Sequence and structural similarity search revealed that the bacterium Bacillus megaterium encodes CYP-BM3, which is similar to CYP-2B6. The functional similarity was studied at organism level by batch-scale studies and it was proved that B. megaterium could metabolize endosulfan to endosulfan sulfate, as CYP-2B6 does in human system. The gene expression analyses also confirmed the possible role of CYP-BM3 in endosulfan metabolism. Thus, our results show that the protein structure based in-silico approach can help us to understand and identify microbes for remediation strategy development. To the best of our knowledge this is the first report which has extrapolated the bacterial gene for endosulfan biotransformation through in silico prediction approach for metabolic gene identification. 展开更多
关键词 Protein structure similarity CYP-2B6 CYP-BM3 endosulfan
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Endosulfan in the Chinese environment: monitoring and modeling
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作者 Hongliang JIA Liyan LIU +4 位作者 Yeqing SUN Daoji CAI Jianxin HU Nanqi REN Yifan LI 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2012年第1期32-44,共13页
这份报纸考察 endosulfan 的用法和排出物,坚持的器官的污染物质(流行音乐) 的最新的成员在中国,并且它在中国环境的命运和行为。在中国的 Endosulfan 用法被估计了是在 1994 和 2004 之间的约 25700 t。在在中国的不同环境分隔空间的... 这份报纸考察 endosulfan 的用法和排出物,坚持的器官的污染物质(流行音乐) 的最新的成员在中国,并且它在中国环境的命运和行为。在中国的 Endosulfan 用法被估计了是在 1994 和 2004 之间的约 25700 t。在在中国的不同环境分隔空间的 endosulfan 的集中例如空气,土壤,水,和生物区系,但是集中在空气和表面土壤,被总结了。在越过中国的表面土壤的全部的 endosulfan 的集中从在察觉限制(BDL ) 下面被变化到 19000 pg 展开更多
关键词 环境监测 集成建模 硫丹 中国 持久性有机污染物 数据库管理系统 地表土壤 浓度范围
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