• Title/Summary/Keyword: $^{14}C-endosulfan$

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Metabolism of $^{14}C-{\alpha}-Endosulfan$ in Mouse in vivo (생쥐 체내에서 $^{14}C-{\alpha}-Endosulfan$의 대사)

  • Kim, In-Seon;Lee, Kang-Bong;Shim, Jae-Han;Suh, Yong-Tack
    • Korean Journal of Environmental Agriculture
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    • v.15 no.1
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    • pp.70-76
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    • 1996
  • Absorption, distribution, excretion and metabolism of $^{14}C-{\alpha}-Endosulfan$[1,4,5,6,7,7-hexachloro-8,9,10-=trinorborn-5-en 2,3-ylenebismethylene]sulfite) were studied in male mouse(Balb/c) after single intraperitoneal treatment as the dose level of 7.5 mg/kg body weights. After treatment of $^{14}C-{\alpha}-endosulfan$, the radioactivity was rapidly excreted into the urine(63.9 %) within 4 days, thereafter the excretion ratio was constant. Radioactivity levels in the tissues was reached maximum 0.5 hr in heart, 2 hrs in liver and kidney after the treatment, then decreased with time. Endosulfan was metabolized to ${\beta}-endosulfan({\beta}-E)$, endosulfan ether(EE), endosulfan sulfate(ES), and endosulfan alcohol(EA). The main metabolites were EA(13.25 %) in liver and endosulfan hydroxyether(EHE)(19.37 %) in kidney. The urinary metabolites were EA(43.21 %), ES(4.78 %), ${\beta}-E$(7.21 %), EE(3.72 %) and EHE(18.04 %).

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In vivo Metabolism of Endosulfan in Carp (cyprinus carpio L.) (In vivo 시험에 의한 잉어(cyprinus carpio L.)체내 endosulfan의 대사)

  • Lee, K.B.;Shim, J.H.;Suh, Y.T.
    • Applied Biological Chemistry
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    • v.37 no.3
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    • pp.194-202
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    • 1994
  • To study the metabolism and absorption of endosulfan in carp, $^{14}C-{\alpha}-endosulfan$ was treated with the $LC_{10}$ concentration $(4.5\;{\mu}g/L)$. In an in vivo test, endosulfan was metabolized $(65{\sim}80%)$ in tissues and endosulfan ether, endosulfan alcohol, endosulfan ${\alpha}-hydroxyether$, and endosulfan lactone were identified, indicating that those are the main metabolites of detoxification in carp. The maximum levels of $^{14}C-endosulfan$ in the head, muscle, and gut occurred after 8 hr exposure. However, the maxima reached in the liver and kidneys after 30 min and 4 hr, respectively. Radioactivity in the tissue decreased rapidly 8 hr after treatment. The total amount of $^{14}C-endosulfan$ recovered in the liver, kidneys and gut of fish was about $80{\sim}90%$ during the 8 hr treatment. The non-extractable radioactivity increased after 8 hr exposure $(27{\sim}31%)$. Endosulfan sulfate, the main degradation product in plant and mouse, was not detected during the test interval from tissues of the carp.

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A study to reduce the intestinal transport of endosulfan by indole (인돌을 이용한 잔류성 농약 endosulfan의 소장 흡수 억제 연구)

  • Gong, Daecheol;Kim, Juyeon;Choi, Hansol;Noh, Sang Kyu
    • Food Science and Preservation
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    • v.21 no.1
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    • pp.91-96
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    • 2014
  • Evidence suggests that dietary indole, particularly rich in cruciferous vegetables, may reduce the risk of cardiovascular diseases. Endosulfan is a residual organochlorine pesticide, which is detected in fruits, vegetables, and crops. In this study, we investigated the effect of luminal indole on endosulfan transport in the small intestine in mesenteric lymph duct-cannulated rats. The duodenum was also cannulated and a fasting phosphate buffered saline-glucose solution was infused overnight at 3 mL/hr. After recovery, a lipid emulsion containing [2,3-$^{14}C$] endosulfan ($^{14}C$-endosulfan) was infused into the duodenum for 8 hours. The tested rats were infused with the same lipid emulsion, but with indole. Samples from the lymph-fistula were collected hourly, and the luminal contents and mucosa were collected at the end of the infusion. The lymph flow in the mesenteric lymph did not differ between the two groups. However, the intestinal absorption of both endosulfan and cholesterol were significantly decreased by indole. The amount of radioactive endosulfan, which remained in the mucosa, was greater in the indole-infused rats due to the decreased transport of endosulfan into the lymph. This study indicates that the indole decreases the intestinal transport of endosulfan into the mesenteric lymph.

In vivo Metabolism of Endosulfan in Carp (Cyprinus carpio) (In vivo 시험에 의한 잉어체내 $^{14}C-endosulfan$의 대사)

  • Lee, K.B.;Shim, J.H.;Suh, Y.T.
    • Applied Biological Chemistry
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    • v.37 no.3
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    • pp.203-209
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    • 1994
  • When $^{14}C-{\alpha}-endosulfan$ was incubated with carp liver, kidney and gut preparations, it was metabolized to water soluble and organosoluble metabolites. In an in vitro test, endosulfan was converted to endosulfan ${\alpha}-hydroxyether$ (EHE), endosulfan alcohol (EA) and endosulfan ether (EE). The addition of NADPH resulted in rapid conversion of endosulfan to the metabolites in 105,000 g soluble fraction and microsomes. However, the rate of metabolism of endosulfan in liver, kidney and gut supplemented with NADPH as a cofactor was higher in the 105,000 g soluble fraction than that in the microsomes of carp under incubation conditions. The enzymes probably involved in the metabolism of endosulfan include the glutathione S-transferase (GST) and the mixed function oxidases (MFO), based on the evidence that addition of either GSH or NADPH increased the degradation of endosulfan.

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in Vitro Metabolism Study of ${\alpha}$-Endosulfan with Microsomal Cytochrome P-450 Monooxygenase (생쥐에서 Cytochrome P-450 효소계에 의한 ${\alpha}$-Endosulfan의 시험관내 대사시험)

  • Kim, In-Seon;Lee, Kang-Bong;Shim, Jae-Han;Suh, Yong-Tack
    • Applied Biological Chemistry
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    • v.38 no.5
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    • pp.463-467
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    • 1995
  • In vitro metabolism study of ${\alpha}$-endosulfan by liver and kidney microsomal cytochrome P-450 monooxygenase system of the mouse(Balb/C) was performed. ${\alpha}$-Endosulfan was metabolized to endosulfan lactone(EL), endosulfan hydroxyether(EHE), endosulfan alcohol(EA), endosulfan sulfate(ES), endosulfan ether(EE) and ${\beta}$-endosulfan(${\beta}$-E). The main metabolites of ${\alpha}$-endosulfan were EL(13.2%) and EA(11.5%) in liver microsome and EA(17.4%) md EHE(19.3%) in kidney microsome. The $^{14}C$-activity of organic extractable fraction and water soluble fraction were 63.4% and 31.7% in liver micosome incubates respectively. The water soluble metabolites were EA(83.9%), EHE(4.5%) and ES(2.3). Piperonyl butoxide treatment inhibited the formation of EE by 86%, EA by 92% and EHE, EL and ES were barely formed.

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Development of Radioimmunoassay(RIA) for Residue Analysis with Endosulfan in Water and Carp(Cyprinus carpio L.) (잉어중 Endosulfan의 잔류분석(殘留分析)을 위한 Radioimmunoassay(RIA)의 개발(開發))

  • Lee, Kang-Bong;Shim, Jae-Han;Suh, Yong-Tack
    • Korean Journal of Environmental Agriculture
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    • v.13 no.3
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    • pp.262-270
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    • 1994
  • The established methods in the residue analysis of endosulfan require an extensive sample clean-up prior to quantification by relatively complex equipment. A radioimmunoassay(RIA) provides a simple procedure with theoretically higher sensitivity and specificity necessitating only a minimum of sample clean-up. Endosulfan-specific antibodies were developed in rabbits by using a bovine serum albumin(BSA) conjugate wherein the alcohol form of endosulfan was multiply bound to the protein via succinylation. Produced antibodies showed the high titers to endosulfan-BSA(1 : 32,000). An RIA method was developed in water and carp by using $^{14}C-labeled$ endosulfan as a tracer. The lowest detection amount of endosulfan was 1 ng in the liver, kidneys, gut and water samples, and 3 ng in the whole body sample of carp without any clean-up, corresponding to 0.1 ppb of endosulfan.

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Screening procedure for organochlorinated pesticide residues in meat fat using a matrix solid phase dispersion(MSPD) extraction and GC/ECD (MSPD법과 GC/ECD를 이용한 식육중의 잔류농약 분석)

  • 백미순;이영철;박병옥;김창수;박유순
    • Korean Journal of Veterinary Service
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    • v.22 no.1
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    • pp.15-23
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    • 1999
  • A multiresidue, simple and rapid isolation technique known as matrix-solid phase dispersoin (MSPD) for the extraction and quantitative gas chromatographic/electron capture detection (GC/ECD) determination of 14 organochlorinated pesticides($\alpha$-BHC, ($\beta$-BHC, ($\gamma$-BHC, aldrin, dieldrin, endrin, heptachlor, ($\alpha$-endosulfan, ($\beta$-endosulfan, endosulfan sulfate, p,p'-DDE, o,p'-DDD, p,p'-DDD, p,p'-DDT) from meat fats. The 14 pesticide were fortified into meat fat(0.5g) and blend with 2g $C_{18}$, $C_{18}$meat fat matrix blend and 2g activated florisil comprise an extraction column from which the pesticides are eluted by adding 8ml acetonitrile. Then 2${\mu}\ell$ of the eluate is analyzed by GC/ECD. Unfortified blank controls are tested similarly. The eluate contained all the pesticide analytes and was free of interfering coextractants. Recovery rate(31.3-500ng/g) were ranged from 80$\pm$4% to 97$\pm$4%. Any organochlorinated pesticides were not detected in 120 samples of beef and pork collected from slaughter houses in Kyeonggi province.

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Removal of Pesticide Residue during the Preparation of Baechu Kimchi and Perilla Leaf Pickle (배추김치와 깻잎지의 제조과정에 따른 잔류농약의 제거)

  • Hwang, Lae-Hwong;Cho, In-Soon;Kim, Min-Jung;Cho, Tae-Hee;Park, Young-Hye;Park, Hye-Won;Park, Kyung-Ai;Kim, Hyun-Jeong;Kim, Mu-Sang
    • Journal of Food Hygiene and Safety
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    • v.26 no.4
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    • pp.403-409
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    • 2011
  • The removal amount of pesticide residue which were remained in baechu (Chinese cabbage) and perilla leaf were measured during the preparation process of kimchi. The amounts of diazinon, procymidone and endosulfan applied to chinese cabbage were $9.18{\pm}0.03$mg/kg, $22.27{\pm}0.22$ and $10.46{\pm}0.02$ mg/kg respectively. When chinese cabbage was brined with 10% salt solution for 12 hours, the removal rates of three pesticides were 22.5%, 25.3% and 0.6% for diazinon, procymidone and endosulfan, respectively. When chinese cabbage was brined and rinsed 3 times with water, the removal rates of three pesticides were 69.9%, 85.6% and 11.2% for diazinon, procymidone and endosulfan, respectively. When kimchi was prepared and fermented for 28 days at $4^{\circ}C$, the removal rates of three pesticides were 79.4%, 94.4% and 21.0% for diazinon, procymidone and endosulfan, respectively. The relative percentages of removal dose of pesticides during brining were 28.4%, 26.9% and 3.2% for diazinon, procymidone and endosulfan, respectively and which were 59.7%, 63.8% and 50.4% during rinsing and which were 11.9%, 9.3% and 46.4% during fermentation, respectively. The amounts of diazinon, procymidone and endosulfan applied to perilla leaf were $18.11{\pm}0.62$ mg/kg, $31.80{\pm}0.33$ and $12.01{\pm}0.01$ mg/kg, respectively. When perilla leaf was rinsed 3 times with water, the removal rates of three pesticides were 60.5%, 52.0% and 23.7% for diazinon, procymidone and endosulfan, respectively. When perilla leaf was rinsed and brined with 10% salt solution for 14 days, the removal rates of three pesticides were 93.9%, 92.4% and 49.6% for diazinon, procymidone and endosulfan, respectively. The relative percentages of removal dose of pesticides during rinsing were 64.5%, 56.3% and 47.8% for diazinon, procymidone and endosulfan, respectively, and which during brining were 35.5%, 43.7% and 52.2% for diazinon, procymidone and endosulfan, respectively.

Soil flushing of Pesticide-Contaminated Soil (Soil flushing 기법을 이용한 농약 오염토양 정화)

  • 전민하;최상일;장윤영
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1999.10a
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    • pp.87-89
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    • 1999
  • 본 연구에서는 Sorfactant/Cosolvent 혼합용액을 적용한 Soil flushing 기법에 의해 농약(Endosulfan(6,7,8,9,10,10-Hexachlor-1,5,5a,6,9,9a-hexahydro-6,9-methane-2,3,4benzo (e)dioxathiepin-3-oxide))으로 오염된 토양의 정화효율을 알아보았으며, 회분식 및 연속식 실험을 통하여 최적의 운전조건을 도출하고자 하였다. 세척용액의 적정 사용조건을 알아보기 위한 회분식 실험은 Jar tester를 사용하여 진탕비 (토양 중량 : 세척용액 부피), Surfactant(SDS + POE$_{5}$, POE$_{9}$ + POE$_{14}$, POE$_{5}$ + POE$_{14}$, POE$_{14}$)와 보조용매(water, ethanol, methanol, ethanol+methanol)의 혼합비 및 농도 조건을 변화시켜가며 토양세척을 수행하였다. 세척용액은 보조용매에 Surfactant의 농도를 0.5%, 1%로 용해하여 적용하였다. 연속식 실험은 회분식 실험에서 얻어진 최적 세척용액 사용조건 즉, 계면활성제 SDS + POE$_{5}$(1:1, 용액농도 1%), 보조용매 ethanol을 일정 비율로 혼합한 세척용액을 오염된 토양이 충진된 유리칼럼에 여러 유량조건에서 1 - 20 pore volume까지 통과시켜 각 통과된 pore volume에서의 토양세척 효율을 알아보았다. 본 실험조건에서 얻어진 세척용액의 최적 통과 속도는 0.31 ㎤$cm^{-2}$$min^{-1}$ 이었으며, 세척온도의 증가에 따른 세척효율의 향상은 2$0^{\circ}C$이상에서 크게 둔화되었다. 또한 보조용매의 사용량을 줄이기 위해 에탄올을 물로 1:3까지 희석한 결과 세척효율에 큰 영향이 없음을 알 수 있었다.

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