• Title/Summary/Keyword: endocrine disruptor

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Suppressive Effect of Lactic Acid Bacteria on the Toxicity of Bisphenol A in Rats

  • Yoo, Min;Min, Byung-Tae
    • Biomedical Science Letters
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    • v.7 no.1
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    • pp.27-30
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    • 2001
  • We have examined if lactic acid bacteria could suppress the toxic effect of bisphenol A. Lactobacillus casei YA-70 was chosen as representative. Thirty rats were divided into two groups (immature and mature) according to the weight. Each group was divided again into the control group (only alcohol treatment), bisphenol A treated group, and bisphenol A plus Lactobacillus casei YA-70 treated group. When 500 ppm of bisphenol A was fed everyday, 83% of immature group and 50% of mature group died within 3 weeks. Their internal organs, mainly livers and lungs, were changed in color and severely damaged. In the intestine of 5 ppm-fed group tumor-like nodules were observed. However, their number and size were markedly decreased when Lactobacillus casei YA-70 was supplemented in diet. This study strongly indicates that Lactobacillus casei YA-70 might play an important role to suppress the toxic effect of endocrine disruptor.

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DEVELOPMENT OF CONVENIENT ANALYTICAL METHOD OF 4-TERT-OCTYLPHENOL

  • Cho, Jae-Min;Ahn, Mee-Ryung;Kwak, Son-Hyok;Kang, Mi-Kyung;An, Eun-Ju;Kim, Jung-Mi;Park, Sun-Ok;Park, Hong-Seok;Chung, Hye-Joo
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2002.11b
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    • pp.163-163
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    • 2002
  • 4-tert-octylphenol (OP) is surfactant additive widely used in the manufacture of a variety of detergents and plastic products, a U.S. Environmental Protection Agency (EP A) classified endocrine disruptor. The purpose of this study was developed the analytical method of OP and determined toxicokinetics parameters after i. v. and oral administration in SD rats plasma concentration of OP using HPLC.(omitted)

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Endocrine Disrupting Effects of Lead on the Ontogeny of Oryzias Latipes (송사리수정란을 이용한 납의 내분비계장애에 관한 연구)

  • Park, Kwang-Sik;Choi, Pil-Son;Lee, Sang-Hyeop;Lee, Chul-Woo;Rhu, Ji-Sung;Choi, Sung-Su;Rhu, Hong-Il;Choi, Doug-Il
    • Toxicological Research
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    • v.14 no.3
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    • pp.379-384
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    • 1998
  • Endocrine disruptor is an exogenous substance that changes endocrine function and causes adverse effects at the level of the organism, its progeny, and/or (sub)populations of the organisms. Purported adverse effects are cancers, declines in reproductive health, developmental learning disabilities in humans, and declining populations, altered morphology, physiology or behavior in wildlife. In these days, expert groups on chemicals in IPCS, IFCS and OECD are intensively discussing the identification of endocrine disruptors and the proper management of those chemicals. In this study, we screened the endocrine disrupting effects of lead using fertilized eggs of Oryzias latipes. In brief, the eggs were exposed to lead with different concentrations at Ringer's solution, and the mortality, the incidence of deformation, the body movement and the hatching success were determined after incubation. The histological analysis of normal and deformed larvae was also carried out. Compared to control, the mortality and the heart rate of eggs and/or larvae increased, but the hatching success and the tail movement decreased. The morphological observation showed the asymmetrical deformation of larvae and the distortion of spinal cord. The absorption of the liquid in yolk sac was hindered. The adverse effects of lead in the ontogeny of fertilized eggs of Oryzias latipes seemed to be stronger in pH5.6 than in pH7.5 solution. In summary, lead showed adverse effects on the ontogeny of fish fertilized eggs plays critical role in regulating biological systems and controlling developmental processes as an endocrine disruptor.

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Bisphenol-A as Endocrine Disruptor Released from Lacquer Coating in Food Cans

  • Beung Ho, Ryu
    • Journal of Life Science
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    • v.9 no.2
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    • pp.19-23
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    • 1999
  • Bisphenol-A and related conpounds recently have been reported to be estrogenic since it has been demonstrared in laboratory stuides that they mimic the effects of estrogen. Bisphenol-A refered to as "environmental estrogen" are suspected of causing health effect in living body through disruption of endocdrine system. In this review, the occurrence, environmental fate, and biological effects of bisphenol-A are presented. To provide understanding to the potential for endocrine disruption due to environmental estrogen, the physiology of bisphenol-A mammalian and fish is also reviewed. For empty can, the migrationof bisphenol-A form food conducted epoxy coating was effected by the test conditions and it increased in order to water and 4% acetic acid. Extracts from foods packed in lacquer coated can also showed estrogenic activity. Bisphenol-A was found as a contaminant not only in the liquid food cans, but also in water autoclave in can. The used of coating certain food-packaging material may require closer scrutiny to determine when bisphenol-A contribute to advert exposure of consumers to estrogenic xenobiotics. Human breast cancer MCF cell added bisphenol-A cultivated to study the ability of bisphenol-A to elicit of bisphenol-A estrogenic bioresponse in this system. Bisphenol-A, similar to estradiol, induced PR activation in transiently transfected anterior and posterior pituitary cells.

A Study on the Quantification and Chracterization of Endocrine Disruptor Bisphenoi-A Leaching from Epoxy Resin (에폭시 수지 용출물질에서의 내분비계장애물질 Bisphenol-A의 정량과 용출특성 파악)

  • Bae, Bumhan;Choi, Myoung-soo;Lim, Nam-woong;Jeong, Jae-hoon
    • Journal of Korean Society on Water Environment
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    • v.16 no.4
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    • pp.469-477
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    • 2000
  • Bisphenol-A (BPA), a known endocrine disruptor, is a main building block of epoxy resin which is widely used as a coating agent in residential water storage tanks. Therefore, BPA leaching from the epoxy resin may have adverse effects on human health. The possibility of BPA leaching from three epoxy resins were tested with a modified KS D 8502 method at 20, 50, 75 and $100^{\circ}C$ in deionized water and the specified test water, respectively. BPA leached to the test water was identified using GC-MS and quantified with GC-FID after a sequential extraction and concentration. The results showed that BPA leaching has occurred in all three samples tested. The quantify of BPA leaching from unit area of epoxy resin coating was in the range of $10.677{\sim}273.120{\mu}g/m^2$ for sample A, 29.737~1734.045 for sample B and 52.857~548.778 for sample C depending on the test temperature, respectively. In general, the amount of BPA leaching increased as the water temperature increases. This result implies a higher risk of BPA leaching to drinking water during a hot summer season. In addition, microbial growth, measured by colony forming units, in epoxy coated water tanks was higher than that in a stainless steel tank suggesting that compounds leaching from epoxy resin may support the growth of microorganisms in a residential water holding tank.

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A Microfluidic Electrochemical Sensor for Detecting the Very Low Concentration Endocrine Disruptor with Self Assembled Monolayer and Preconcentration Technique (자기조립단층과 농축 기술을 이용한 저농도 내분비계 장애물질 검출용 미소유체채널 기반 전기화학 센서)

  • Kim, Suyun;Han, Ji-Hoon;Pak, James Jungho
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.65 no.4
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    • pp.628-634
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    • 2016
  • This paper demonstrates a microfluidic electrochemical sensor for detecting endocrine disruptor such as estradiol at a very low concentration by using preconcentration technique. In addition, self-assembled monolayer(SAM) was also employed on the working electrode of the electrochemical sensor in order to increase the estradiol capture efficiency of the sensor. SAM treatment on the working electrode enhanced the specific binding between the surface of the working electrode and the estradiol antibody. The estradiol antibody was applied on the working electrode at different concentrations(10, 20, 50, 100, 200 pg/ml) for observing the concentration dependency. The measured electrochemical redox current changed with the amount of the bound estradiol on the Au working electrode surface and the sensor can detect all the target material when the immobilized antibody amount is more than the estradiol amount in the water. The elecrochemical estradiol sensor without SAM treatment showed a low current of 7.79 nA, while the sensor treated with SAM resulted in 339 nA at 200 pg/ml, which is more than 40 fold higher output current. When combining the preconcentration technique and the SAM-treated electrode, the measured current became more than 100 fold higher than that of the sensor without neither SAM treatment nor preconcentration technique. The combination of these two techniques can would enable the proposed microfluidic electrochemical sensor to detect a very low concentration endocrine disruptor.

Disproportionation/Dehydrocoupling of Endocrine Disruptor, Tributyltin Hydride to Polystannanes Using Cp2TiCl2/N-Selectride (Cp' = Cp' = C5H5, Cp; Me-C5H4, Me-Cp; Me5C5, Cp*) Catalyst

  • Park, Jaeyoung;Kim, Seongsim;Lee, Beomgi;Cheong, Hyeonsook;Lee, Ki Bok;Woo, Hee-Gweon
    • Journal of Integrative Natural Science
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    • v.6 no.1
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    • pp.34-38
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    • 2013
  • Tributyltin hydride ($n-Bu_3SnH$), an endocrine disruptor, was slowly polymerized by the group 4 ${Cp^{\prime}}_2TiCl_2/N$-selectride (Cp' = $C_5H_5$, Cp; $Me-C_5H_4$, Me-Cp; $Me_5C_5$, $Cp^*$) catalyst combination to give two phases of products: one is an insoluble cross-linked solid, polystannane in 3-25% yield as minor product via disproportionation/dehydrocoupling combination process, and the other is an oil, hexabutyldistannane in 65-90% yield as major product via simple dehydrocoupling process. Disproportionation/dehydrocoupling process first produced a low-molecular-weight oligostannane possessing partial backbone Sn-H bonds which then underwent an extensive cross-linking reaction of backbone Sn-H bonds, resulting in the formation of an insoluble polystannane. The disproportionation/dehydrocoupling of a tertiary hydrostannane mediated by early transition metallocene/inorganic hydride is quite unusual and applicable.

REPEATED DOSE (28 DAYS) ORAL TOXICITY STUDY IN RATS, BASED ON THE PROTOCOL (OECD TEST GUIDELINE NO. 407) TO SCREEN ENDOCRINE-DISRUPTING CHEMICALS

  • Shin, Jae-Ho;Kim, Hyung-Sik;Moon, Hyun-Ju;Kim, Tae-Sung;Kang, Il-Hyun;Seok, Ji-Hyun;Ki, Ho-Yun;Shim, Eun-Yong;Jang, Hae-Jin;Jeung, Eui-Bae;Han, Soon-Young
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2002.05a
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    • pp.128-128
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    • 2002
  • In association with the international validation project to establish a test protocol for the "Enhanced OECD Test Guideline 407", we performed a 28-day repeated-dose toxicity study of vinclozolin (VCZ), an androgen antagonist, and ketoconazole (KCZ), a biosynthesis inhibitor of testosterone (T), and assessed the sensitivity of new parameters for detecting endocrine-related effects of endocrine-disrupting chemicals.(omitted)

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Treatment of decomposition of Aqueous 2,4-Dichlorophenol Solution by Ultrasonic Irradiation (초음파 검사에 의한 수중의 2,4-Dichlorophenol 분해처리)

  • 손종렬;문경환;김영환;우완기
    • Journal of environmental and Sanitary engineering
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    • v.14 no.3
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    • pp.54-62
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    • 1999
  • 2,4-Dichlorophenol was known pollutants caused by the endocrine disruptor into the refractory substances of environment and this is difficult to be degradable by conventional methods. Therefore, a considerable interest has been devoted to developing new process where 2,4-Dichlorophenol can easily decomposed. In this study, the series of ultrasonic irradiation for removal of 2,4-Dichlorophenol has been selected as a model reaction in the batch reactor system in order to obtain the basic data investigate the influence of various experimental parameters such as concentration, pH, reaction temperature, acoustic intensity. The products obtained form the ultrasonic irradiation were analysed by GC/MS and HPLC. The formation of $H_2O_2$, a well-known the strong oxidant was found proportionally to increase with irradiation time. The intermediates of ultrasonic irradiation of 2,4-Dichlorophenol were identified as HCl, catechol, hydroquinone, o,p-benzoquinone, muconic acid, and maleic acid. The final products of this was $CO_2$ and $H_2O$. As the decomposition of 2,4-Dichlorophenol proceeds by the ultrasonic irradiation, the pH of 2,4-Dichlorophenol containing aqueous solution increases slowly, The decomposition of 2,4-Dichlorophenol was found to be occured fast in the basic medium. In general, the rate of reaction is proportional to the reaction temperature obeying the Arrhenius' law. However, in the ultrasonic irradiation, this suggests as the reaction temperature increase the decomposition rate of the reactant decreases. This result meant that the increase of reaction temperature due to the increase of vapor pressure of water accelerated the decrease of acoustic intensity which was can be proportional to the decomposition rae of these compounds. It was found that more than 80% of phenol solution was removed within hours in all reaction conditions. The reaction order in the degradation of the 2,4-Dichlorophenol compounds was verified as the Pseude-first order. From the fore-mentioned results, it can be concluded that the refractory organic compounds caused by endocrine disruptor as 2,4-dichlorophenol could be removed by the ultrasonic irradiation with radicals, such as $H{\;}{\cdot}{\;}and{\;}OH{\;}{\cdot}$ radical causing the high increase of pressure and temperature. Finally, it apeared that the technology using ultrasonic irradiation can be applied to the treatment of refractory substances caused by endocrine disruptor which are difficult to be decomposed by the conventional methods.

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