• Title/Summary/Keyword: Bisphenol A

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Effects of Environmental Endocrine Disruptor Bisphenol A on the Reproduction of Xiphophorus maculatus (환경호르몬 비스페놀 A가 Xiphophorus maculatus의 생식에 미치는 영향)

  • Deung, Young-Kun;Kim, Dong-Heui
    • Applied Microscopy
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    • v.34 no.1
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    • pp.43-50
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    • 2004
  • In this study, we examined effects of environmental endocrine disruptor bisphenol A on the reproduction of Xiphophorus maculatus. We exposed the males of X. maculatus to the bisphenol A adjusted to the various concentrations such as 100 ppb, 200 ppb, 400 ppb and 800 ppb for 3 months for the experimental groups and then inbreeded with normal females that was not any treated. We counted the number of second generation for confirmation of fertilizing ability of first generation. Also, we observed the ratios of female and male, the abnormality and mortality, and spermatogenesis of the second generation was exposed to bisphenol A for 6 months. As the result, the number of fry in the second generation was $11.50{\pm}2.22$ in 100 ppb, $6.40{\pm}2.76$ in 200 ppb, $5.70{\pm}1.34$ in 400 ppb and $3.70{\pm}2.11$ in 800 ppb at the experimental groups while it was $19.00{\pm}3.02$ at the control group which was not treated with bisphenol A. This result showed that the experimental groups exhibited a decreasing tendency according to the increase of bisphenol A concentration comparing with the control group. The ratio of female and male of the second generation had no relations with the concentration of bisphenol A, and the ratios of abnormality and mortality were 0%. The spermatogenesis of experimental groups was normal in 800 ppb as well as 100 ppb, 200 ppb, 400 ppb after even 6 months.

Current State of Use and the Risks of Bisphenols: A Minireview (비스페놀류의 사용 현황과 위해성: 소고)

  • Song, Chang Yeob;Kim, Woong;Gye, Myung Chan
    • Korean Journal of Environmental Biology
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    • v.35 no.4
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    • pp.581-594
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    • 2017
  • Bisphenol A(BPA), known as a typical endocrine disruptor, has been used commercially and widely for plastics and epoxy resins. BPA-based plastic is used extensively for the production of water bottles, food containers, CDs, DVDs, and panels that can be applied in construction. Epoxy resins containing BPA are used for coatings on the insides of water pipes, food cans, and thermal papers that are used in sales receipts. As its estrogenic effects and other adverse health effects have published, BPA has been regulated in many countries, and there have been efforts made to replace BPA. Other bisphenols substitutes such as bisphenol S(BPS) and bisphenol F(BPF) have been used. Currently, BPS- and BPF-based products labeled BPA-free products have been widely consumed. Because of structural similarities with BPA, however, these alternatives also show endocrine disruption effects like BPA, and many studies on adverse health effects of these alternatives are being reported. In this review, we describe the adverse health effects of bisphenols and the current status of regulation.

Toxicity Evaluation of Endocrine Disrupting Chemicals Using Human HepG2 Cell Line, Lumbricus rubellus and Saccharomyces cerevisiae (HepG2 인간 세포주, Lumbricus rubellus 및 Saccharomyces cerevisiae를 이용한 내분비교란물질의 독성평가)

  • Sohn, Ho-Yong;Kim, Hong-Ju;Kum, Eun-Joo;Cho, Min-Seop;Lee, Jung-Bok;Kim, Jong-Sik;Kwon, Gi-Seok
    • Journal of Life Science
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    • v.16 no.6
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    • pp.919-924
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    • 2006
  • Toxicity evaluation systems for various chemicals and their metabolites have been developed during last decades. In this study, the acute toxicity of endocrine disrupting chemicals, such as endosulfan, bisphenol A, vinclozolin, and 3,5-dichloroaniline, was evaluated using HepG2 cell line, Lumbricus rubellus and Saccharomyces cerevisiae, respectively. The extents of toxicity of the chemicals in different bioassay systems varied substantially, such as endosulfan>3,5-dichloroaniline> bisphenol A in HepG2 cell line system, endosulfan>bisphenol A>3,5-dichloro aniline in L. rubellus system, and 3,5-dichloroaniline>endosulfan>bisphenol A in S. cerevisiae system. Meanwhile, no cytotoxicity was observed by treatment of vinclozolin in the evaluation systems. Our results suggest that earthworm and yeast are useful to evaluate acute toxicity of endocrine disrupting chemicals, and direct comparison of toxicity data from different bioassay systems is unattainable. Based on our results, we propose that the bioassay system with earthworm or yeast, a rapid, simple and economic system, could be applied as pre-test for the toxicity evaluation using human cell line or animals.

Effects of Bisphenol A and BPA Alternatives on the Nervous System (Bisphenol A와 대체물질들이 신경계에 미치는 영향)

  • Ha Jung Moon;Seung Hyun Lee;Hyun Seung Shin;Eui-Man Jung
    • Journal of Life Science
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    • v.33 no.4
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    • pp.371-381
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    • 2023
  • Endocrine disrupting chemicals (EDCs), used in a variety of products in modern society, are hormone-like substances that cause various diseases. Humans are exposed to EDCs through their inclusion in pesticides, plastics, cosmetics, detergents, and drugs. Bisphenol A (BPA), one of the representative endocrine disruptors, is an estrogen-like substance that has been widely used commercially in plastic and epoxy resins. BPA is a chemical that can disrupt the endocrine system, leading to reduced reproductive function, obesity, cancer, and neurodevelopmental disorders. Since the adverse health effects of BPA began to be reported the use of BPA has been regulated worldwide. Various alternatives to BPA have been widely used worldwide; representatively, bisphenol S (BPS) and bisphenol F (BPF) are the most commonly used in commercial contexts. BPS and BPF may cause endocrine-disrupting effects like those of BPA due to their similar chemical structures. Recent studies have reported that BPS and BPF disrupt the neurodevelopmental process and cause neurodevelopmental disorders. Therefore, future studies will be required for safety verification of BPA alternatives and the development of new alternatives to BPA for brain health. In this review, we reviewed the effects of BPA and the alternatives, BPS and BPF, on the nervous system.

Estrogeicity of Genistein and Bisphenol A (콩류식품의 주성분인 Genistein과 식품포장재 및 용기에 사용되는 Bisphenol A의 에스트로젠 효과에 관한 연구)

  • 강경선;이영순;신광순
    • Journal of Food Hygiene and Safety
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    • v.13 no.2
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    • pp.106-111
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    • 1998
  • This study has been focused on both estrogenic and proliferating activity of genistein (GEN) and bisphenol A (BPA). GEN and BPA enhance the proliferation of estrogen-dependent MCF-7 human breast cancer cells at concentrations as low as 100 nM of GEN and 8 ng/ml of BP A achieving similar effect to that of estradiol at 1 nM. Expression of the estrogen responsive gene, pS2 was also induced in MCF-7 cells by treatment with genistein at dose as low as 1 nM and BPA at dose as low as 4 ng/ml. Using 21 day-old ovariectomized nude mice, we examined end-bud formation and mammary gland development after treatment with bisphenol A or genistein. Compared with untreated control, mammary gland development and end-bud formation were significantly increased in mice fed genistein or bisphenol A (p<0.05). Taken together, it is concluded that GEN and BP A can act as an estrogen agonist resulting in cell proliferation and induction of the estrogen responsive pS2 gene in MCF-7 cells in vitro and in athymic mice in vivo, respectively. Therefore, it is suggested that GEN and BP A might modulate human endocrine system and these compounds might be considered as a endocrine modulator at the low levels of doses.

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Cure Kinetics of Diglycidyl ether of bisphenol A-Methylene dianiline-Succlnonitrile System (Diglycidyl ether of bisphenol A/Methylene dianiline/Succinonitrile계의 경화반응 속도론)

  • Jo, Seong-U;Sim, Mi-Ja;Kim, Sang-Ok
    • Korean Journal of Materials Research
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    • v.2 no.4
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    • pp.257-262
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    • 1992
  • The cure kinetics of a diglycidyl ether of bisphenol A (DGEBA) with 4, 4'-methylene dianiline (MDA) added succinonitrile was studied through the dynamic run method by applying the data to the Kissinger equation which analyses the effect of the heating rate on the temperature at maximum reaction rate using Differential Scanning Calorimetry (DSC) analyzer in the range of 3$0^{\circ}C$-35$0^{\circ}C$. In the DGEBA/MDA system with SN, the activation energy ($E_a$) and the pre-exponential factor (A) were calculated. From these results, the rate constants (k) were obtained according to the different SN contents.

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