• Title/Summary/Keyword: ethylparaben

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Simultaneous HPLC determination of multiple compounds in a cosmetic lotion

  • Baeksun Ahn;Jung, Chul-Hee;Lim, Ho-Soon;Lee, Hoosub;Lee, Sang-Hoon
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.29 no.1
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    • pp.123-134
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    • 2003
  • 고속액체크로마토그래피 방법을 사용하여 동시에 arbutin, 메탄올에 녹인 methyl, ethyl, prpyl, butyl parben과 glablidien(유용성감초추출물)을 파장 254와 276 nm에서 Gradient methanol로 octdecyl culumn을 사용하여측정하였다. arbutin와 glablidien 농도 0.5-1.0 ug/ml 파라벤류는 0.1-2.0 ug/ml에서 검량선이 직선으로 작성되었다. 검량이 직선으로 나타나 정량분석을 할 수 있다는 것을 알 수 있었다. 샘플 전처리가 크로마토그래피로 측정하기에 좋은 방법이란 것을 판정하기 위하여 일반로션을 사용하여 판정하였다. 이 방법의 정확도는 모든 측정물질(arbutin, methylparaben, ethylparaben, propylparaben, butylparaben, glablidine)의 회수율 상대표준편차(RSD)가 (0.28-2.55%) 나타나 신뢰성 있는 결과를 보였다.A high-performance liquid chromatographic method for the simultaneous determination of arbutine, a mixture of methyl, ethyl, propyl, butyl parabens dissolved in methoanol and Glrablidine(Oil Soluble Licorice), was studied by using a ODS C18 column and a methanol gradient at 254 and 276 nm. Calibration curves were found to be linear in the 0.5-1.0 ug/ml range(compounds arbutine, glrablidin) and 0.1-20 ug/ml (compounds methylpaaben, ethylparaben, propylparaben, butylparaben). Linear regression analysis of the data demonstrates the efficacy of the method in terms of precision and accuracy. An extraction method is developed and validated in order to apply this chromatographic method to a cosmetic lotion. The presision of this method, calculated as the relativ standard deviation(RSD) of the recoveries(0.28-2.55%) was excellent for all compounds.

Determiniation and Validation of Alibendol using High Pressure Liquid Chromatography in Human plasma (고속액체크로마토그라피법을 이용한 사람 혈장 중 알리벤돌(Alibendol)의 정량 및 검증)

  • Song, Hyun-Ho;Yu, Ji-Young;Kim, Bo-Gyeom;Park, Hyeon-Ju;Choi, Kwang-Sik;Kwon, Young-Ee
    • YAKHAK HOEJI
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    • v.54 no.4
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    • pp.295-299
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    • 2010
  • The aim of this study was to develop and validate for determination of alibendol in human plasma by HPLC method. After precipitation of 500 ${\mu}l$ plasma samples by 50% methanol 50 ${\mu}l$ and 60% perchloric acid 30 ${\mu}l$ and the supernatant 50 ${\mu}l$ was injected into HPLC. The assay was performed isocratically using 10 mM potassium phosphate (pH 3.0) and acetonitrile (80 : 20, v/v) as mobile phase. The $C_{18}$ column (particle size $3.5{\mu}m$, $4.6{\times}50$ mm, Zorbax Eclipse) was used as a solid phase. The mobile phase was delivered at a flow-rate of 1.7 ml/min, detection was by ultraviolet absorption at 232 nm and concentrations were calculated on the basis of peak areas. In these conditions, alibendol can be separated from ethylparaben, the internal standard, and endogenous substances. The retention times of alibendol and ethylparaben were just about 2.6 and 3.5 minutes, respectively. This rapid HPLC method was validated by examining the precision and accuracy for inter- and intra-day analysis. The standard curve was linear ($R^2$=1.0000) over the concentration range of 0.05~20 ${\mu}g$/ml. The inter-day relative standard deviation (R.S.D.) and accuracy were 0.2~12.2% and 94.4~101.2% (82.7% at the lower limit of quatitation). The intra-day R.S.D. and accuracy were 0.1~11.8% and 98.8~102.5%, respectively. The method was successfully applied to the determination of alibendol in plasma for a pharmacokinetic study.

The Studies on the Development of Low Irritable Preservative System with Phenoxyethanol in Cosmetics (Phenoxyethanol을 이용한 저자극 방부시스템 개발에 관한 연구)

  • Ahn, Gi-Woong;Lee, Chn-Mong;Kim, Hyeong-Bae;Jeong, Ji-Hen;Jo, Byoung-Kee
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.31 no.1 s.49
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    • pp.43-49
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    • 2005
  • Recently, according as people who have sensitive skin increase, we've been giving more importance to the safety of cosmetics. Especially, preservative is known to be one of the main stimuli which cause side-effects of cosmetics. However, there have been few reports describing cell cytotoxicity, skin penetration, oil-aqueous phase partition, anti-microbial activity of preservatives and their correlation with skin irritation. The study is aimed to develop low irritable preservative system with phenoxyethanol, one of the most commonly used preservatives in cosmetics, considering various factors mentioned above. According to our results of cell cytotoxicity against human normal fibroblasts by means of MTT assay, phenoxyethanol showed the lowest cytotoxicity when compared to other preservatives tested (cytotoxicity: pro-pylparaben > butylparaben > ethylparaben > methylparaben > triclosan > phenoxyethanol), but human patch test for assessing shin primary irritation revealed that phenoxyethanol has higher skin irritation than methylparaben and triclosan. We performed in vitro skin penetration test using horizontal Franz diffusion cells with skin membrane prepared from hairless mouse (5 ${\~}$ 8 weeks, male) to evaluate the rate of skin penetration of preservatives. From the results, we found that the higher irritable property of phenoxyethanol in human skin correlates with its predominant permeability (skin penetration: phenoxyethanol > methylparaben > ethylparaben > propylparaben > butylfaraben > triclosan). Therefore, we made an effort to reduce skin permeability of phenoxyethanol and found that not only the rate of skin penetration of phenoxyethanol but also its skin irritation is dramatically reduced in formulas containing oils with low polarity. In the experiments to investigate the effect of oil polarity on the oil-aqueous phase partition of phenoxyethanol, more than $70\%$ of phenoxyethanol was partitioned in aqueous phase in formulas containing oils with low polarity, while about $70 {\~} 90\%$ of phenoxyethanol was partitioned in oil phase in formulas containing oils with high polarity. Also, in aqueous phase phenoxyethanol showed greater anti-microbial activity. Conclusively, it appears that we can develop less toxic preservative system with reduced use dosage of phenox-yethanol and its skin penetration by changing oil composition in formulas.

The Determination of Preservative Dosages in Cosmetics (화장품 중 살균방부제 함량 연구)

  • 박준조;윤덕희;김범호;백정혜;조규홍;김세진
    • Journal of environmental and Sanitary engineering
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    • v.13 no.1
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    • pp.104-111
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    • 1998
  • This study was performed to investigate the contents of preservatives in cosmetic lotions and creams. The 55 kinds of creams and the 45 kinds of lotions were tested, and the 6 kinds of preservatives such as sorbic acid (SA), benzoic acid (BA), methlparaben(MP), ethylparaben(EP), propylparaben(PP) and butylparaben(BP) were determined for domestic and foreign cosmetics by high performance liquid chromatography(HPLC). The recovery rates of methanol extraction and distillation method were respectively the range of 84.82 - 99.62% and 17.47 - 79.91% for the spiking concentration of 1.2% in the cosmetic lotions. Excellent isolation was showed at the wavelength of 230nm for 6 kinds of preservatives. Preservatives were detected for all tested samples and their concentration were not exceeded in cosmetic combination limits. Paraoxybenzoate esters(MP, EP, PP, BP) were used in the 98.0% of samples and not less than 2 kinds of preservatives were used in samples.

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Simultaneous HPLC Determination of Preservatives in Cosmetics (화장품중 살균ㆍ보존제의 동시분리 및 정량)

  • 양성준;김영옥;손경훈;이정표;정래석;양원준;백옥진;이현경;최상숙
    • YAKHAK HOEJI
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    • v.46 no.4
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    • pp.231-236
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    • 2002
  • A high-performance liquid chromatographic method for the simultaneous quantitative analysis of methylparaben (MP), ethylparaben (EP), propylparaben (PP), butylparaben (BP) and imidazolidinyl urea(IU) or diazolidinyl urea(DU) in cosmetics was studied by using a cyano-propyl column and 0.05M hexanesulfonic acid at 228 nm. Calibration curves were found to be linear in the 60-1000 $\mu\textrm{g}$/mL range (parabens), 100-1,250 $\mu\textrm{g}$/mL range (IU) and the 120-2000 $\mu\textrm{g}$/mL range (DU). Linear regression analysis of the data demonstrates the efficacy of the method in terms of precision and accuracy. An extraction method is developed and validated in order to apply this chromatographic method to a commercial cosmetic cream. The precision of this method, calculated as the relative standard deviation (RSD) of the recoveries (0.46-2.71%) was excellent for all compounds.

Oestrogenic Activity of Parabens in Endocrine System

  • Lee, Seong-Hun;Kim, Sun-Jung;Park, Jung-Ran;Jo, Eun-Hye;Park, Joon-Suk;Hwang, Jae-Woong;Bo, Sun;Lee, Soo-Jin;Lee, Yong-Geon;Chung, Yun-Hyeok;Lee, Yong-Soon;Kang, Kyung-Sun
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2005.05a
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    • pp.184-184
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    • 2005
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Oestrogenic Activity of Parabens In Vitro Estrogen Assays (에틸, 프로필, 이소프로필, 부틸, 이소부틸 파라벤의 In Vitro 검색시험 연구에서의 내분비독성)

  • Lee Sung-Hoon;Kim Sun-Jung;Park Jung-Ran;Jo Eun-Hye;Ahn Nam-Shik;Park Joon-Suk;Hwang Jae-Woong;Jung Ji-Youn;Lee Yong-Soon;Kang Kyung-Sun
    • Journal of Food Hygiene and Safety
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    • v.21 no.2
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    • pp.100-106
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    • 2006
  • The use of underarm and body care cosmetics with oestrogenic chemical excipients (particularly the parabens) and the hypothesized association with breast cancer incidence, particularly in women. It is noted that the type of cosmetic product is irrelevant (e.g. antiperspirant/deodorant versus body lotion, moisturizers or sprays versus creams) and attention must focus on issues of actual exposure to chemicals through continued dermal application of body care products and the endocrine/hormonal activity and toxicity of the chemicals in the formulations. To evaluate the estrogenic activities of parabens such as ethylparaben, butylparaben, propylparaben, isobutylparaben and isopropylparaben, we used recombinant yeasts containing the human estrogen receptor [Saccharomyces cerevisiae ER+LYS 8127], human breast cancer MCF-7 cell lines and human estrogen receptor ${\alpha}\;and\;{\beta}$. In E-screen assays, isopropylparaben is the most estrogenic paraben, and in ER competition assay, isobutylparaben is the most estrogenic paraben. We evaluated isopropylparaben was most active in the recombinant yeast assay, followed by propylparaben, ethylparaben, isobutylparaben and butylparaben. Results from this study demonstrate that parabens are observed in human endocrine system. Therefore, we have shown that the parabens is induced the estrogenic activities similar to $17{\beta}$-estradiol and Bisphenol-A.

Endocrine Disrupting Activities of Parabens: An Overview of Current Databases on Their Estrogenicity

  • Dang, Vu Hoang;Jeung, Eui-Bae
    • Journal of Embryo Transfer
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    • v.23 no.4
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    • pp.229-237
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    • 2008
  • Recently, parabens have been believed to act as xenoestrogens, an identified class of endocrine disruptors (EDs). These environmental compounds are the most well-known as preservatives in many commercial products, including food, cosmetics and pharmaceutical industries. It has been demonstrated that the human health risks of parabens result from a long-term exposure to skin in which this chemical group is rapidly absorbed through the skin. On the other hand, parabens are also completely absorbed from gastrointestinal tract. It has reported that these substances possess several biological effects in which inhibitory property involved in membrane transports and mitochondrial functions is considered to be important for their action. Testing of parabens has revealed that estrogen-like activities of these chemicals are much less potent than natural estrogen, $17{\beta}$ estradiol (E2). Additionally, the estrogenicity of individual paraben- compounds is distinct depending upon their biochemical structure. Recent findings of paraben-estrogenic activities have shown that these compounds may affect breast cancer incidence in women, suggesting adverse ecological outcomes of this environmental group on human and animal health. Although the biological and toxicological effects of parabens have been demonstrated in many previous studies, possible mechanism(s) of their action are required to be explored in order to bring the better understanding in the detrimental impacts of parabens in human and wildlife. There have several different types of parabens which are the most widely used as preservatives. These include methyl-paraben, ethylparaben, propylparaben, butylparaben and p-hydroxybenzoic acid, a major metabolite of parabens. In this review, we summarize current database based on in vitro and in vivo assays for estrogenic activities and health risk assessment of paraben- EDs which have been published previously.

Trend on content of preservatives for emotion-fusioned sheet mask cosmetics in markets (감성 융합형 시트 마스크 화장품의 보존제 함유량 실태)

  • Kang, H.J.;Kang, S.J.;Jo, G.H.;Lee, J.M.;Lee, G.W.
    • Journal of the Korea Convergence Society
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    • v.8 no.11
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    • pp.159-165
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    • 2017
  • We were investigated the content of 7 preservatives for sheet mask samples(n=42) sold in markets of Daejeon metropolitan city in 2016. &3.3%(n=35) of all samples contained at least one of preservatives. In samples of 30.95(n=14) and 2.39%(n=1) was detected with 2 and 3 preservatives. Phenoxyethaol(PE), methylparaben(MP), chlorphenesin(CP) and benzyl alcohol(BA) showed detection rate of 76.19(n=32), 16.67(n=9), 21.43(n=7) and 2.38%(n=1), respectively. Also The content of detected preservative showed range of 0.06~0.71, 0.18~0.35, 0.06~0.71 and 0.32% and was within the maximum allowed amount established by Korean FDA. However ethylparaben(EP), propylparaben(PP) and benzylparaben(BP) in all samples was not detected. These results can be useful for sharing in emotion-fusioned information and supplying right to know of user.