Effects of exposure to single and multiple parabens on asthma development in an experimental mouse model and a prospective cohort study

Parabens are widely used preservatives present in consumer products like cosmetics and food. Although several epidemiological studies suggest that early-life exposure to parabens might alter the immune response and allergy risk in childhood, the evidence with respect to asthma is not clear. Therefor...

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Veröffentlicht in:The Science of the total environment 2022-03, Vol.814, p.152676-152676, Article 152676
Hauptverfasser: Junge, Kristin M., Buchenauer, Lisa, Strunz, Sandra, Seiwert, Bettina, Thürmann, Loreen, Rolle-Kampczyk, Ulrike E., Röder, Stefan, Borte, Michael, Kiess, Wieland, von Bergen, Martin, Simon, Jan C., Zenclussen, Ana C., Schöneberg, Torsten, Stangl, Gabriele I., Herberth, Gunda, Lehmann, Irina, Reemtsma, Thorsten, Polte, Tobias
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container_title The Science of the total environment
container_volume 814
creator Junge, Kristin M.
Buchenauer, Lisa
Strunz, Sandra
Seiwert, Bettina
Thürmann, Loreen
Rolle-Kampczyk, Ulrike E.
Röder, Stefan
Borte, Michael
Kiess, Wieland
von Bergen, Martin
Simon, Jan C.
Zenclussen, Ana C.
Schöneberg, Torsten
Stangl, Gabriele I.
Herberth, Gunda
Lehmann, Irina
Reemtsma, Thorsten
Polte, Tobias
description Parabens are widely used preservatives present in consumer products like cosmetics and food. Although several epidemiological studies suggest that early-life exposure to parabens might alter the immune response and allergy risk in childhood, the evidence with respect to asthma is not clear. Therefore, we investigated the effect of paraben exposure on asthma development in mice and humans. Using a murine asthma model the experimental data show both, an asthma-reducing effect after direct exposure of adult mice to n-butyl paraben (nBuP) as well as an asthma-promoting effect after maternal exposure to ethyl paraben (EtP) in the female offspring. Interestingly, exposure of mice to a mixture of EtP and nBuP starting prenatally until the end of asthma induction in the adult offspring was without effect on allergic airway inflammation. In addition, parabens were determined within the German prospective mother-child cohort LINA and their single and mixture effect on asthma development in children within the first 10 years of life was estimated by logistic and Bayesian kernel machine regression (BKMR). Both approaches revealed no adverse effects of parabens on children's asthma development, neither when stratified for being at risk due to a positive family history of atopy nor when analysed separately for sex specificity. Therefore, we conclude that although single parabens might differentially impact asthma development, an adverse effect could not be seen in a multiple paraben exposure setting. Consequently, not only the time point of exposure but also multiple exposure scenarios to parabens should be considered in the evaluation of individuals' specific disease risk. [Display omitted] •Effects of single and multiple parabens on asthma were assessed in mice and humans.•Adverse and preventive effects of single parabens on asthma were found in mice.•Paraben mixtures revealed no effects in mouse or in a mother-child cohort.•Mixtures should be considered in evaluation of individual specific disease risks.
doi_str_mv 10.1016/j.scitotenv.2021.152676
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Although several epidemiological studies suggest that early-life exposure to parabens might alter the immune response and allergy risk in childhood, the evidence with respect to asthma is not clear. Therefore, we investigated the effect of paraben exposure on asthma development in mice and humans. Using a murine asthma model the experimental data show both, an asthma-reducing effect after direct exposure of adult mice to n-butyl paraben (nBuP) as well as an asthma-promoting effect after maternal exposure to ethyl paraben (EtP) in the female offspring. Interestingly, exposure of mice to a mixture of EtP and nBuP starting prenatally until the end of asthma induction in the adult offspring was without effect on allergic airway inflammation. In addition, parabens were determined within the German prospective mother-child cohort LINA and their single and mixture effect on asthma development in children within the first 10 years of life was estimated by logistic and Bayesian kernel machine regression (BKMR). Both approaches revealed no adverse effects of parabens on children's asthma development, neither when stratified for being at risk due to a positive family history of atopy nor when analysed separately for sex specificity. Therefore, we conclude that although single parabens might differentially impact asthma development, an adverse effect could not be seen in a multiple paraben exposure setting. Consequently, not only the time point of exposure but also multiple exposure scenarios to parabens should be considered in the evaluation of individuals' specific disease risk. 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[Display omitted] •Effects of single and multiple parabens on asthma were assessed in mice and humans.•Adverse and preventive effects of single parabens on asthma were found in mice.•Paraben mixtures revealed no effects in mouse or in a mother-child cohort.•Mixtures should be considered in evaluation of individual specific disease risks.</description><subject>Animals</subject><subject>Asthma</subject><subject>Asthma - chemically induced</subject><subject>Asthma - epidemiology</subject><subject>Bayes Theorem</subject><subject>BKMR</subject><subject>Cohort Studies</subject><subject>Female</subject><subject>LINA cohort</subject><subject>Mice</subject><subject>Murine model</subject><subject>Paraben exposure</subject><subject>Parabens - toxicity</subject><subject>Prospective Studies</subject><subject>Single and mixture effect</subject><issn>0048-9697</issn><issn>1879-1026</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNqFUcFu3CAQRVWrZpP0F1qOvXgLNgvmGEVpGylSL-0ZsTBuWNngAl41X5Df7jib5hoOIJ7evDczj5BPnG054_LLYVtcqKlCPG5b1vIt37VSyTdkw3ulG85a-ZZsGBN9o6VWZ-S8lAPDo3r-npx1Qquu42pDHm-GAVwtNA0U_s6pLBloTbSE-HsEaqOn0zLWMONnttnuISI3Ulvq_WSphyOMaZ4gVhoQjasI5LACdqRTWgrg7WF8krJ0zqnMaBiOQF26T7nSUhf_cEneDXYs8OH5vSC_vt78vP7e3P34dnt9dde4TvHaWCH6TjjPOOyE0HvthXa-7dzgYdBMWNbqFcbh-h3THUPUqV5JLXu256q7IJ9PutjInwVKNVMoDsbRRsBmTSv5TrdMao5UdaI67LlkGMyMg9n8YDgzawrmYF5SMGsK5pQCVn58Nln2E_iXuv9rR8LViQA46jFAXoUgOvAh43KMT-FVk39F7594</recordid><startdate>20220325</startdate><enddate>20220325</enddate><creator>Junge, Kristin M.</creator><creator>Buchenauer, Lisa</creator><creator>Strunz, Sandra</creator><creator>Seiwert, Bettina</creator><creator>Thürmann, Loreen</creator><creator>Rolle-Kampczyk, Ulrike E.</creator><creator>Röder, Stefan</creator><creator>Borte, Michael</creator><creator>Kiess, Wieland</creator><creator>von Bergen, Martin</creator><creator>Simon, Jan C.</creator><creator>Zenclussen, Ana C.</creator><creator>Schöneberg, Torsten</creator><creator>Stangl, Gabriele I.</creator><creator>Herberth, Gunda</creator><creator>Lehmann, Irina</creator><creator>Reemtsma, Thorsten</creator><creator>Polte, Tobias</creator><general>Elsevier B.V</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>20220325</creationdate><title>Effects of exposure to single and multiple parabens on asthma development in an experimental mouse model and a prospective cohort study</title><author>Junge, Kristin M. ; 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Although several epidemiological studies suggest that early-life exposure to parabens might alter the immune response and allergy risk in childhood, the evidence with respect to asthma is not clear. Therefore, we investigated the effect of paraben exposure on asthma development in mice and humans. Using a murine asthma model the experimental data show both, an asthma-reducing effect after direct exposure of adult mice to n-butyl paraben (nBuP) as well as an asthma-promoting effect after maternal exposure to ethyl paraben (EtP) in the female offspring. Interestingly, exposure of mice to a mixture of EtP and nBuP starting prenatally until the end of asthma induction in the adult offspring was without effect on allergic airway inflammation. In addition, parabens were determined within the German prospective mother-child cohort LINA and their single and mixture effect on asthma development in children within the first 10 years of life was estimated by logistic and Bayesian kernel machine regression (BKMR). Both approaches revealed no adverse effects of parabens on children's asthma development, neither when stratified for being at risk due to a positive family history of atopy nor when analysed separately for sex specificity. Therefore, we conclude that although single parabens might differentially impact asthma development, an adverse effect could not be seen in a multiple paraben exposure setting. Consequently, not only the time point of exposure but also multiple exposure scenarios to parabens should be considered in the evaluation of individuals' specific disease risk. [Display omitted] •Effects of single and multiple parabens on asthma were assessed in mice and humans.•Adverse and preventive effects of single parabens on asthma were found in mice.•Paraben mixtures revealed no effects in mouse or in a mother-child cohort.•Mixtures should be considered in evaluation of individual specific disease risks.</abstract><cop>Netherlands</cop><pub>Elsevier B.V</pub><pmid>34973317</pmid><doi>10.1016/j.scitotenv.2021.152676</doi><tpages>1</tpages></addata></record>
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subjects Animals
Asthma
Asthma - chemically induced
Asthma - epidemiology
Bayes Theorem
BKMR
Cohort Studies
Female
LINA cohort
Mice
Murine model
Paraben exposure
Parabens - toxicity
Prospective Studies
Single and mixture effect
title Effects of exposure to single and multiple parabens on asthma development in an experimental mouse model and a prospective cohort study
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