New publication: Northern fur seal whisker bioaccumulation and partitioning of polybrominated diphenyl ethers and organochlorines
New publication: Northern fur seal whisker bioaccumulation and partitioning of polybrominated diphenyl ethers and organochlorines My co-authors and I would like to share our recent publication in Emerging Contaminants: Courtney M. White, Dimitrios G. Giarikos, Amy C. Hirons (2024) Northern fur seal whisker bioaccumulation and partitioning of polybrominated diphenyl ethers and organochlorines. Emerging Contaminants. Abstract: The eastern Pacific stock of northern fur seals (Callorhinus ursinus) on the Pribilof Islands, Alaska represents over 50 % of the global breeding population, but it has experienced population declines of unknown cause(s) since 1980. One contributing factor to the decline may be exposure to anthropogenic contaminants such as persistent organic pollutants (POPs) which are biologically accumulative in nature, toxic to organisms, and environmentally persistent. This study conducted a decadal comparison of 21 organochlorine (OC) and 39 polybrominated diphenyl ether (PBDE) analyte concentrations utilizing archived vibrissae (whiskers) from individual fur seals sampled in 1993 (n = 30) and 2013 (n = 41) during subsistence harvests on the Pribilof Islands. The recently phased out PBDEs had values five times greater than the legacy status OCs, reflecting both the global shift away from chlorinated chemicals over the past 50 years and the widespread use of brominated flame retardants within the past two decades. No significant mean concentration differences were detected between 1993 and 2013 for total organochlorines (SOCs) (266 and 294 ng/g, respectively), or total polybrominated diphenyl ethers (SPBDEs) (1377 and 1521 ng/g, respectively), indicating the enduring environmental presence of these pollutants. Recently phased out PBDEs were detected at five times greater concentrations than phased out OCs. The presence of all analytes in vibrissae indicate that there is an adaptive advantage to partitioning contaminants into this inert tissue, suggesting keratinous tissue is a reliable matrix for assessing long-term for POP exposure and introducing the potential for less invasive sampling for future monitoring efforts. Northern fur seal whisker bioaccumulation and partitioning of polybrominated diphenyl ethers and organochlorines (sciencedirectassets.com)<https://pdf.sciencedirectassets.com/312986/1-s2.0-S2405665024X00049/1-s2.0-S2405665024001409/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEGQaCXVzLWVhc3QtMSJGMEQCIA31loCYe2fMmTjABoGWCbSKRdaQrM15TiXmTvKE2oi0AiAO0yZpV8uWzhk4KsK%2BU9YW92ROSGj%2FEYfaj89et4XiWSqzBQgdEAUaDDA1OTAwMzU0Njg2NSIM56YWy2zuyl0vJkdAKpAFWOvw7cWt%2BGuWpCpdsjIfX8MysO3Nz%2Fa9KEnFB3vjCnIhatwfK85l2EwEuosbVR6G%2BoVsdv9Z22YdjIZaJOlJ6IGUa%2Bg34hnn7xH92gFoYQkikTefMQ5SQNfcjpaGPjXrRPJGw0eg6k9L0RpUeFznVNpT0EC9Jtpw4NGdjRF7UNVVcltavz1wJ%2F8IkOBoLZn%2FVn9qwtdB%2FNJxRJjLtosisCsU2PEUQoZhp2KLTEv%2BSh%2Fe7zpNBKkiKG0V1DG%2BTX%2F3gMsPPkyT4vfTlTnySmQc6N%2Bh%2F%2B7VF84kc%2BE0QmWdbWHpxN%2BHVxIOi1WjYvC9Ncjbtd9EytpAbVYsUqR%2BEl%2BdxGbi%2F%2FHdkUywmsoCBkTU1laSn72cCww8nt1naGvFzTBcHnhfBzmStQzI9VckMyxTcdlW8ljh0TyXV0PZCSQXbEQHNYN5XZb1EtuXxWpItkj%2BpvplFH1W0PcivjsGmxcB4u%2FFegp9lw%2Fb%2Bb8w%2FR4Si66ZYGwwjCJWh4SdojJKC%2FnxM6DGpRwrUsvd1DH9odRNQEaginqcR7xKF%2B5%2FQ4yLgOAdqrpUvqA5wYNKnaR1lUIpDaO8BserxJ6%2FepPytaWaSyyCoUDWwiORwKhcj%2BVNA6wPQoI5A2dultd0Jgk9KQoOksmu%2FiiE00YGMVaV%2FHAHTpj7afFgQIYLcK3m7ty%2BkCWfT3zEjWaSYtcEZogYrRnV3uHX9MSzz%2FNdlPaVWPbWogg5VmmDyNhQdUbVHHA5af6S6i1IWATvLybYMsHG5ESXuyjaMlRM0m779QXWIDGFg3MlwCm5cSgpBzgi5IM1jtG9%2FLACOr3m5kaQ6kG81xu9MGWjm%2BnPQkzDDWAtTp3MBAJYpfZPR7Z4CqZu85d07dsw%2BYXIugY6sgG567co64bvSOQPn9XUTN4gQabO3XHHY9tY90lLI9bhnDGcKExFKJSfWKIvDqbfzkdkfqUtRVq%2BtDZP0iW%2FuduPh%2F4JTIIW5maaD9zvFOueEJz%2Bh3DJvZNYrKYLgYrIy99ip%2B%2BDDv6yZQOOAmD8eGINSR0SoXU7%2FTiVFhOGtx5zdNjinWoMEeSsyH0qD6IhR1HcZbID%2F20RuEm8XvXgU12GmGdZ5bFW4TbnOX1Zi3AYMwnv&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20241205T205619Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYRX6C6HPB%2F20241205%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=35647174bbee1ac7a469b81f691d23e26e35b6fe70cca607f4e7e1cb08589ef3&hash=587c65b4137d1dd214b2197fbf1c2bbfceea6966b061f65fb307c68140d777d8&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S2405665024001409&tid=spdf-61ddb87c-210c-4981-b398-ffbac15fef07&sid=59d18be899a4874352993ef8b39f6e3d5483gxrqa&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=13175f0a025308555557&rr=8ed6f130a826a545&cc=us> Amy C. Hirons, PhD Professor Director, Charismatic Megafauna and Oceanography Laboratory Halmos College of Arts and Sciences and the Guy Harvey Oceanographic Center Nova Southeastern University 8000 North Ocean Drive Dania Beach, FL 33004 (o) 954-262-3620 (f) 954-262-4098 hirons@nova.edu Pronouns: she, her(s) hirons@nova.edu<mailto:hirons@nova.edu> https://works.bepress.com/amy-hirons/about/ https://charismaticmegafauna.wixsite.com/cmol-nsu http://nsuoc-cmol.weebly.com/ [cid:d03c2567-0010-4f76-86bb-08b3b2465f51][cid:f82f201a-a7a5-41e1-b90f-342beeb8658d]
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Amy Hirons