Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis

Solid-phase microextraction (SPME) is a sample preparation technique with many applications that is being continuously developed. In this technique, the type of fiber coating plays a crucial role for extraction efficiency. Currently available commercial coatings have certain drawbacks that have been...

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Autores principales: Portillo Castillo, Omar Jassiel, Castro Ríos, Rocío, Chávez Montes, Abelardo, González Horta, Azucena C., Cavazos Rocha, Norma Cecilia, Waksman de Torres, Noemí, Garza Tapia, Marsela
Formato: Artículo
Lenguaje:Spanish / Castilian
Publicado: De Gruyter Brill 2018
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Acceso en línea:http://eprints.uanl.mx/27763/7/27763.pdf
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author Portillo Castillo, Omar Jassiel
Castro Ríos, Rocío
Chávez Montes, Abelardo
González Horta, Azucena C.
Cavazos Rocha, Norma Cecilia
Waksman de Torres, Noemí
Garza Tapia, Marsela
author_facet Portillo Castillo, Omar Jassiel
Castro Ríos, Rocío
Chávez Montes, Abelardo
González Horta, Azucena C.
Cavazos Rocha, Norma Cecilia
Waksman de Torres, Noemí
Garza Tapia, Marsela
author_sort Portillo Castillo, Omar Jassiel
collection Repositorio Institucional
description Solid-phase microextraction (SPME) is a sample preparation technique with many applications that is being continuously developed. In this technique, the type of fiber coating plays a crucial role for extraction efficiency. Currently available commercial coatings have certain drawbacks that have been overcome by the development of new coatings based on novel materials; these have improved the efficiency of extraction, selectivity and stability of commercial coatings. Pharmaceutical and personal care products (PPCPs) are one of the most important groups of emerging contaminants; however, some studies suggest that these compounds can cause adverse health effects. No official monitoring protocols for these compounds are currently available, so the establishment of analytical methods that allow their determination in environmental samples is required. The complexity of environmental samples together with the low concentration levels of these compounds makes necessary the use of sample preparation techniques capable of removing interferences, as well as preconcentrated analytes, and SPME is a very promising alternative to achieve this. This review describes the recent developments in SPME with classical and novel coatings and its applications for PPCP determination in environmental samples.
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spelling eprints-277632025-07-23T19:14:05Z http://eprints.uanl.mx/27763/ Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis Portillo Castillo, Omar Jassiel Castro Ríos, Rocío Chávez Montes, Abelardo González Horta, Azucena C. Cavazos Rocha, Norma Cecilia Waksman de Torres, Noemí Garza Tapia, Marsela RL Dermatología Solid-phase microextraction (SPME) is a sample preparation technique with many applications that is being continuously developed. In this technique, the type of fiber coating plays a crucial role for extraction efficiency. Currently available commercial coatings have certain drawbacks that have been overcome by the development of new coatings based on novel materials; these have improved the efficiency of extraction, selectivity and stability of commercial coatings. Pharmaceutical and personal care products (PPCPs) are one of the most important groups of emerging contaminants; however, some studies suggest that these compounds can cause adverse health effects. No official monitoring protocols for these compounds are currently available, so the establishment of analytical methods that allow their determination in environmental samples is required. The complexity of environmental samples together with the low concentration levels of these compounds makes necessary the use of sample preparation techniques capable of removing interferences, as well as preconcentrated analytes, and SPME is a very promising alternative to achieve this. This review describes the recent developments in SPME with classical and novel coatings and its applications for PPCP determination in environmental samples. De Gruyter Brill 2018-03-16 Article PeerReviewed text es cc_by_nc_nd http://eprints.uanl.mx/27763/7/27763.pdf http://eprints.uanl.mx/27763/7.haspreviewThumbnailVersion/27763.pdf Portillo Castillo, Omar Jassiel y Castro Ríos, Rocío y Chávez Montes, Abelardo y González Horta, Azucena C. y Cavazos Rocha, Norma Cecilia y Waksman de Torres, Noemí y Garza Tapia, Marsela (2018) Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis. Reviews in Analytical Chemistry, 37 (2). ISSN 0793-0135 https://www.degruyter.com/journal/key/revac/html doi:10.1515/revac-2017-0018
spellingShingle RL Dermatología
Portillo Castillo, Omar Jassiel
Castro Ríos, Rocío
Chávez Montes, Abelardo
González Horta, Azucena C.
Cavazos Rocha, Norma Cecilia
Waksman de Torres, Noemí
Garza Tapia, Marsela
Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
title_full Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
title_fullStr Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
title_full_unstemmed Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
title_short Developments of solid-phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
title_sort developments of solid phase microextraction fiber coatings for environmental pharmaceutical and personal care products analysis
topic RL Dermatología
url http://eprints.uanl.mx/27763/7/27763.pdf
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