Literature DB >> 28457122

Quantifying Inorganic Arsenic and Other Water-Soluble Arsenic Species in Human Milk by HPLC/ICPMS.

Michael Stiboller1, Georg Raber1, Elin Lovise Folven Gjengedal2, Merete Eggesbø3, Kevin A Francesconi1.   

Abstract

Because the toxicity of arsenic depends on its chemical form, risk assessments of arsenic exposure must consider the type of arsenic compound, and hence they require sensitive and robust methods for their determination. Furthermore, the assessment should include studies on the most vulnerable people within a population, such as newborns and infants, and thus there is a need to quantify arsenic species in human milk. Herein we report a method for the determination of arsenic species at low concentrations in human milk by HPLC/ICPMS. Comparison of single and triple quadrupole mass analysers showed comparable performance, although the triple quadrupole instrument more efficiently overcame the problem of ArCl+ interference, from the natural chloride present in milk, without the need for gradient elution HPLC conditions. The method incorporates a protein precipitation step with trifluoroacetic acid followed by addition of dichloromethane or dibromomethane to remove the lipids. The aqueous phase was subjected to anion-exchange and cation-exchange/mixed mode chromatography with aqueous ammonium bicarbonate and pyridine buffer solutions as mobile phases, respectively. For method validation, a human milk sample was spiked with defined amounts of dimethylarsinate, arsenobetaine, and arsenate. The method showed good recoveries (99-103%) with detection limits (in milk) in the range of 10 ng As kg-1. The method was further tested by analyzing two Norwegian human milk samples where arsenobetaine, dimethylarsinate, and a currently unknown As species were found, but iAs was not detected.

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Year:  2017        PMID: 28457122     DOI: 10.1021/acs.analchem.7b01276

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  3 in total

1.  Colorimetric and electrochemical arsenate assays by exploiting the peroxidase-like activity of FeOOH nanorods.

Authors:  Xiao-Li Zhong; Shao-Hua Wen; Yi Wang; Yu-Xi Luo; Zhi-Mei Li; Ru-Ping Liang; Li Zhang; Jian-Ding Qiu
Journal:  Mikrochim Acta       Date:  2019-10-30       Impact factor: 5.833

2.  Infants' dietary arsenic exposure during transition to solid food.

Authors:  Antonio J Signes-Pastor; Kathryn L Cottingham; Manus Carey; Vicki Sayarath; Thomas Palys; Andrew A Meharg; Carol L Folt; Margaret R Karagas
Journal:  Sci Rep       Date:  2018-05-08       Impact factor: 4.379

3.  Masking Phosphate with Rare-Earth Elements Enables Selective Detection of Arsenate by Dipycolylamine-ZnII Chemosensor.

Authors:  Nutsara Mekjinda; Supho Phunnarungsi; Vithaya Ruangpornvisuti; Raymond J Ritchie; Itaru Hamachi; Akio Ojida; Jirarut Wongkongkatep
Journal:  Sci Rep       Date:  2020-02-14       Impact factor: 4.379

  3 in total

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