Cork sheet as an efficient biosorbent for forensic toxicology: Application to vitreous humor analysis

Author:

Ossanes Daniela Souza1,Birk Letícia1,Petry Adriana Ubirajara Silva123,de Menezes Francisco Paz2,Gonzaga Alexsandro Pinto2,Schlickmann Paula Flores2,Eller Sarah1ORCID,de Oliveira Tiago Franco1ORCID

Affiliation:

1. Graduate Program in Health Sciences, Federal University of Health Sciences of Porto Alegre , Porto Alegre, RS 90050-170, Brazil

2. Division of Postmortem Inspection , Associação Hospitalar Vila Nova, Porto Alegre, RS 91750-040, Brazil

3. Graduate Program in Pathology, Federal University of Health Sciences of Porto Alegre , Porto Alegre, RS 90050-170, Brazil

Abstract

Abstract There is an increasing number of people affected worldwide by mental health disorders, such as depression and anxiety. One of the main courses of treatment, along with psychotherapy, is the use of psychoactive medications, like antidepressants and benzodiazepines. Also, the unprescribed use of these substances is a concerning public health issue. Hence, the analysis of psychotropic medications is mandatory in postmortem toxicology and various biological samples can be used for this detection, among them the vitreous humor (VH) stands out. Also, there is a demand for more sustainable and more efficient extraction methodologies according to green chemistry. An example is solid phase microextraction techniques (SPME), which use a solid sorbent and small solvent amounts. Biosorbents are substances of natural origin with sorptive properties, and they have been successfully used in SPME in environmental toxicology for water analysis, mainly. This study aimed to develop a sustainable, fast, cheap and simple SPME methodology using cork sheet strips as a biosorbent, to extract antidepressants, benzodiazepines and others from VH samples by liquid chromatography coupled to tandem mass spectrometry. The extraction was conducted in a 96-well plate using 200 µL of VH and optimization of relevant parameters for extraction was performed. For solvent optimization, two simplex-centroid experiments were planned for extraction and desorption and to evaluate time and pH, a Doehlert design experiment was performed. The analytical method for the determination and quantification of 17 substances was validated. The quantification limits were 5 ng/mL for all analytes and the calibration curves were linear between 5 and 30 ng/mL. This study was able to develop an efficient, cheap, simple and fast microextraction method for 17 analytes in VH, using strips of cork sheet for extraction and a 96-well plate as a container. Furthermore, this approach system could be automated for routine toxicology laboratories.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Oxford University Press (OUP)

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology,Environmental Chemistry,Analytical Chemistry

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