4.7 Article

Optimisation and validation of a HS-SPME-GC-IT/MS method for analysis of carbonyl volatile compounds as biomarkers in human urine: Application in a pilot study to discriminate individuals with smoking habits

Journal

TALANTA
Volume 148, Issue -, Pages 486-493

Publisher

ELSEVIER
DOI: 10.1016/j.talanta.2015.09.070

Keywords

HS-SPME-GC-IT/MS method; Central Composite Design (CCD); Carbonyl compounds; Urinary biomarkers; Smoking habits

Funding

  1. National Funds from FCT (Fundacao para a Ciencia e a Tecnologia) [Pest-OE/EQB/LA0006/2013]
  2. [SFRH/BPD/63851/2009]
  3. Fundação para a Ciência e a Tecnologia [SFRH/BPD/63851/2009] Funding Source: FCT

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A new and simple analytical approach consisting of an automated headspace solid-phase microextraction (HS-SPME) sampler coupled to gas chromatography-ion trap/mass spectrometry detection (GC-IT/MS) with a prior derivatization step with O-(2,3,4,5,6-pentafluorobenzyl)hydroxylamine hydrochloride (PFBHA) was developed to detect volatile carbonyl metabolites with low molecular weights in human urine. A central composite design (CCD) was used to optimise the PFBHA concentration and extraction conditions that affect the efficiency of the SPME procedure. With a sample volume of 1 mL, optimal conditions were achieved by adding 300 mg/L of PFBHA and allowing the sample to equilibrate for 6 min at 62 degrees C and then extracting the samples for 51 min at the same temperature, using a divinylbenzene/polydimethylsiloxane (DVB/PDMS) fibre. The method allowed the simultaneous identification and quantification of 44 carbonyl compounds consisting of aldehydes, dialdehydes, heterocyclic aldehydes and ketones. The method was validated with regards to the linearity, inter- and intra-day precision and accuracy. The detection limits ranged from 0.009 to 0.942 ng/mL, except for 4-hydroxy-2-nonenal (15 ng/mL), and the quantification limits varied from 0.029 to 1.66 ng/mL, except for butanal (2.78 ng/mL), 2-butanone (2.67 ng/mL), 4-heptanone (3.14 ng/mL) and 4-hydroxy-2-nonenal (50.0 ng/mL). The method accuracy was satisfactory, with recoveries ranging from 90 to 107%. The proof of applicability of the methodology was performed in a pilot target analysis of urine samples obtained from 18 healthy smokers and 18 healthy non-smokers (control group). Chemometric supervised analysis was performed using the volatile patterns acquired for these samples and clearly showed the potential of the volatile carbonyl profiles to discriminate urine from smoker and non-smoker subjects. 5-Methyl-2-furfural (p<0.0001), 2-methylpropanal, nonanal and 2-methylbutanal (p < 0.05) were identified as potentially useful biomarkers to identify smoking habits. (C) 2015 Elsevier B.V. All rights reserved.

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Tat, Birhan Tsegaw Taye, Worku Animaw Temesgen, Mohamad-Hani Temsah, Riki Tesler, Pugazhenthan Thangaraju, Kavumpurathu Raman Thankappan, Rajshree Thapa, Samar Tharwat, Nihal Thomas, Jansje Henny Vera Ticoalu, Amir Tiyuri, Marcello Tonelli, Marcos Roberto Tovani-Palone, Domenico Trico, Indang Trihandini, Jaya Prasad Tripathy, Samuel Joseph Tromans, Guesh Mebrahtom Tsegay, Abdul Rohim Tualeka, Derara Girma Tufa, Stefanos Tyrovolas, Sana Ullah, Era Upadhyay, Seyed Mohammad Vahabi, Asokan Govindaraj Vaithinathan, Rohollah Valizadeh, Kim Robin van Daalen, Priya Vart, Shoban Babu Varthya, Tommi Juhani Vasankari, Siavash Vaziri, Madhur Verma Verma, Georgios-Ioannis Verras, Danh Cao Vo, Birhanu Wagaye, Yasir Waheed, Ziyue Wang, Yanqing Wang, Cong Wang, Fang Wang, Gizachew Tadesse Wassie, Melissa Y. Wei Wei, Abrha Hailay Weldemariam, Ronny Westerman, Nuwan Darshana Wickramasinghe, Yifan Wu, Ratna D. W. I. Wulandari, Juan Xia, Hong Xiao, Suowen Xu, Xiaoyue Xu, Dereje Y. Yada, Lin Yang, Hiroshi Yatsuya, Metin Yesiltepe, Siyan Yi, Hunachew Kibret Yohannis, Naohiro Yonemoto, Yuyi You, Sojib Bin Zaman, Nelson Zamora, Iman Zare, Kourosh Zarea, Armin Zarrintan, Mikhail Sergeevich Zastrozhin, Naod Gebrekrstos Zeru, Zhi-Jiang Zhang, Chenwen Zhong, Jingjing Zhou, Magdalena Zielinska, Yossef Teshome Zikarg, Sanjay Zodpey, Mohammad Zoladl, Zhiyong Zou, Alimuddin Zumla, Yves Miel H. Zuniga, Dianna J. Magliano, Christopher J. L. Murray, Simon I. Hay, Theo Vos

Summary: Diabetes is a major global cause of death and disability, with the total prevalence expected to continue to rise globally by 2050. Type 2 diabetes accounts for the majority of diabetes cases, largely due to obesity caused by multiple factors.

LANCET (2023)

Article Forestry

Quercus suber Bark as a Sustainable Source of Value-Added Compounds: Experimental Studies with Cork By-Products

Liliana Rego, Sandra Mota, Ana Torres, Claudia Pinto, Sara Cravo, Joana Rocha e Silva, Ricardo N. M. J. Pascoa, Agostinho Almeida, Filipa Amaro, Paula Guedes Pinho, Honorina Cidade, Jose Paulo Silva, Jose Manuel Sousa Lobo, Isabel Filipa Almeida

Summary: This study aimed to explore cork powders as sustainable sources of value-added compounds. Two types of cork powder were characterized, and their antioxidant and phenolic content were evaluated. The results showed that the fine cork powder was more suitable for industrial applications, with higher antioxidant activity and phenolic compounds.

FORESTS (2023)

Article Medical Laboratory Technology

Metabolic signature biomarkers for predicting the recurrence of urological cancers

Filipa Amaro, Marcia Carvalho, Maria de Lourdes Bastos, Paula Guedes de Pinho, Joana Pinto

Summary: This review critically examines the potential of metabolomics in predicting recurrences in urological cancers. Metabolic biomarkers have shown promise in predicting prostate cancer recurrence, while further exploration is needed for bladder cancer and renal cell carcinoma.

CLINICA CHIMICA ACTA (2023)

Article Biochemistry & Molecular Biology

A Clinically Relevant Dosage of Mitoxantrone Disrupts the Glutathione and Lipid Metabolic Pathways of the CD-1 Mice Brain: A Metabolomics Study

Ana Dias-Carvalho, Ana Margarida-Araujo, Ana Reis-Mendes, Catarina Oliveira Sequeira, Sofia Azeredo Pereira, Paula Guedes de Pinho, Felix Carvalho, Susana Isabel Sa, Eduarda Fernandes, Vera Marisa Costa

Summary: This study explored the neurotoxic mechanisms of MTX and identified the metabolic pathways disrupted by MTX treatment, which may contribute to cognitive deficits in patients. The findings suggest that glutathione metabolism and several other metabolic circuits are relevant players in these adverse outcome pathways.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

Article Public, Environmental & Occupational Health

Global, regional, and national mortality due to unintentional carbon monoxide poisoning, 2000-2021: results from the Global Burden of Disease Study 2021

Madeline Moberg

Summary: Unintentional carbon monoxide poisoning is a preventable cause of death that has not received enough attention globally. This study conducted a comprehensive analysis of fatal unintentional carbon monoxide poisoning from 2000 to 2021, revealing regional and temporal variations in mortality rates. Policy-level interventions should be prioritized to reduce the risk of carbon monoxide poisoning events.

LANCET PUBLIC HEALTH (2023)

Article Pharmacology & Pharmacy

Study of the potential toxicity of adrenaline to neurons, using the SH-SY5Y human cellular model

Vera Marisa Costa, Joao Paulo Capela, Maria Lourdes Bastos, Fernando Remiao, Kurt James Varner, Jose Alberto Duarte, Felix Carvalho

Summary: Prolonged overexposure to catecholamines causes toxicity due to continuous adrenoceptor stimulation, autoxidation, and reactive pro-oxidant species formation. This study investigated the contribution of oxidative stress in adrenaline-induced neurotoxicity using non-differentiated SH-SY5Y cells. Results showed that Adrenaline caused concentration- and time-dependent cytotoxicity in the cells, and N-acetyl-cysteine prevented the toxicity while the antioxidant Tiron was non-protective. Further analysis is needed to understand the involvement of these processes in catecholamine-induced peripheral neuropathy.

BRAZILIAN JOURNAL OF PHARMACEUTICAL SCIENCES (2023)

Article Chemistry, Analytical

Enhancing electrochemiluminescence by modifying Fe3CuO4 and CdS@ZnS: A novel ECL sensor for highly sensitive detection of permethrin

Qian Wu, Li Tian, Xiangyu Shan, Huiling Li, Chao Li, Juan Lu

Summary: A novel ECL sensor was developed by modifying Fe3CuO4-Ru(bpy)3+ and GO-CdS@ZnS on the electrode for the detection of permethrin. The sensor exhibited high sensitivity and a wide detection range.

TALANTA (2024)

Article Chemistry, Analytical

Ag+-stabilized DNA triplex coupled with catalytic hairpin assembly and CRISPR/Cas12a amplifications for sensitive metallothionein assay

Tingting Gong, Lei Liao, Bingying Jiang, Ruo Yuan, Yun Xiang

Summary: In this study, a fluorescent biosensing system for high sensitivity detection of MT was established using a new Ag+-stabilized DNA triplex probe (Ag+-SDTP) combined with catalytic hairpin assembly (CHA) and CRISPR/Cas12a signal enhancements. The sensing method is able to selectively detect MT from other non-specific molecules and can achieve low level detection of MT in diluted human serums, demonstrating its potential for monitoring disease-specific MT biomarker at trace levels.

TALANTA (2024)

Article Chemistry, Analytical

Boron quantification using ion chromatography tandem triple quadrupole mass spectrometry. Application to retention analysis in boron-treated wood

Estrella Sanz Rodriguez, Kyra Wood, Paul R. Haddad, Brett Paull

Summary: This study presents a simple, rapid, and reliable method for determining boron in aqueous solutions using suppressed ion chromatography coupled to electrospray ionisation-triple quadrupole mass spectrometry. The method achieved a low limit of detection and demonstrated excellent analytical performance.

TALANTA (2024)

Article Chemistry, Analytical

Innovative SALDI mass spectrometry analysis for Alzheimer's disease synthetic peptides detection

Aline Cournut, Paul Moustiez, Yannick Coffinier, Christine Enjalbal, Claudia Bich

Summary: Alzheimer's disease is a major cause of senile dementia and is characterized by the aggregation of neurofibrillary tangles and amyloid plaques in the brain. The A beta 1-42 peptide is considered the primary cause of neurotoxicity due to its insolubility and subsequent aggregation. A beta 1-42 and A beta 1-40 have been identified as relevant biomarkers for AD diagnosis, and SurfaceAssisted Laser Desorption/Ionization Mass Spectrometry (SALDI-MS) was used to monitor the A beta 1-42/A beta 1-40 ratio without prior sample treatment.

TALANTA (2024)

Article Chemistry, Analytical

Deep eutectic solvents for the determination of endocrine disrupting chemicals

Dotse Selali Chormey, Buse Tugba Zaman, Tulay Borahan Kustanto, Sezin Erarpat Bodur, Suleyman Bodur, Elif Ozturk Er, Sezgin Bakirdere

Summary: This review provides an overview of the harmful effects of endocrine disrupting chemicals (EDCs) on human health and introduces the methods for analyzing EDCs. Recent research has focused on using green chemicals, such as deep eutectic solvents (DESs), for microextraction to ensure environmental safety.

TALANTA (2024)

Article Chemistry, Analytical

Nanopore-related cellular death through cytoskeleton depolymerization by drug-induced ROS

Yan Zhang, Renfeng Xu, Jingjing Wu, Zhenghong Zhang, Yuhuang Wang, Hongqin Yang, Sheng Zhang

Summary: This study visualized the pore-like structures in prostate cancer cell membranes after treatment with the anticancer drug paclitaxel, demonstrating its mechanism of action related to oxidative damage.

TALANTA (2024)

Article Chemistry, Analytical

CRISPR-empowered electrochemical biosensor for target amplification-free and sensitive detection of miRNA

Chihong Ma, Qin Zhou, Jinjin Shi, Hua Gao, Di Huang, Huimin Xue, Han Wang, Zhenzhong Zhang, Sen Yang, Junli Zhang, Kaixiang Zhang

Summary: We developed a CRISPR-empowered electrochemical biosensor, named PER-E-CRISPR, for amplification-free and sensitive detection of miR-21. The biosensor combines the advantages of CRISPR/Cas13a and primer exchange reaction (PER) for target amplification. Under optimized conditions, the PER-E-CRISPR assay exhibits a linear range from 10-13 to 10-7 M and a limit of detection of 30.2 fM. The biosensor shows excellent performance in actual plasma, indicating promising prospects for miRNA detection in molecular diagnosis.

TALANTA (2024)

Article Chemistry, Analytical

Application and evaluation of molecular docking for aptamer and small molecular interaction- A case study with tetracycline antibiotics

Gang Liang, Jie Zhao, Yufei Gao, Tao Xie, Jianhui Zhen, Ligang Pan, Wenwen Gong

Summary: Molecular docking (MD) analysis is widely used for studying the interaction between aptamers and small molecules. This study established steady-state aptamers of tertiary structures (SATS) using specific aptamers of tetracycline antibiotics as docking models. Molecular docking results revealed multiple binding sites in the SATS of aptamers, with significant variations in binding free energy (BFE) and docking score (DS). The study also proposed a method for MD analysis based on SATS, providing insights into binding mode and predicting binding sites.

TALANTA (2024)

Article Chemistry, Analytical

Highly bright stable organic radicals encapsulated by amphiphilic polypeptide for efficient near-infrared phototheranostics

Yixuan Xu, Changchang Teng, Huiping Dang, Dalong Yin, Lifeng Yan

Summary: Stable organic radical molecules with high NIR fluorescence quantum efficiency have been synthesized and encapsulated into nanoparticles, which show great potential for both photodynamic therapy (PDT) and photothermal therapy (PTT) of tumors.

TALANTA (2024)

Article Chemistry, Analytical

The construction of highly selective surface molecularly imprinted polymers based on Cu(II) coordination for the detection of bisphenol A

Yu Su, Dandan Yang, Yanjie Wang, Jie Ding, Lan Ding, Daqian Song

Summary: In this study, a highly selective molecularly imprinted polymer Cu-MIPs@CS was designed and synthesized for bisphenol A (BPA). Cu-MIPs@CS showed significantly enhanced imprinting factor and selective factor towards BPA compared to MIPs@CS. It also exhibited superior discrimination ability between BPA and its structural analogue. Additionally, Cu-MIPs@CS were successfully applied as a solid phase extraction adsorbent for the determination of BPA in drinking water samples.

TALANTA (2024)

Article Chemistry, Analytical

A simple joint detection platform for high-throughput single-cell heterogeneity screening

Yi Qiao, Qiongdan Zhang, Yukun He, Tianguang Cheng, Jing Tu

Summary: Single cell heterogeneity plays an important role in many biological phenomena, and distinguishing cells with specific mutations is beneficial for clinical diagnosis and drug screening. This study introduces a gel plate platform that can distinguish cell types based on their phenotypes, with low equipment requirement. The gel platform has potential in point-of-care circumstances and single-cell stimulation responses that prioritize efficiency and simplicity.

TALANTA (2024)

Article Chemistry, Analytical

Nanotechnology-based analytical techniques for the detection of contaminants in aquatic products

Chengke Wang, Shuyang Sun, Ping Wang, Huawei Zhao, Wenling Li

Summary: The food safety of aquatic products is a global concern. Nanotechnology-based analyses have advantages in the detection of bacteria, metal ions, and small molecule contaminants. This review summarizes the recent advances in biosensing strategies for aquatic products and highlights the application of nanomaterials, lateral flow-based biosensors, surface-enhanced Raman scattering, microfluidic chips, and molecular imprinting technologies.

TALANTA (2024)

Article Chemistry, Analytical

A sensitive off-on electrochemiluminescence DNA sensor based on signal cascade amplification circuit and distance-dependent energy transfer

Liping Zhu, Zeng Tang, Xuemei Zhang, Li Zhu, Tian Meng, Linying Yu, Ting Xiao, Shasha Lu, Xiaoli Xiong, Xiurong Yang

Summary: A sensitive off-on electrochemiluminescence DNA sensor was developed using Exo III-assisted cascade amplification system. The sensor achieved high selectivity and ultra-high sensitivity in detecting target DNA by utilizing ECL and SPR effects. This study provides a new perspective for designing highly sensitive and programmable ECL biosensors.

TALANTA (2024)

Article Chemistry, Analytical

A binary system based DNA tetrahedron and fluorogenic RNA aptamers for highly specific and label-free mRNA imaging in living cells

Tong Li, Mengxu Sun, Suping Xia, Ting Huang, Rong-Tian Li, Chunrong Li, Zong Dai, Jin-Xiang Chen, Jun Chen, Nuan Jia

Summary: Here, we developed a binary system based on DNA tetrahedron and fluorogenic RNA aptamers for highly specific and label-free mRNA imaging in living cells. This system achieved high specificity label-free detection of nucleic acids with a detection limit of 1.34 nM. The method has potential applications in early disease diagnosis and new drug development.

TALANTA (2024)

Article Chemistry, Analytical

Design and synthesis of hierarchical MnO-Fe3O4@C/expanded graphite composite for sensitive electrochemical detection of bisphenol A

Yao Zhao, Shu Zhang, Wang Yao, Yuxuan Zhu, Jing Qian, Juan Yang, Nianjun Yang

Summary: A new hierarchical nanostructured composite with high conductivity and catalytic activity is synthesized. The sensor exhibits significant catalytic effect and high sensitivity for monitoring the environmental endocrine disruptor bisphenol A (BPA).

TALANTA (2024)