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作 者:Nabil N.AL-Hashimi Husam Abed Alfattah Khaleel I.Assaf Asma A.Fakhoury Saja H.Hamed Amjad H.El-Sheikh Khairi M.Fahelelbom
机构地区:[1]The Hashemite University,Faculty of Pharmaceutical Sciences,Department of Pharmaceutical Chemistry,P.O.Box 330127,Zarqa,13133,Jordan [2]The Hashemite University,Faculty of Science,Department of Chemistry,P.O.Box 150459,Zarqa,13115,Jordan [3]Al-Balqa Applied University,Faculty of Science,Department of Chemistry,19117 Al-Salt,Jordan [4]The Hashemite University,Faculty of Pharmaceutical Sciences,Department of Pharmaceutics and Pharmaceutical Technology,P.O.Box 330127,Zarqa,13133,Jordan [5]Al Ain University,College of Pharmacy,Department of Pharmaceutical Sciences,P.O.Box 64141,Al Ain,Al Ain,United Arab Emirates
出 处:《Emerging Contaminants》2024年第2期135-145,共11页新兴污染物(英文)
摘 要:Parabens are antimicrobial preservatives with extensive applications in cosmetics,toiletries,pharmaceuticals,and food.Considering the legitimate concerns relating to their potential to disrupt multiple endocrine functions,it becomes imperative to prioritize the development of innovative bioanalytical techniques for effectively monitoring their presence in biological samples.In this study,an efficient solvent bar microextraction(SBME)was established,utilizing new hydrophobic deep eutectic solvents(DEs)to determine methylparaben and propylparaben in urine and plasma samples.The DEs comprising menthol and tris(2-ethylhexyl)phosphate(M-TEHP)at various molar ratios were synthesized for the first time to enhance the extraction capacity and promote the eco-friendliness of the DE used as an extraction solvent.Fourier-transform infrared(FT-IR)and proton nuclear magnetic resonance(1H NMR)spectroscopies were employed to confirm and investigate the properties of the successful synthesis(M-TEHP)DE at a molar ratio of 1:1.The synthesized DE exhibits low microbial toxicity and can be considered an eco-friendly solvent for extraction.Furthermore,quantum-chemical calculations were utilized to predict synthesized DE's structure and interaction energy with selected parabens.The influential operational factors of DE-SBME on the extraction efficiency(EE%)of both parabens were evaluated using response surface methodology based on central composite design,and a total of 30 extraction tests were conducted to determine the optimal conditions.The optimized DE-SBME,in combination with HPLC-DAD,exhibited low detection limits(0.54–0.91μg L^(−1)),excellent linearity(R^(2)≥0.9993),precise results(RSDs≤7.6%),satisfactory recoveries(92–97%)and negligible matrix effects.Hence,it had remarkable effectiveness and applicability in determining selected parabens in real urine and plasma samples.
关 键 词:Hydrophobic deep eutectic solvent Solvent bar microextraction PARABENS Response surface methodology and central composite design HPLC-DAD Urine and plasma
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