A combination of amino-functionalized fbrous silica (KCC-1-NH2)/ effectively and effciently oxidized graphene oxide (EEGO) nanocomposite for dispersive solid-phase extraction, pre-concentration and fluorescence determination of total para-cresol in plasma samples of chronic kidney disease patient

A combination of amino-functionalized fbrous silica (KCC-1-NH2)/ effectively and effciently oxidized graphene oxide (EEGO) nanocomposite for dispersive solid-phase extraction, pre-concentration and fluorescence determination of total para-cresol in plasma samples of chronic kidney disease patient


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دانشگاه علوم پزشکی تبریز
دانشگاه علوم پزشکی تبریز

نویسندگان: ابوالقاسم جویبان , میلاد مرادی , جعفر سلیمانی

کلمات کلیدی: P-Cresyl sulfateSilica/graphene oxide nanocompositeFluorescencePatients’ plasma samplesDispersive solid phase extraction

نشریه: 18344 , 2022 , 214 , 2022

اطلاعات کلی مقاله
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نویسنده ثبت کننده مقاله ابوالقاسم جویبان
مرحله جاری مقاله تایید نهایی
دانشکده/مرکز مربوطه مرکز تحقیقات آنالیز دارویی
کد مقاله 78757
عنوان فارسی مقاله A combination of amino-functionalized fbrous silica (KCC-1-NH2)/ effectively and effciently oxidized graphene oxide (EEGO) nanocomposite for dispersive solid-phase extraction, pre-concentration and fluorescence determination of total para-cresol in plasma samples of chronic kidney disease patient
عنوان لاتین مقاله A combination of amino-functionalized fbrous silica (KCC-1-NH2)/ effectively and effciently oxidized graphene oxide (EEGO) nanocomposite for dispersive solid-phase extraction, pre-concentration and fluorescence determination of total para-cresol in plasma samples of chronic kidney disease patient
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عنوان نشریه (خارج از لیست فوق)
نوع مقاله Original Article
نحوه ایندکس شدن مقاله ایندکس شده سطح یک – ISI - Web of Science
آدرس لینک مقاله/ همایش در شبکه اینترنت

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A novel amino-functionalized fibrous silica (KCC-1-NH2) and effectively and efficiently oxidized graphene oxide (EEGO) nanocomposite has been successfully synthesized. This nanocomposite was applied as a new sorbent in the dispersive solid-phase extraction (-SPE) to the preconcentration of total p-cresyl sulfate (pCS) in human plasma samples. The morphology and basic structure of the proposed nanocomposite were investigated through different techniques including field emission scanning electron microscopy (FESEM), energy dispersive X-ray (EDX), transmission electron microscopy (TEM), Fourier transform infrared (FTIR), and dynamic light scattering (DLS)/zeta potential techniques. The influence of different factors on the extraction efficiency, including the amount of sorbent, sample pH, extraction time, elution solvents and their volume, and desorption time were also investigated. The developed fluorescence-based method offers a linear dynamic range from 0.02 to 6 µg/mL with an acceptable correlation coefficient (R2 = 0.9982) and recovery (80%). The limit of quantification (LOQ) and limit of detection (LOD) were found to be 0.043 and 0.013 µg/mL, respectively. Plasma samples of five chronic kidney disease (CKD) patients were also analyzed and measured pCS concentrations were ranged from 16 to 41 µg/mL. The applicability of the method was successfully tested for the extraction and quantification of pCS from spiked and patients’ plasma samples.

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نویسنده نفر چندم مقاله
ابوالقاسم جویبانسوم
میلاد مرادیاول
جعفر سلیمانیدوم

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نام فایل تاریخ درج فایل اندازه فایل دانلود
J Pharm Biomed Anal 214 (2022) 114746.pdf1401/02/312817772دانلود