Synthesis and electrochemical study of enzymatic graphene oxide-based nanocomposite as stable biosensor for determination of bevacizumab as a medicine in colorectal cancer in human serum and wastewater fluids

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Xiaoli Wang , Saman Mohammadzadehsaliani , Somayeh Vafaei , Leila Ahmadi , Amjad Iqbal , Baraa Abd Alreda , Bashar Zuhair Talib Al-Naqeeb , Hadis Kheradjoo
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引用次数: 2

Abstract

This work's goal was the fabrication of a graphene oxide-based nanocomposite biosensor for the determination of bevacizumab (BVZ) as a medicine for colorectal cancer in human serum and wastewater fluids. For the fabrication electrode, graphene oxide was electrodeposited on GCE (GO/GCE), and then DNA and monoclonal anti-bevacizumab antibodies were immobilized on the GO/GCE surface, respectively (Ab/DNA/GO/GCE). Structural characterization using XRD, SEM, and Raman spectroscopy confirmed the binding of DNA to GO nanosheets and the interaction of Ab with the DNA/GO array. Electrochemical characterization of Ab/DNA/GO/GCE using CV and DPV indicated immobilization of antibodies on DNA/GO/GCE and sensitive and selective behavior of modified electrodes for determination of BVZ. The linear range was obtained 10–1100 μg/mL, and the sensitivity and detection limit values were determined to be 0.14575 μA/μg.mL−1 and 0.02 μg/mL, respectively. To verify the applicability of the planned sensor for determination of BVZ in human serum and wastewater fluid specimens, the outcomes of DPV measurements using Ab, DNA, GO, and GCE and the results of the Bevacizumab ELISA Kit for determination of BVZ in prepared real specimens showed good conformity between the outcomes of both analyses. Moreover, the proposed sensor showed considerable assay precision with recoveries ranging from 96.00% to 98.90% and acceptable relative standard deviations (RSDs) below 5.11%, illustrating sufficiently good sensor accuracy and validity in the determination of BVZ in prepared real specimens of human serum and wastewater fluids. These outcomes demonstrated the feasibility of the proposed BVZ sensor in clinical and environmental assay applications.

Abstract Image

酶促氧化石墨烯纳米复合材料作为稳定生物传感器的合成和电化学研究,用于测定人类血清和废水中贝伐单抗作为结直肠癌药物的作用
这项工作的目标是制造一种基于氧化石墨烯的纳米复合生物传感器,用于测定人类血清和废水中作为结直肠癌药物的贝伐单抗(BVZ)。制备电极时,将氧化石墨烯电沉积在氧化石墨烯表面(GO/GCE),然后将DNA和单克隆抗贝伐单抗分别固定在氧化石墨烯/GCE表面(Ab/DNA/GO/GCE)。利用XRD、SEM和拉曼光谱进行结构表征,证实了DNA与氧化石墨烯纳米片的结合以及Ab与DNA/氧化石墨烯阵列的相互作用。利用CV和DPV对Ab/DNA/GO/GCE进行电化学表征,结果表明抗体可固定在DNA/GO/GCE上,且修饰电极对BVZ的测定具有敏感性和选择性。线性范围为10 ~ 1100 μg/mL,灵敏度和检出限均为0.14575 μA/μg。mL−1和0.02 μg/mL。为了验证所设计的传感器在人血清和废水标本中测定BVZ的适用性,使用Ab、DNA、GO和GCE测定DPV的结果与制备的真实标本中测定BVZ的贝伐单抗ELISA Kit的结果显示,两种分析结果之间具有良好的一致性。此外,该传感器具有较高的测定精度,回收率在96.00% ~ 98.90%之间,可接受的相对标准偏差(rsd)在5.11%以下,说明该传感器在制备的人血清和废水样品中测定BVZ具有良好的准确性和有效性。这些结果证明了所提出的BVZ传感器在临床和环境分析应用中的可行性。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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