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首页> 外文期刊>Analytical chemistry >Enzymatic and Nonenzymatic Electrochemical Interaction of Abiraterone (Antiprostate Cancer Drug) with Multiwalled Carbon Nanotube Bioelectrodes
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Enzymatic and Nonenzymatic Electrochemical Interaction of Abiraterone (Antiprostate Cancer Drug) with Multiwalled Carbon Nanotube Bioelectrodes

机译:阿比特龙(抗前列腺癌药物)与多壁碳纳米管生物电极的酶促和非酶促电化学相互作用

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摘要

Unexplored electrochemical behavior of abiraterone, a recent and widely used prostate cancer drug, in interaction with cytochrome P450 3A4 (CYP3A4) :enzyme and multiwalled carbon nanotubes (MWCNTs) is investigated in this work. The results reported in this work are significant for personalized medicine and point-of-care chemical treatment especially to improve the life expectancy and quality of life of patients with prostate-cancer. To this purpose, enzymatic and nonenzymatic electrochemical biosensors were developed and characterized with, different concentrations of abiraterone: Nonenzymatic biosensors Were functionalized with MWCNTs as a catalyst for signal enhancement while enzymatic biosensors have been obtained CYP3A4 protein immobilized on MWCNTs as recognition biomolecule.. Enzymatic' electrochemical experiments demonstrated an inhibition effect on tlie CYP3A4, clearly observed as a diminished electrocatalytic activity of the enzyme. Electrochemical responses of nonenzymatic biosensors clearly demonstrated the direct electroactivity of abiraterone when reacting with MWCNT as well as electrode-fouling effect.
机译:在这项工作中,研究了一种新近广泛使用的前列腺癌药物阿比特龙与细胞色素P450 3A4(CYP3A4):酶和多壁碳纳米管(MWCNT)相互作用的未探索的电化学行为。这项工作中报道的结果对于个性化医学和即时护理化学治疗具有重要意义,特别是对于提高前列腺癌患者的预期寿命和生活质量而言。为此,开发了酶和非酶电化学生物传感器,并用不同浓度的阿比特龙表征:非酶生物传感器用MWCNTs进行功能化,以增强信号,同时获得了酶生物传感器,将CYP3A4蛋白固定在MWCNTs上作为识别生物分子。电化学实验证明对CYP3A4有抑制作用,清楚地观察到该酶的电催化活性降低。非酶生物传感器的电化学反应清楚地证明了阿比特龙与MWCNT反应时的直接电活性以及电极污染效应。

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