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掺杂于聚乙二醇中的铽-阿托伐他汀光学生物传感器用于血清样品中孕酮和睾酮的选择性测定。

Tb-atorvastatin doped in poly(ethylene glycol) optical biosensor for selective determination of progesterone and testosterone in serum samples.

作者信息

Attia Mohamed S, Mahmoud Safwat A, Ahmed Amal M, Amin Tarek A, Youssef Ahmed O, Amin Mohammed A, Abou-Omar Mona N, Mohamed Ekram H

机构信息

Chemistry Department, Faculty of Science, Ain Shams University Cairo 11566 Egypt

Physics Department, Faculty of Science, Northern Border University Arar Saudi Arabia.

出版信息

RSC Adv. 2021 Oct 12;11(53):33326-33333. doi: 10.1039/d1ra05860f. eCollection 2021 Oct 8.

Abstract

An innovative, simple and cost effective Tb-atorvastatin photo probe was designed and used as a core for a spectrofluorometric approach to sensitively determine two vital biological compounds in serum samples. Tb-atorvastatin complex displays a characteristic electrical band with at 545 nm with significant luminescence intensity, which is quenched in the presence of progesterone and testosterone at two variant sets of pH; 6.2 and 7.5, respectively. The conditions were optimized and the best solvent for operation was found to be acetonitrile with at 320 nm. Progesterone and testosterone were assessed in serum samples using the same optimal conditions within concentration ranges of 2 × 10 to 2.9 × 10 and 3.1 × 10 to 4.8 × 10 mol L, respectively. The proposed luminescence method was validated in accordance to ICH guidelines and found to be accurate, precise and specific and free from any interference. The cost effectiveness and applicability of the method make it a good choice for routine analysis of the two compounds and early diagnosis of chronic diseases associated with abnormalities in their physiological levels.

摘要

设计了一种创新、简单且经济高效的铽-阿托伐他汀光探针,并将其用作荧光光谱法的核心,以灵敏地测定血清样品中的两种重要生物化合物。铽-阿托伐他汀络合物在545 nm处显示出特征性的电波段,具有显著的发光强度,在两种不同的pH值(分别为6.2和7.5)下,在孕酮和睾酮存在时会发生猝灭。对条件进行了优化,发现最佳的操作溶剂是乙腈,激发波长为320 nm。在相同的最佳条件下,分别在2×10至2.9×10和3.1×10至4.8×10 mol/L的浓度范围内对血清样品中的孕酮和睾酮进行了评估。所提出的发光方法按照国际协调会议(ICH)指南进行了验证,结果表明该方法准确、精密、特异,且无任何干扰。该方法的成本效益和适用性使其成为这两种化合物常规分析以及与其生理水平异常相关的慢性病早期诊断的良好选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2158/9042288/0f15160df569/d1ra05860f-f1.jpg

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