A near-infrared plasmonic biosensor for detection of morphine and codeine in biological samples based on the end-to-end assembly of modified gold nanorods

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analytical Methods Pub Date : 2024-06-07 DOI:10.1039/D4AY00442F
Naimeh Mohseni and Morteza Bahram
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Abstract

The analytical determination of opiates in biological samples is a critical mission and remains a challenge for almost all judicial and clinical drug testing panels due to their high abuse potential. Based on the high sensitivity of the longitudinal surface plasmon resonance (LSPR) peak of gold nanorods (AuNRs), we successfully developed a novel and simple refractive index sensing platform for detection of morphine (MOR) and codeine (COD) by means of 2-amino-5-mercapto-1,3,4-thiadiazole functionalized gold nanorods (AMTD-AuNRs) in aqueous solution, which is, to the best of our knowledge, the first report on the assay of MOR and COD using AuNRs. AMTD molecules strongly anchor onto the tips of AuNRs via the mercapto group and subsequent hydrogen-bonding interactions between AMTD and the analytes induced end-to-end chain assembly of AuNRs and a consequent decrease of the LSPR absorption band at 850 nm along with a bathochromic shift and emergence of a new hybridized plasmon mode at 1050 nm which was characterized using a Vis-NIR spectrophotometer. After systematic optimization, the absorbance ratio (A1050/A850) was proportional to the concentration of MOR in the ranges of 0.08–5 μM and 0.2–8 μM for COD without any significant effect from possible interferents. Furthermore, detection limits of 40 and 62 nM were achieved for MOR and COD, respectively, which are much lower than the cut-off level of 2000 ng mL−1 for opiates in urine samples set by the Substance and Abuse Mental Health Services Administration (SAMHSA). Eventually, as proof-of-applicability, human urine and blood serum samples spiked with MOR and COD were analyzed and excellent recoveries ranging from 94.4 to 108.9% were obtained, demonstrating the successful applicability of the designed refractive index probe in real biological specimens.

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一种用于检测生物样品中吗啡和可待因的近红外等离子体生物传感器,基于端对端组装的改性金纳米棒。
由于鸦片制剂具有很高的滥用潜力,因此分析测定生物样本中的鸦片制剂是一项关键任务,也是几乎所有司法和临床药物检测小组面临的挑战。基于金纳米棒(AuNRs)纵向表面等离子体共振(LSPR)峰的高灵敏度,我们成功地开发了一种新颖而简单的折射率传感平台,利用 2-氨基-5-巯基-1、3,4-噻二唑功能化金纳米棒(AMTD-AuNRs)在水溶液中检测吗啡(MOR)和可待因(COD)的新型简易折射率传感平台。AMTD 分子通过巯基牢固地锚定在 AuNRs 的顶端,随后 AMTD 与分析物之间的氢键相互作用诱导了 AuNRs 的端到端链组装,从而降低了 850 纳米波长处的 LSPR 吸收带,同时出现了浴色偏移,并在 1050 纳米波长处出现了新的杂化等离子体模式,我们使用可见-近红外分光光度计对该模式进行了表征。经过系统优化后,在 0.08-5 μM 和 0.2-8 μM COD 范围内,吸光度比(A1050/A850)与 MOR 的浓度成正比,而不会受到任何可能干扰物的明显影响。此外,MOR 和 COD 的检测限分别为 40 nM 和 62 nM,远低于美国物质和滥用精神健康服务管理局(SAMHSA)规定的尿样中阿片剂含量的临界值 2000 ng mL-1。最后,对添加了 MOR 和 COD 的人体尿液和血清样本进行了应用性验证分析,获得了 94.4% 至 108.9% 的极佳回收率,证明了所设计的折射率探针在实际生物样本中的成功应用。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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