Role of Iron Phthalocyanine Coordination in Catecholamines Detection

Surfaces Pub Date : 2021-12-12 DOI:10.3390/surfaces4040027
C. S. Martin, R. Rubira, Jaqueline N. Silva, P. Aléssio
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引用次数: 1

Abstract

Catecholamines are an important class of neurotransmitters responsible for regularizing, controlling, and treating neural diseases. Based on control and diseases treatment, the development of methodology and dives to sensing is a promissory technology area. This work evaluated the role of iron phthalocyanine coordination (FePc) with the specific groups from catecholamine molecules (L-dopa, dopamine, epinephrine, and the amino acid tyrosine) and the effect of this coordination on electrochemical behavior. The in situ coordination analysis was performed through isotherms π-A of FePc Langmuir films in the absence and presence of catecholamines. The π-A isotherm indicates a strong interaction between FePc monolayer and L-Dopa and DA, which present a catechol group and a side chain with a protonated amino group (-NH3+). These strong interactions with catechol and amine groups were confirmed by characterization at the molecular level using the surface-enhanced Raman spectroscopy (SERS) from a Langmuir–Schaefer monolayer deposited onto Ag surfaces. The electrochemical measurements present a similar tendency, with lower oxidation potential observed to DA>L-Dopa>Ep. The results corroborate that the coordination of the analyte on the electron mediator surface plays an essential role in an electrochemical sensing application. The FePc LS film was applied as a sensor in tablet drug samples, showing a uniformity of content of 96% for detecting active compounds present in the L-Dopa drug samples.
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酞菁铁配位在儿茶酚胺检测中的作用
儿茶酚胺是一类重要的神经递质,负责调节、控制和治疗神经疾病。以控制和疾病治疗为基础,向传感方向发展的方法学研究是一个前景广阔的技术领域。本研究评估了酞菁铁配位(FePc)与儿茶酚胺分子中特定基团(左旋多巴、多巴胺、肾上腺素和氨基酸酪氨酸)的作用,以及这种配位对电化学行为的影响。用π-A等温线对FePc Langmuir薄膜在儿茶酚胺存在和不存在的情况下进行了原位配位分析。π-A等温线表明FePc单层膜与L-Dopa和DA有较强的相互作用,呈现出一个儿茶酚基团和一个带质子化氨基(-NH3+)的侧链。通过表面增强拉曼光谱(SERS)在分子水平上对沉积在Ag表面的Langmuir-Schaefer单层进行表征,证实了这些与儿茶酚和胺基的强相互作用。电化学测量也呈现出类似的趋势,氧化电位较低的顺序为DA>L-Dopa>Ep。结果证实了分析物在电子介质表面的配位在电化学传感应用中起着至关重要的作用。将FePc LS薄膜作为传感器应用于片剂药物样品中,检测左旋多巴药物样品中活性成分的含量均匀性为96%。
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