A Terbium Metal–Organic Framework Platform for Determination of Lamotrigine in Exhaled Breath Condensate

Q4 Pharmacology, Toxicology and Pharmaceutics Infarma Pharmaceutical Sciences Pub Date : 2021-11-21 DOI:10.34172/ps.2021.67
Parisa Eydi, E. Rahimpour, M. Khoubnasabjafari, V. Jouyban-Gharamaleki, A. Jouyban
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引用次数: 2

Abstract

Background: Lamotrigine is widely used in the management of partial epilepsy, generalized tonic-clonic epilepsy and Lenox-Gastut syndrome and an add-on therapy in the treatment of complex and simple partial seizures and secondarily generalized tonic-clonic seizures resistant to multiple drug therapy. Methods: In the current study, a fluorometric nanoprobe based on metal–organic frameworks (MOF) was designed for the determination of lamotrigine in exhaled breath condensate (EBC). The MOF nanoprobe consisted of Tb3+ ions as metal part and dimethylformamide (DMF) and 1,10-phenanthroline (Phen) as organic parts of nanoprobe. Results: The used probe shows a week fluorescence in alkaline media owing to an energy transfer from nitrogen groups of DMF and Phen on carbonyl group of DMF as an antenna for Tb3+ luminescence. However, its fluorescence is enhanced in acidic conditions by protonation of DMF nitrogen atoms and Phen and deactivation of energy transfer pathways of nitrogen groups to carbonyl group. Lamotrigine addition to this fluorescent system leads to quenching in the fluorescence intensity due to reactivation of the above mentioned energy transfer pathways resulting in competitive interaction with H+ ions. Moreover, the inner filter effect (IFE) of lamotrigine on DMF–Tb–Phen MOF NPs is considered as another reason for the observed quenching in the fluorescence of DMF–Tb–Phen MOF NPs. The intensity of the fluorescence was recorded at λem = 545 nm and the difference between fluorescence signal in the absence and presence of lamotrigine was the analytical response. The factors affected on experimental conditions were optimized utilizing a multivariate optimization technique. The validation of nanoprobe response to lamotrigine gives a linear relationship in the range of 0.05 to 2.0 µg⋅mL‒1 with a detection limit of 11.0 ng⋅mL‒1 for lamotrigine. Conclusion: The developed method reveals good repeatability and selectivity for lamotrigine in real samples.
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金属铽-有机骨架平台测定呼出液中拉莫三嗪
背景:拉莫三嗪广泛应用于部分性癫痫、全身性强直-阵挛性癫痫和Lenox-Gastut综合征的治疗,并可作为复合、单纯性部分性癫痫和继发性全身性强直-阵挛性癫痫的附加治疗。方法:设计了一种基于金属有机骨架(MOF)的荧光纳米探针,用于测定呼出液(EBC)中拉莫三嗪的含量。MOF纳米探针由Tb3+离子作为金属部分,二甲甲酰胺(DMF)和1,10-菲罗啉(Phen)作为有机部分组成。结果:所使用的探针在碱性介质中表现出一周的荧光,这是由于DMF的氮基和Phen的能量转移到DMF的羰基上作为Tb3+发光的天线。然而,在酸性条件下,DMF氮原子和苯基质子化,氮基团到羰基的能量转移途径失活,使其荧光增强。拉莫三嗪加入到该荧光系统中导致荧光强度猝灭,这是由于上述能量转移途径的再激活导致与H+离子的竞争性相互作用。此外,拉莫三嗪对DMF-Tb-Phen MOF NPs的内滤效应(IFE)被认为是DMF-Tb-Phen MOF NPs荧光猝灭的另一个原因。在λem = 545 nm处记录荧光强度,以拉莫三嗪不存在和不存在时荧光信号的差异作为分析响应。利用多元优化技术对影响实验条件的因素进行了优化。纳米探针对拉莫三嗪的响应验证在0.05 ~ 2.0µg⋅mL-1范围内呈线性关系,检测限为11.0 ng⋅mL-1。结论:所建立的方法对拉莫三嗪在实际样品中具有良好的重复性和选择性。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
17
审稿时长
10 weeks
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