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磺胺嘧啶在水产养殖环境中的选择性测定:中性或带电离子载体的选择性电位传递。

Sulfadiazine-selective determination in aquaculture environment: selective potentiometric transduction by neutral or charged ionophores.

机构信息

BioMark/ISEP, Instituto Superior de Engenharia do Porto, Porto, Portugal.

出版信息

Talanta. 2011 Sep 15;85(3):1508-16. doi: 10.1016/j.talanta.2011.06.022. Epub 2011 Jun 17.

DOI:10.1016/j.talanta.2011.06.022
PMID:21807216
Abstract

Solid-contact sensors for the selective screening of sulfadiazine (SDZ) in aquaculture waters are reported. Sensor surfaces were made from PVC membranes doped with tetraphenylporphyrin-manganese(III) chloride, α-cyclodextrin, β-cyclodextrin, or γ-cyclodextrin ionophores that were dispersed in plasticizer. Some membranes also presented a positive or a negatively charged additive. Phorphyrin-based sensors relied on a charged carrier mechanism. They exhibited a near-Nernstian response with slopes of 52 mV decade(-1) and detection limits of 3.91×10(-5) mol L(-1). The addition of cationic lipophilic compounds to the membrane originated Nernstian behaviours, with slopes ranging 59.7-62.0 mV decade(-1) and wider linear ranges. Cyclodextrin-based sensors acted as neutral carriers. In general, sensors with positively charged additives showed an improved potentiometric performance when compared to those without additive. Some SDZ selective membranes displayed higher slopes and extended linear concentration ranges with an increasing amount of additive (always <100% ionophore). The sensors were independent from the pH of test solutions within 2-7. The sensors displayed fast response, always <15s. In general, a good discriminating ability was found in real sample environment. The sensors were successfully applied to the fast screening of SDZ in real waters samples from aquaculture fish farms. The method offered the advantages of simplicity, accuracy, and automation feasibility. The sensing membrane may contribute to the development of small devices allowing in locus measurements of sulfadiazine or parent-drugs.

摘要

用于水产养殖水中磺胺嘧啶(SDZ)选择性筛选的固体接触传感器被报道。传感器表面由掺杂有四苯基卟啉-氯化锰(III)、α-环糊精、β-环糊精或γ-环糊精离子载体的 PVC 膜制成,这些离子载体分散在增塑剂中。一些膜还具有正电荷或负电荷添加剂。基于卟啉的传感器依赖于带电载体机制。它们表现出近 Nernstian 响应,斜率为 52 mV decade(-1),检测限为 3.91×10(-5) mol L(-1)。向膜中添加阳离子亲脂性化合物会产生 Nernstian行为,斜率范围为 59.7-62.0 mV decade(-1),线性范围更广。基于环糊精的传感器作为中性载体。一般来说,与没有添加剂的传感器相比,带有正电荷添加剂的传感器显示出更好的电位性能。一些 SDZ 选择性膜显示出更高的斜率和扩展的线性浓度范围,随着添加剂(始终 <100%离子载体)的增加。传感器在测试溶液的 pH 值为 2-7 范围内是独立的。传感器的响应速度很快,通常<15s。总的来说,在实际样品环境中发现了良好的区分能力。该传感器成功应用于水产养殖鱼类养殖场实际水样中磺胺嘧啶的快速筛选。该方法具有简单、准确和自动化可行性的优点。传感膜可能有助于开发允许磺胺嘧啶或母体药物现场测量的小型设备。

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