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Electrochemical Detection of Oligopeptides at Silicon-Fabricated Micro-Liquid|Liquid Interfaces

机译:硅制备的微液|液界面上寡肽的电化学检测

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The detection of peptides is an important bioanalytical challenge, as they are a generic class of potent molecules of biomedical and biopharmaceutical significance. In this work, the electrochemistry of seven oligopeptides at microscaled interfaces between two immiscible electrolyte solutions ((mu)ITIES) was investigated. Their transfer across the polarized interface was assisted by dibenzo-18-crown-6 (DB18C6). The ion transfer potentials of these oligopeptides were dependent on their hydrophobicities and their interaction with DB18C6. Micropore arrays, which were fabricated in silicon by a combination of wet and dry etch techniques, were used to enhance mass transfer and thus analytical sensitivities. The use of a gellified organic phase allowed the implementation of voltammetric stripping techniques at the liquid-organogel interface. The combination of interface miniaturization and stripping voltammetry provided limits of detection at submicromolar concentration levels. The sensitivities (calibration graph slopes) were -3205 nA (mu)M~(-1) cm~(-2) for Phe-Phe, -1791 nA (mu)M~(-1) cm~(-2) for Leu-Leu, -6014 nA (mu)M~(-1) cm~(-2) for Lys-Lys, and -9611 nA (mu)M~(-1) cm~(-2) for Lys-Lys-Lys. Mixtures of peptides were also investigated with this technique, illustrating the possibility to detect certain mixture combinations.
机译:肽的检测是一项重要的生物分析挑战,因为它们是一类具有生物医学和生物药学意义的有效分子。在这项工作中,研究了两个不混溶的电解质溶液(μITIES)之间的微观界面上的七个寡肽的电化学。通过二苯并18-冠-6(DB18C6)协助它们跨极化界面转移。这些寡肽的离子转移电位取决于其疏水性及其与DB18C6的相互作用。通过结合湿法和干法蚀刻技术在硅中制造的微孔阵列,可用于提高质量传递,从而提高分析灵敏度。凝胶化的有机相的使用允许在液体-有机凝胶界面处实施伏安法。界面小型化和溶出伏安法的结合提供了亚微摩尔浓度水平的检测极限。对Phe-Phe的灵敏度(校正曲线图斜率)为-3205 nA(μ)M〜(-1)cm〜(-2),对于Phe-Phe的灵敏度为-1791 nA(μ)M〜(-1)cm〜(-2) Leu-Leu,Lys-Lys为-6014 nA(μ)M〜(-1)cm〜(-2),Lys-Lys为-9611 nA(μ)M〜(-1)cm〜(-2) -是的还使用此技术研究了肽的混合物,说明了检测某些混合物组合的可能性。

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