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Characterization of a label system formed by large unilamellar vesicles for its potential use in the design of electrochemical biosensors

机译:通过大型Unilamellar囊泡形成的标签系统的特征在电化学生物传感器设计中的潜在用途

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In this contribution a new electrochemical label system formed by DOPC/palmitic acid/cholesterol/sucrose large unilamellar vesicles (LUVs) with K-4(Fe(CN)(6)) encapsulated is described and, characterized by using electrochemical techniques, dynamic light scattering (DLS) and transmission electron microscopy (TEM). Results indicates that incorporation of cholesterol to the membrane promote a meaningful reduction in the loss of the encapsulated electroactive moleculle. On the other hand, the addition of sucrose allows a successful lyophilization process, and confers stability to the system over long periods of time, remaining unchanged even for ten months after being formed. These properties make this system a very stable label that could be linked to an antibody, antigen or DNA strain; after the specific interaction with the analyte, LUVs rupture can be induced and the electroactive molecule encapsulated can be released and electrochemically detected by using square wave voltammetry. These characteristics make this new system into a signal amplifier that can be used to replace traditional enzyme-labels in electrochemical biosensors design.
机译:在该贡献中,描述了通过使用电化学技术,具有电化学技术,动态光线的DOPC /棕榈酸/胆固醇/蔗糖大的Unilamellar囊泡(Luvs)形成具有K-4(CN)(6))形成的新电化学标签系统。散射(DLS)和透射电子显微镜(TEM)。结果表明,将胆固醇掺入膜促进了封装的电活性分子损失的有意义。另一方面,蔗糖的添加允许成功的冻干过程,并且在长时间长时间赋予系统稳定性,即使在形成后十个月仍保持不变。这些性质使该系统具有非常稳定的标记,可以与抗体,抗原或DNA菌株相关联;在与分析物的特异性相互作用之后,可以诱导Luvs破裂,并且可以通过使用方波伏安法释放并电化学检测包封的电活性分子。这些特性使该新系统成为一种信号放大器,可用于替代电化学生物传感器设计中的传统酶标签。

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