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An amperometric immunoprobe based on multifunctional nanogel for sensitive detection of tumor marker

机译:基于多功能纳米凝胶的安培免疫探针,用于肿瘤标志物的灵敏检测

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Nanogel as a multifunctional carrier was used to fabricate immunoprobe. The obtained immunoprobe was applied in a competitive amperometric immunosensor and exhibited an excellent analytical performance for the detection of tumor marker. The nanogel was easily fabricated by irradiation of the mixture of glucose, sodium citrate and sodium alginate by microwave, which exhibits excellent adsorbent ability for multivalence metal ions. The immunoprobe was constructed by functionalizing such uniform nanogels with multivalence metal ions (Cu2+as model) as redox species and gold nanoparticles for immobilizing antibody. The signal of Cu2+from the nanogel can be directly measured without acid dissolution and pre-concentration, which substantially simplified the detection steps. Besides, the response current can be amplified by glucose because Cu2+is an electro-catalyst for the oxidation of glucose. Polyaniline hydrogel with a three dimensional network structure and π–π conjugated structure was used to fabricate immunosensing substrate, which extremely improved the specific surface area and conductivity of the modified electrode. Under optimal conditions, the current changes of square wave voltammetry were used to detect neuron specific enolase (as a model analyte) with a broad linear ranging from 0.01 to 1000 ng mL−1and a ultralow detection limit of 4.6 pg mL-1(S/N = 3). This work provides a new strategy for designing multifunctional immunoprobes.
机译:纳米凝胶作为多功能载体用于制备免疫探针。将获得的免疫探针应用于竞争性安培免疫传感器中,并表现出优异的分析性能,可用于检测肿瘤标志物。通过微波辐射葡萄糖,柠檬酸钠和海藻酸钠的混合物,可以容易地制备纳米凝胶,该纳米凝胶显示出对多价金属离子的优异吸附能力。通过用多价金属离子(Cu2 +作为模型)将这种均匀的纳米凝胶功能化为氧化还原物质,并用金纳米颗粒固定抗体来构建免疫探针。来自纳米凝胶的Cu2 +信号可以直接测量,而无需酸溶解和预浓缩,这大大简化了检测步骤。此外,由于Cu 2+是葡萄糖氧化的电催化剂,因此可以通过葡萄糖来放大响应电流。具有三维网络结构和π–π共轭结构的聚苯胺水凝胶被用于制备免疫传感基质,极大地改善了修饰电极的比表面积和电导率。在最佳条件下,使用方波伏安法的当前变化来检测神经元特异性烯醇化酶(作为模型分析物),线性范围为0.01至1000 ng mL-1,超低检测限为4.6 pg mL-1(S / N = 3)。这项工作为设计多功能免疫探针提供了新的策略。

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