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Advancements in Hydrogel-Functionalized Immunosensing Platforms

机译:水凝胶功能化免疫传感平台的进展

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Explicit antigen–antibody binding has accelerated the development of immunosensors for the detection of various analytes in biomedical and environmental domains. Being a subclass of biosensors, immunosensors have been a significant area of research in attaining high sensitivity and an ultralow sensing limit to detect biological analytes present in trace levels. The highly porous structure, large surface area, and excellent biocompatibility of hydrogels enabling the retainability of the activity and innate framework of the attached biomolecules make them a suitable candidate for immunosensor fabrication. Hydrogels based on polycarboxylate, cellulose, polyaniline, polypyrrole, sodium alginate, chitosan, and agarose are exploited in conjunction with other nanomaterials such as AuNPs, GO, and MWCNTs to augment the electron transfer during the immunosensing mechanism. Surface plasmon resonance, electrochemiluminescence, colorimetric, and electrochemical assays are different strategies utilized for the signal transduction in hydrogel-based immunosensors during the formation of the antigen–antibody complex. These hydrogel-based immunosensors exhibit rapid response, excellent stability, reproducibility, high selectivity and high sensitivity, a broad range of detection, an ultralow limit of detection, and display results similar to those for the ELISA test. This review propounds different hydrogel-functionalized immunosensing platforms classified on the basis of their signal transduction for the detection of disparate cancer biomarkers (tumor necrosis factor, α-fetoprotein, prostate-specific antigen, carbohydrate antigen 24-2, carcinoembryonic antigen, neuron-specific enolase, and cytokeratin antigen 21-1), hormones (cortisol, cortisone, and human chorionic gonadotropin), human IgG, and ractopamine in animal feeds.
机译:明确的抗原-抗体结合加快了免疫传感器的发展,用于检测生物医学和环境领域中的各种分析物。作为生物传感器的一个子类,免疫传感器在获得高灵敏度和超低检测限以检测痕量水平存在的生物分析物方面一直是重要的研究领域。水凝胶具有高度多孔的结构,较大的表面积和出色的生物相容性,可保持活性和所附着生物分子的固有构架,使其成为免疫传感器制造的合适候选者。基于聚羧酸盐,纤维素,聚苯胺,聚吡咯,海藻酸钠,壳聚糖和琼脂糖的水凝胶可与其他纳米材料(例如AuNPs,GO和MWCNTs)结合使用,以增强免疫传感机制中的电子转移。表面等离振子共振,电化学发光,比色法和电化学分析是抗原-抗体复合物形成过程中基于水凝胶的免疫传感器信号转导的不同策略。这些基于水凝胶的免疫传感器表现出快速响应,出色的稳定性,可重复性,高选择性和高灵敏度,广泛的检测范围,超低的检测限,并显示与ELISA测试相似的结果。这篇综述提出了根据其信号转导分类的不同水凝胶功能化免疫传感平台,用于检测不同的癌症生物标记物(肿瘤坏死因子,α-甲胎蛋白,前列腺特异性抗原,碳水化合物抗原24-2,癌胚抗原,神经元特异性动物饲料中的烯醇化酶和细胞角蛋白抗原21-1),激素(皮质醇,可的松和人绒毛膜促性腺激素),人IgG和莱克多巴胺。

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