Singhal Ayushi, Singh Amrita, Shrivastava Apoorva, Khan Raju
CSIR-Advanced Materials and Processes Research Institute (AMPRI), Hoshangabad Road, Bhopal - 462026, MP, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002, India.
J Mater Chem B. 2023 Feb 1;11(5):936-954. doi: 10.1039/d2tb02135h.
Epitope imprinting is a promising method for creating specialized recognition sites that resemble natural biorecognition elements. Epitope-imprinted materials have gained a lot of attention recently in a variety of fields, including bioanalysis, drug delivery, and clinical therapy. The vast applications of epitope imprinted polymers are due to the flexibility in choosing monomers, the simplicity in obtaining templates, specificity toward targets, and resistance to harsh environments along with being cost effective in nature. The "epitope imprinting technique," which uses only a tiny subunit of the target as the template during imprinting, offers a way around various drawbacks inherent to biomacromolecule systems , traditional molecular imprinting techniques with regards to the large size of proteins, such as the size, complexity, accessibility, and conformational flexibility of the template. Electrochemical based sensors are proven to be promising tool for the quick, real-time monitoring of biomarkers. This review unravels epitope imprinting techniques, approaches, and strategies and highlights the applicability of these techniques for the electrochemical quantification of biomarkers for timely disease monitoring. In addition, some challenges are discussed along with future prospective developments.
表位印记是一种很有前景的方法,用于创建类似于天然生物识别元件的特殊识别位点。表位印记材料最近在包括生物分析、药物递送和临床治疗在内的各种领域受到了广泛关注。表位印记聚合物的广泛应用归因于单体选择的灵活性、模板获取的简便性、对靶标的特异性、对恶劣环境的耐受性以及成本效益。“表位印记技术”在印记过程中仅使用靶标的一个微小亚基作为模板,为克服生物大分子系统、传统分子印记技术在蛋白质尺寸较大方面(如模板的大小、复杂性、可及性和构象灵活性)固有的各种缺点提供了一条途径。基于电化学的传感器被证明是快速、实时监测生物标志物的有前途的工具。本综述阐述了表位印记技术、方法和策略,并强调了这些技术在电化学定量生物标志物以进行及时疾病监测方面的适用性。此外,还讨论了一些挑战以及未来的前瞻性发展。