用于健康应用的适配体和基于寡核苷酸的生物传感器。
Aptamer and Oligonucleotide-Based Biosensors for Health Applications.
作者信息
Mayol Beatriz, Qubbaj I Zeina, Nava-Granados Julieta, Vasquez Katherine, Keene Scott T, Sempionatto Juliane R
机构信息
Department of Electrical and Computer Engineering, Rice University, Houston, TX 77005, USA.
Department of Materials Science and NanoEngineering, Rice University, Houston, TX 77005, USA.
出版信息
Biosensors (Basel). 2025 Apr 29;15(5):277. doi: 10.3390/bios15050277.
Aptamers have emerged as powerful molecular recognition elements for biosensing applications, offering high specificity, stability, and adaptability. This review explores key considerations in designing aptamer-based sensors (aptasensors), with a focus on biomarker selection, aptamer design, and detection and immobilization strategies. However, challenges such as biofluid stability and reversibility must be addressed to improve biosensor performance. In this study, the potential of aptamer-based platforms in diagnostics is explored, emphasizing their advantages and future applications. Looking ahead, advances in multifunctional aptamers, integration with nanomaterials, and computational optimization are highlighted as promising directions for enhancing their effectiveness in biosensing.
适体已成为生物传感应用中强大的分子识别元件,具有高特异性、稳定性和适应性。本综述探讨了基于适体的传感器(适体传感器)设计中的关键考虑因素,重点关注生物标志物选择、适体设计以及检测和固定策略。然而,必须解决诸如生物流体稳定性和可逆性等挑战,以提高生物传感器的性能。在本研究中,探讨了基于适体的平台在诊断中的潜力,强调了它们的优势和未来应用。展望未来,多功能适体、与纳米材料的整合以及计算优化方面的进展被视为增强其在生物传感中有效性的有前景的方向。