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用于生物传感应用的核酸共轭金纳米颗粒:综述

Nucleic acid conjugated gold nanoparticles for biosensing applications: a review.

作者信息

Patil Tejaswini P, Vibhute Anuja A, Vinu Ajayan, Pandey-Tiwari Arpita

机构信息

Department of Stem Cell & Regenerative Medicine and Medical Biotechnology, Centre for Interdisciplinary Research, D. Y. Patil Education Society (Deemed to be University), Kolhapur, Maharashtra, 416006, India.

Global Innovative Centre for Advanced Nanomaterials (GICAN) Newcastle Institute for Energy and Resources College of Engineering, Science and Environment, The University of Newcastle, Callaghan, NSW, 2308, Australia.

出版信息

World J Microbiol Biotechnol. 2025 Jun 25;41(7):219. doi: 10.1007/s11274-025-04454-z.

Abstract

Gold nanoparticles (AuNPs) have gained widespread use in the development of biosensors for molecular diagnostics due to their ease of functionalization and distinctive optical properties, which are attributed to plasmonic effects. Functionalization strategies are widely applied to manipulate the properties of AuNPs which are then applied for various applications including drug delivery, biosensing, and bioimaging. Among the functionalised AuNPs, nucleic acid-conjugated gold nanoparticles (AuNPs-NA conjugate) have emerged as a powerful platform for biosensing applications due to their unique optical properties, biocompatibility, and ease of functionalization. This review provides an in-depth examination of the integration of nucleic acids with AuNPs for a wide range of biosensing technologies, including detection of pathogens and biomarkers. This review also discusses various methods of conjugating nucleic acids to gold nanoparticles, including covalent bonding, electrostatic interactions, and thiol-based linkages, while highlighting the key factors that influence the stability, specificity, and sensitivity of these conjugates. The paper further explores the optical, electrochemical, and fluorescent biosensing mechanisms enabled by AuNPs-NA conjugates. Finally, it provides a perspective on the future directions of AuNPs-NA conjugates in the development of rapid, cost-effective, and highly sensitive diagnostic tools for clinical and environmental monitoring.

摘要

由于易于功能化和具有独特的光学性质(归因于等离子体效应),金纳米颗粒(AuNPs)在用于分子诊断的生物传感器开发中得到了广泛应用。功能化策略被广泛应用于操控AuNPs的性质,然后将其应用于包括药物递送、生物传感和生物成像在内的各种应用。在功能化的AuNPs中,核酸共轭金纳米颗粒(AuNPs-NA共轭物)因其独特的光学性质、生物相容性和易于功能化,已成为生物传感应用的强大平台。本综述深入探讨了核酸与AuNPs在广泛的生物传感技术中的整合,包括病原体和生物标志物的检测。本综述还讨论了将核酸与金纳米颗粒共轭的各种方法,包括共价键合、静电相互作用和基于硫醇的连接,同时强调了影响这些共轭物稳定性、特异性和灵敏度的关键因素。本文进一步探讨了AuNPs-NA共轭物实现的光学、电化学和荧光生物传感机制。最后,它对AuNPs-NA共轭物在开发用于临床和环境监测的快速、经济高效且高灵敏度诊断工具方面的未来方向提供了展望。

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