{"title":"纳米金颗粒作为骨关节炎生物标记物的检测工具:新见解","authors":"Atul Mourya, Shristi Arya, Ayush Singh, Gopal Bajad, Soham Loharkar, Shubhra, Pawan Devangan, Neelesh Kumar Mehra, Rahul Shukla, Ramesh Chandra, Jitender Madan","doi":"10.1007/s12088-024-01331-5","DOIUrl":null,"url":null,"abstract":"<p>Extensive research over the years has revealed the remarkable potential of gold nanoparticles (AuNPs) for detecting biomarkers in osteoarthritis (OA). AuNPs are a promising class of nanomaterials offering a wide range of diagnostic and clinical applications. It provides an effective and robust framework for qualitative and quantitative analysis of biomarkers present in the biological fluids of OA patients. AuNPs as theranostics have gained significant attention due to their discrete physical and optical characteristics, including localized surface plasmon resonance (LSPR), fluorescence, surface-enhanced Raman scattering, and quantized charging effect. 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引用次数: 0
摘要
多年来的广泛研究揭示了金纳米粒子(AuNPs)在检测骨关节炎(OA)生物标志物方面的巨大潜力。AuNPs 是一类前景广阔的纳米材料,具有广泛的诊断和临床应用价值。它为定性和定量分析 OA 患者生物液体中的生物标记物提供了一个有效而稳健的框架。金纳米粒子具有离散的物理和光学特性,包括局部表面等离子体共振(LSPR)、荧光、表面增强拉曼散射和量子化电荷效应,因此作为治疗药物备受关注。这些独特的特性使 AuNPs 成为配体复用的绝佳支架,从而提高了生物标记物检测的灵敏度。有几篇报告深入研究了配体与分析物之间生物相互作用动力学的 LSPR 特性。AuNPs 的可调辐射特性与表面工程相结合,可以方便地检测生物液体中的生物标记物。在此,我们全面总结了 OA 不同分子病理过程中产生的不同生物标记物。AuNPs 表面的一系列诊断方法,如适配体连接、抗体偶联、配体锚定和肽装饰等,都有助于生物标记物的识别和量化。此外,本手稿还详细描述了用于生物标记物定点的各种传感策略,以及当前的挑战和未来的展望。
Gold Nanoparticles as a Tool to Detect Biomarkers in Osteoarthritis: New Insights
Extensive research over the years has revealed the remarkable potential of gold nanoparticles (AuNPs) for detecting biomarkers in osteoarthritis (OA). AuNPs are a promising class of nanomaterials offering a wide range of diagnostic and clinical applications. It provides an effective and robust framework for qualitative and quantitative analysis of biomarkers present in the biological fluids of OA patients. AuNPs as theranostics have gained significant attention due to their discrete physical and optical characteristics, including localized surface plasmon resonance (LSPR), fluorescence, surface-enhanced Raman scattering, and quantized charging effect. These unique properties provide AuNPs as an excellent scaffold for ligand multiplexing, allowing accrued sensitivity for biomarker detection. Several reports have delved into the LSPR properties of the kinetics of biological interactions between the ligand and analyte. Tuneable radiative properties of AuNPs coupled with surface engineering allow facile detection of biomarkers in biological fluids. Herein, we have presented a comprehensive summary of distinct biomarkers generated from different molecular pathological processes in OA. An armamentarium of diagnostic methodologies such as aptamer conjugation, antibody coupling, ligand anchoring, and peptide decoration on the surface of AuNPs facilitates the identification and quantification of biomarkers. Additionally, a diverse range of sensing strategies for biomarker spotting, along with current challenges and future perspectives, have also been well delineated in the present manuscript.
期刊介绍:
Indian Journal of Microbiology is the official organ of the Association of Microbiologists of India (AMI). It publishes full-length papers, short communication reviews and mini reviews on all aspects of microbiological research, published quarterly (March, June, September and December). Areas of special interest include agricultural, food, environmental, industrial, medical, pharmaceutical, veterinary and molecular microbiology.