Recent advances in upconversion nanoparticles for biomolecule detection: a review

IF 2.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Shuoshuo Cheng, Bin Huang, Kangqiang Lu, Jinhui Li, Herui Wen and Jialin Zhang
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Abstract

Given the continuously increasing requirements for biological detection, upconversion nanoparticle (UCNP)-based techniques offer a novel research direction for biomolecule detection. Due to their superior and stable photophysical characteristics, UCNPs have received widespread attention and have been extensively applied for reliable and highly sensitive detection of biomolecules. Herein, we review articles based on three aspects: UCNP synthesis, surface functionalization, and application in biomolecule detection. The future development trend of UCNPs is also anticipated. Several synthesis methods are introduced, and the advantages and disadvantages of these synthesis methods are summarized and compared. Control of UCNP size and shape, as well as UCNP doping, is discussed. For surface modification, we introduce approaches such as surface silanization, ligand exchange, ligand oxidation, ligand attraction and electrostatic layer by layer assembly. In addition, we focus on UCNP-based luminescence sensors for the analysis of biomolecules, such as nucleic acids, amino acids, proteins, carbohydrates, uric acid and lipids. These upconversion nanomaterials were used as carriers for recognition, transmission or signal amplification and significantly improved the performance of biomolecule detection. Finally, the shortcomings of UCNP are analyzed and its future prospects are presented. This review provides new insights into the application of upconversion nanoparticles as an important element in biomolecule detection.

Abstract Image

用于生物分子检测的上转化纳米颗粒研究进展综述。
随着生物检测需求的不断提高,基于上转换纳米粒子(UCNP)的生物分子检测技术为生物分子检测提供了新的研究方向。由于其优越而稳定的光物理特性,UCNPs受到了广泛的关注,并被广泛应用于可靠、高灵敏度的生物分子检测。本文从UCNP的合成、表面功能化和在生物分子检测中的应用三个方面对相关文献进行综述。并展望了UCNPs的未来发展趋势。介绍了几种合成方法,并对这些合成方法的优缺点进行了总结和比较。讨论了UCNP尺寸和形状的控制,以及UCNP掺杂。对于表面修饰,我们介绍了表面硅烷化、配体交换、配体氧化、配体吸引和静电逐层组装等方法。此外,我们还专注于基于ucnp的发光传感器,用于分析生物分子,如核酸、氨基酸、蛋白质、碳水化合物、尿酸和脂质。这些上转换纳米材料被用作识别、传输或信号放大的载体,显著提高了生物分子检测的性能。最后,分析了UCNP的不足,并对其发展前景进行了展望。本文综述了上转换纳米颗粒在生物分子检测中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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