Suppr超能文献

即时诊断中的纳米酶:一种新兴的生物传感未来方法。

Nanozymes in Point-of-Care Diagnosis: An Emerging Futuristic Approach for Biosensing.

作者信息

Das Bhaskar, Franco Javier Lou, Logan Natasha, Balasubramanian Paramasivan, Kim Moon Il, Cao Cuong

机构信息

School of Biological Sciences, Queen's University Belfast, Belfast, UK.

Department of Biotechnology and Medical Engineering, National Institute of Technology Rourkela, Rourkela, India.

出版信息

Nanomicro Lett. 2021 Sep 13;13(1):193. doi: 10.1007/s40820-021-00717-0.

Abstract

Nanomaterial-based artificial enzymes (or nanozymes) have attracted great attention in the past few years owing to their capability not only to mimic functionality but also to overcome the inherent drawbacks of the natural enzymes. Numerous advantages of nanozymes such as diverse enzyme-mimicking activities, low cost, high stability, robustness, unique surface chemistry, and ease of surface tunability and biocompatibility have allowed their integration in a wide range of biosensing applications. Several metal, metal oxide, metal-organic framework-based nanozymes have been exploited for the development of biosensing systems, which present the potential for point-of-care analysis. To highlight recent progress in the field, in this review, more than 260 research articles are discussed systematically with suitable recent examples, elucidating the role of nanozymes to reinforce, miniaturize, and improve the performance of point-of-care diagnostics addressing the ASSURED (affordable, sensitive, specific, user-friendly, rapid and robust, equipment-free and deliverable to the end user) criteria formulated by World Health Organization. The review reveals that many biosensing strategies such as electrochemical, colorimetric, fluorescent, and immunological sensors required to achieve the ASSURED standards can be implemented by using enzyme-mimicking activities of nanomaterials as signal producing components. However, basic system functionality is still lacking. Since the enzyme-mimicking properties of the nanomaterials are dictated by their size, shape, composition, surface charge, surface chemistry as well as external parameters such as pH or temperature, these factors play a crucial role in the design and function of nanozyme-based point-of-care diagnostics. Therefore, it requires a deliberate exertion to integrate various parameters for truly ASSURED solutions to be realized. This review also discusses possible limitations and research gaps to provide readers a brief scenario of the emerging role of nanozymes in state-of-the-art POC diagnosis system development for futuristic biosensing applications.

摘要

在过去几年中,基于纳米材料的人工酶(即纳米酶)因其不仅能够模拟天然酶的功能,还能克服天然酶的固有缺点而备受关注。纳米酶具有诸多优点,如多样的酶模拟活性、低成本、高稳定性、坚固性、独特的表面化学性质以及易于进行表面调控和生物相容性,这些优点使其能够广泛应用于各种生物传感领域。几种基于金属、金属氧化物、金属有机框架的纳米酶已被用于开发生物传感系统,展现出即时检测分析的潜力。为突出该领域的最新进展,在这篇综述中,我们系统地讨论了260多篇研究文章,并列举了合适的近期实例,阐明了纳米酶在强化、小型化和改善即时诊断性能方面的作用,以满足世界卫生组织制定的ASSURED(可负担、灵敏、特异、用户友好、快速且稳健、无需设备并可交付给最终用户)标准。该综述表明,许多为达到ASSURED标准所需的生物传感策略,如电化学、比色、荧光和免疫传感器,都可以通过利用纳米材料的酶模拟活性作为信号产生组件来实现。然而,基本的系统功能仍然不足。由于纳米材料的酶模拟特性取决于其尺寸、形状、组成、表面电荷、表面化学性质以及外部参数(如pH值或温度),这些因素在基于纳米酶的即时诊断的设计和功能中起着至关重要的作用。因此,需要精心整合各种参数,才能实现真正符合ASSURED标准的解决方案。本综述还讨论了可能存在的局限性和研究空白,以便为读者简要介绍纳米酶在未来生物传感应用的先进即时诊断系统开发中的新兴作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a64/8438099/de95e61b6eca/40820_2021_717_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验