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荧光纳米颗粒在生态学和生理学中的应用。

Fluorescent nanoparticles as tools in ecology and physiology.

机构信息

Institute of Ecology and Earth Sciences, University of Tartu, Ravila 14a, 50411, Tartu, Estonia.

Department of Ecological Science, Vrije Universiteit Amsterdam, De Boelelaan 1085, NL-1081 HV, Amsterdam, Noord-Holland, The Netherlands.

出版信息

Biol Rev Camb Philos Soc. 2021 Oct;96(5):2392-2424. doi: 10.1111/brv.12758. Epub 2021 Jun 17.

Abstract

Fluorescent nanoparticles (FNPs) have been widely used in chemistry and medicine for decades, but their employment in biology is relatively recent. Past reviews on FNPs have focused on chemical, physical or medical uses, making the extrapolation to biological applications difficult. In biology, FNPs have largely been used for biosensing and molecular tracking. However, concerns over toxicity in early types of FNPs, such as cadmium-containing quantum dots (QDs), may have prevented wide adoption. Recent developments, especially in non-Cd-containing FNPs, have alleviated toxicity problems, facilitating the use of FNPs for addressing ecological, physiological and molecule-level processes in biological research. Standardised protocols from synthesis to application and interdisciplinary approaches are critical for establishing FNPs in the biologists' tool kit. Here, we present an introduction to FNPs, summarise their use in biological applications, and discuss technical issues such as data reliability and biocompatibility. We assess whether biological research can benefit from FNPs and suggest ways in which FNPs can be applied to answer questions in biology. We conclude that FNPs have a great potential for studying various biological processes, especially tracking, sensing and imaging in physiology and ecology.

摘要

荧光纳米粒子 (FNPs) 在化学和医学领域已经使用了几十年,但它们在生物学中的应用相对较新。过去关于 FNPs 的综述主要集中在化学、物理或医学用途上,因此难以推断其在生物学中的应用。在生物学中,FNPs 主要用于生物传感和分子追踪。然而,早期类型的 FNPs(如含镉量子点 (QDs))存在毒性问题,这可能阻碍了它们的广泛应用。最近的发展,特别是在不含 Cd 的 FNPs 方面,缓解了毒性问题,促进了 FNPs 在解决生物学研究中的生态、生理和分子水平过程中的应用。从合成到应用的标准化协议以及跨学科方法对于将 FNPs 纳入生物学家的工具包至关重要。在这里,我们介绍了 FNPs,并总结了它们在生物学应用中的使用情况,讨论了数据可靠性和生物相容性等技术问题。我们评估了生物学研究是否可以从 FNPs 中受益,并提出了 FNPs 可以应用于回答生物学问题的方法。我们得出的结论是,FNPs 在研究各种生物学过程方面具有很大的潜力,特别是在生理学和生态学中的追踪、传感和成像方面。

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