Far-Red Fluorescent Proteins: Tools for Advancing In Vivo Imaging

Biosensors Pub Date : 2024-07-24 DOI:10.3390/bios14080359
Angyang Shang, Shuai Shao, Luming Zhao, Bo Liu
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Abstract

Far-red fluorescent proteins (FPs) have emerged as indispensable tools in in vivo imaging, playing a pivotal role in elucidating fundamental mechanisms and addressing application issues in biotechnology and biomedical fields. Their ability for deep penetration, coupled with reduced light scattering and absorption, robust resistance to autofluorescence, and diminished phototoxicity, has positioned far-red biosensors at the forefront of non-invasive visualization techniques for observing intracellular activities and intercellular behaviors. In this review, far-red FPs and their applications in living systems are mainly discussed. Firstly, various far-red FPs, characterized by emission peaks spanning from 600 nm to 650 nm, are introduced. This is followed by a detailed presentation of the fundamental principles enabling far-red biosensors to detect biomolecules and environmental changes. Furthermore, the review accentuates the superiority of far-red FPs in multi-color imaging. In addition, significant emphasis is placed on the value of far-red FPs in improving imaging resolution, highlighting their great contribution to the advancement of in vivo imaging.
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远红外荧光蛋白:推进体内成像的工具
远红荧光蛋白(FPs)已成为体内成像不可或缺的工具,在阐明生物技术和生物医学领域的基本机制和解决应用问题方面发挥着关键作用。远红生物传感器具有穿透力强、光散射和吸收率低、抗自发荧光能力强、光毒性小等特点,因此在观察细胞内活动和细胞间行为的非侵入式可视化技术方面处于领先地位。本综述主要讨论远红外 FP 及其在生命系统中的应用。首先介绍了各种远红外荧光元件,它们的发射峰值在 600 纳米到 650 纳米之间。随后详细介绍了远红外生物传感器检测生物分子和环境变化的基本原理。此外,综述还强调了远红外荧光元件在多色成像中的优越性。此外,还特别强调了远红外荧光元件在提高成像分辨率方面的价值,突出了它们对促进体内成像的巨大贡献。
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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