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Advanced Near‐Infrared Light for Monitoring and Modulating the Spatiotemporal Dynamics of Cell Functions in Living Systems

机译:先进的近红外光用于监测和调节生命系统中细胞功能的时空动态

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摘要

Light‐based technique, including optical imaging and photoregulation, has become one of the most important tools for both fundamental research and clinical practice, such as cell signal sensing, cancer diagnosis, tissue engineering, drug delivery, visual regulation, neuromodulation, and disease treatment. In particular, low energy near‐infrared (NIR, 700–1700 nm) light possesses lower phototoxicity and higher tissue penetration depth in living systems as compared with ultraviolet/visible light, making it a promising tool for in vivo applications. Currently, the NIR light‐based imaging and photoregulation strategies have offered a possibility to real‐time sense and/or modulate specific cellular events in deep tissues with subcellular accuracy. Herein, the recent progress with respect to NIR light for monitoring and modulating the spatiotemporal dynamics of cell functions in living systems are summarized. In particular, the applications of NIR light‐based techniques in cancer theranostics, regenerative medicine, and neuroscience research are systematically introduced and discussed. In addition, the challenges and prospects for NIR light‐based cell sensing and regulating techniques are comprehensively discussed.
机译:基于光的技术,包括光学成像和光调节,已成为基础研究和临床实践的最重要工具之一,例如细胞信号传感,癌症诊断,组织工程,药物输送,视觉调节,神经调节和疾病治疗。特别是,与紫外/可见光相比,低能近红外(NIR,700-1700 nm)光在活体系统中具有较低的光毒性和较高的组织穿透深度,使其成为体内应用的有前途的工具。当前,基于近红外光的成像和光调节策略提供了一种可能性,可以以亚细胞精度实时感知和/或调节深层组织中的特定细胞事件。在此,总结了关于用于监视和调节生物系统中细胞功能的时空动态的近红外光的最新进展。特别是,系统地介绍和讨论了近红外光技术在癌症治疗法,再生医学和神经科学研究中的应用。此外,对基于近红外光的细胞传感和调控技术的挑战和前景进行了全面讨论。

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