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用于生物检测和成像的生物光子探针。

Biophotonic probes for bio-detection and imaging.

作者信息

Pan Ting, Lu Dengyun, Xin Hongbao, Li Baojun

机构信息

Institute of Nanophotonics, Jinan University, Guangzhou, 511443, China.

出版信息

Light Sci Appl. 2021 Jun 9;10(1):124. doi: 10.1038/s41377-021-00561-2.

Abstract

The rapid development of biophotonics and biomedical sciences makes a high demand on photonic structures to be interfaced with biological systems that are capable of manipulating light at small scales for sensitive detection of biological signals and precise imaging of cellular structures. However, conventional photonic structures based on artificial materials (either inorganic or toxic organic) inevitably show incompatibility and invasiveness when interfacing with biological systems. The design of biophotonic probes from the abundant natural materials, particularly biological entities such as virus, cells and tissues, with the capability of multifunctional light manipulation at target sites greatly increases the biocompatibility and minimizes the invasiveness to biological microenvironment. In this review, advances in biophotonic probes for bio-detection and imaging are reviewed. We emphatically and systematically describe biological entities-based photonic probes that offer appropriate optical properties, biocompatibility, and biodegradability with different optical functions from light generation, to light transportation and light modulation. Three representative biophotonic probes, i.e., biological lasers, cell-based biophotonic waveguides and bio-microlenses, are reviewed with applications for bio-detection and imaging. Finally, perspectives on future opportunities and potential improvements of biophotonic probes are also provided.

摘要

生物光子学和生物医学科学的快速发展对光子结构与生物系统的接口提出了很高的要求,这种光子结构需要能够在小尺度上操纵光,以实现生物信号的灵敏检测和细胞结构的精确成像。然而,基于人工材料(无机或有毒有机材料)的传统光子结构在与生物系统接口时不可避免地表现出不相容性和侵入性。利用丰富的天然材料,特别是病毒、细胞和组织等生物实体设计生物光子探针,使其具备在目标位点进行多功能光操纵的能力,可大大提高生物相容性,并将对生物微环境的侵入性降至最低。在这篇综述中,我们回顾了用于生物检测和成像的生物光子探针的进展。我们着重且系统地描述了基于生物实体的光子探针,这些探针具有从光产生到光传输和光调制的不同光学功能,同时具备合适的光学性质、生物相容性和生物降解性。我们还回顾了三种具有代表性的生物光子探针,即生物激光器、基于细胞的生物光子波导和生物微透镜,并介绍了它们在生物检测和成像方面的应用。最后,我们还展望了生物光子探针未来的机遇和潜在改进方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e50b/8190087/bbbfc6b7b8ab/41377_2021_561_Fig1_HTML.jpg

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