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用于钙流成像的生物发光传感器及一种新型基于强度的钙传感器的介绍。

Bioluminescent Sensors for Ca Flux Imaging and the Introduction of a New Intensity-Based Ca Sensor.

作者信息

Yang Jie, Johnson Carl Hirschie

机构信息

Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan, China.

Department of Biological Sciences, Vanderbilt University, Nashville, TN, United States.

出版信息

Front Bioeng Biotechnol. 2021 Oct 27;9:773353. doi: 10.3389/fbioe.2021.773353. eCollection 2021.

Abstract

Sensitive detection of biological events is a goal for the design and characterization of sensors that can be used and . One important second messenger is Ca which has been a focus of using genetically encoded Ca indicators (GECIs) within living cells or intact organisms . An ideal GECI would exhibit high signal intensity, excellent signal-to-noise ratio (SNR), rapid kinetics, a large dynamic range within relevant physiological conditions, and red-shifted emission. Most available GECIs are based on fluorescence, but bioluminescent GECIs have potential advantages in terms of avoiding tissue autofluorescence, phototoxicity, photobleaching, and spectral overlap, as well as enhancing SNR. Here, we summarize current progress in the development of bioluminescent GECIs and introduce a new and previously unpublished biosensor. Because these biosensors require a substrate, we also describe the pros and cons of various substrates used with these sensors. The novel GECI that is introduced here is called CalBiT, and it is a Ca indicator based on the functional complementation of NanoBiT which shows a high dynamic change in response to Ca fluxes. Here, we use CalBiT for the detection of Ca fluctuations in cultured cells, including its ability for real-time imaging in living cells.

摘要

生物事件的灵敏检测是可用于……的传感器设计与特性研究的目标。一种重要的第二信使是钙离子(Ca),它一直是在活细胞或完整生物体中使用基因编码钙指示剂(GECIs)的重点研究对象。理想的GECI应具有高信号强度、出色的信噪比(SNR)、快速动力学、在相关生理条件下的大动态范围以及红移发射。大多数现有的GECIs基于荧光,但生物发光GECIs在避免组织自发荧光、光毒性、光漂白和光谱重叠以及提高SNR方面具有潜在优势。在这里,我们总结了生物发光GECIs开发的当前进展,并介绍了一种新的、此前未发表的生物传感器。由于这些生物传感器需要一种底物,我们还描述了与这些传感器一起使用的各种底物的优缺点。这里介绍的新型GECI称为CalBiT,它是一种基于NanoBiT功能互补的钙指示剂,对钙通量表现出高动态变化。在这里,我们使用CalBiT检测培养细胞中的钙波动,包括其在活细胞中进行实时成像的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e875/8578923/c6aedef39ef4/fbioe-09-773353-g001.jpg

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