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利用具有单纳米激光激发荧光调谐功能的一台仪器对表达从蓝光到远红光发射的光谱不同荧光报告基因的转基因裸鼠进行成像。

Imaging Transgenic Nude Mice Expressing Spectrally-distinct Fluorescent Reporters Emitting From Blue to Far Red Light With One Instrument With Single-nanometer-tuning of Laser-excitation Fluorescence.

作者信息

Mizuta Kohei, Reynoso Jose, Gallagher Sean, Wang April, Chang Neil, Morinaga Sei, Sato Motokazu, Kang Byung Mo, Hoffman Robert M

机构信息

AntiCancer Inc., San Diego, CA, U.S.A.

Department of Surgery, University of California San Diego, San Diego, CA, U.S.A.

出版信息

Cancer Diagn Progn. 2024 Sep 1;4(5):563-566. doi: 10.21873/cdp.10364. eCollection 2024 Sep-Oct.

Abstract

BACKGROUND/AIM: Transgenic nude mice expressing green fluorescent protein (GFP), red fluorescent protein (RFP), or cyan fluorescent protein (CFP) were previously developed by our laboratory, AntiCancer Inc. In the present study, we demonstrate imaging of the GFP, RFP, or CFP nude mice with single-nanometer-tuning laser fluorescence excitation with a single instrument.

MATERIALS AND METHODS

Female transgenic C57/B6 nude GFP, RFP, and CFP mice aged six weeks were used. The images were obtained using the UVP Biospectrum Advanced system (Analytik Jena US LLC) with excitation at 480 nm and peak emission at 513 nm for GFP; 520 nm and 605 nm, respectively, for RFP; and 405 nm and 480 nm, respectively, for CFP.

RESULTS

For each color transgenic fluorescent mouse, images without background could be obtained individually with the UVP Biospectrum Advanced system.

CONCLUSION

Using a single instrument, brilliant and well-defined images of GFP, RFP, and CFP mice were obtained with single-nanometer-tuning laser fluorescence excitation. This imaging system will be used in future studies to analyze cancer cells in the colored mice that are spectrally distinct in order to determine how stromal cells and cancer interact in the tumor microenvironment.

摘要

背景/目的:我们实验室(抗癌公司)之前培育出了表达绿色荧光蛋白(GFP)、红色荧光蛋白(RFP)或青色荧光蛋白(CFP)的转基因裸鼠。在本研究中,我们展示了使用单一仪器通过单纳米调谐激光荧光激发对GFP、RFP或CFP裸鼠进行成像。

材料与方法

使用6周龄的雌性转基因C57/B6裸鼠GFP、RFP和CFP小鼠。使用UVP Biospectrum Advanced系统(Analytik Jena美国有限责任公司)获取图像,对于GFP,激发波长为480nm,发射峰值为513nm;对于RFP,分别为520nm和605nm;对于CFP,分别为405nm和480nm。

结果

对于每种颜色的转基因荧光小鼠,使用UVP Biospectrum Advanced系统可分别获得无背景的图像。

结论

使用单一仪器,通过单纳米调谐激光荧光激发获得了GFP、RFP和CFP小鼠清晰且明确的图像。该成像系统将用于未来的研究,以分析彩色小鼠中光谱不同的癌细胞,从而确定基质细胞与癌症在肿瘤微环境中的相互作用方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b677/11372684/ab43323375b2/cdp-4-564-g0001.jpg

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