In vivo spectroscopic photoacoustic tomography imaging of a far red fluorescent protein expressed in the exocrine pancreas of adult zebrafish

被引:3
|
作者
Liu, Mengyang [1 ]
Schmitner, Nicole [2 ]
Sandrian, Michelle G. [1 ]
Zabihian, Behrooz [1 ]
Hermann, Boris [1 ]
Salvenmoser, Willi [3 ]
Meyer, Dirk [2 ]
Drexler, Wolfgang [1 ]
机构
[1] Med Univ Vienna, Ctr Med Phys & Biomed Engn, Wahringer Gurtel 18-20,AKH 4L, A-1090 Vienna, Austria
[2] Univ Innsbruck, Inst Mol Biol CMBI, A-6020 Innsbruck, Austria
[3] Univ Innsbruck, Inst Zool CMBI, A-6020 Innsbruck, Austria
关键词
photoacoustic tomography; fluorescent protein; pancreas; OPTICAL COHERENCE TOMOGRAPHY; MICROSCOPY; ULTRASOUND; RESOLUTION;
D O I
10.1117/12.2037317
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Fluorescent proteins brought a revolution in life sciences and biological research in that they make a powerful tool for researchers to study not only the structural and morphological information, but also dynamic and functional information in living cells and organisms. While green fluorescent proteins (GFP) have become a common labeling tool, red-shifted or even near infrared fluorescent proteins are becoming the research focus due to the fact that longer excitation wavelengths are more suitable for deep tissue imaging. In this study, E2-Crimson, a far red fluorescent protein whose excitation wavelength is 611 nm, was genetically expressed in the exocrine pancreas of adult zebrafish. Using spectroscopic all optical detection photoacoustic tomography, we mapped the distribution of E2-Crimson in 3D after imaging the transgenic zebrafish in vivo using two different wavelengths. With complementary morphological information provided by imaging the same fish using a spectral domain optical coherence tomography system, the E2-Crimson distribution acquired from spectroscopic photoacoustic tomography was confirmed in 2D by epifluorescence microscopy and in 3D by histology. To the authors' knowledge, this is the first time a far red fluorescent protein is imaged in vivo by spectroscopic photoacoustic tomography. Due to the regeneration feature of zebrafish pancreas, this work preludes the longitudinal studies of animal models of diseases such as pancreatitis by spectroscopic photoacoustic tomography. Since the effective penetration depth of photoacoustic tomography is beyond the transport mean free path length, other E2-Crimson labeled inner organs will also be able to be studied dynamically using spectroscopic photoacoustic tomography.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] In Vivo Visualization of Stable Neuroblastoma Cell Lines with Overexpression of Firefly Luciferase or Far-Red Fluorescent Protein
    Daria S. Chulpanova
    Leysan G. Tazetdinova
    Svetlana S. Arkhipova
    Mikhail O. Mavlikeev
    Aysilu I. Mullagulova
    Albert A. Rizvanov
    Valeriya V. Solovyeva
    BioNanoScience, 2022, 12 : 662 - 669
  • [32] In Vivo Visualization of Stable Neuroblastoma Cell Lines with Overexpression of Firefly Luciferase or Far-Red Fluorescent Protein
    Chulpanova, Daria S.
    Tazetdinova, Leysan G.
    Arkhipova, Svetlana S.
    Mavlikeev, Mikhail O.
    Mullagulova, Aysilu, I
    Rizvanov, Albert A.
    Solovyeva, Valeriya V.
    BIONANOSCIENCE, 2022, 12 (02) : 662 - 669
  • [33] Single molecule spectroscopic characterization of a far-red fluorescent protein (HcRed) from the anthozoa coral Heteractis crispa
    Cotlet, Mircea
    Habuchi, Satoshi
    Whitier, Jennifer E.
    Werner, James H.
    De Schryver, Frans C.
    Hofkens, Johan
    Goodwin, Peter M.
    GENETICALLY ENGINEERED PROBES FOR BIOMEDICAL APPLICATIONS, 2006, 6098
  • [34] High-resolution spectroscopic photoacoustic tomography for non-invasive functional imaging of small-animal brains in vivo
    Wang, LHV
    Wang, XD
    Ku, G
    Xie, XY
    Stoica, G
    APBP 2004: SECOND ASIAN AND PACIFIC RIM SYMPOSIUM ON BIOPHOTONICS, PROCEEDINGS, 2004, : 246 - 247
  • [35] Small ultra-red fluorescent protein nanoparticles as exogenous probes for noninvasive tumor imaging in vivo
    An, Feifei
    Chen, Nandi
    Conlon, William J.
    Hachey, Justin S.
    Xin, Jingqi
    Aras, Omer
    Rodriguez, Erik A.
    Ting, Richard
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 153 : 100 - 106
  • [36] In vivo imaging of protein-protein and RNA-protein interactions using novel far-red fluorescence complementation systems
    Han, Yu
    Wang, Shifeng
    Zhang, Zhiping
    Ma, Xiaohe
    Li, Wei
    Zhang, Xiaowei
    Deng, Jiaoyu
    Wei, Hongping
    Li, Zhaoyang
    Zhang, Xian-En
    Cui, Zongqiang
    NUCLEIC ACIDS RESEARCH, 2014, 42 (13) : e103
  • [37] In vivo bio-imaging of sodium meta-arsenite and hydrogen phosphate in zebrafish embryos using red fluorescent zinc complex
    Murugan, A. Senthil
    Vidhyalakshmi, N.
    Ramesh, U.
    Annaraj, J.
    SENSORS AND ACTUATORS B-CHEMICAL, 2019, 281 : 507 - 513
  • [38] Biochemical and in vivo characterization of a small, membrane-permeant, caspase-activatable far-red fluorescent peptide for imaging apoptosis
    Bullok, Kristin E.
    Maxwell, Dustin
    Kesarwala, Aparna H.
    Gammon, Seth
    Prior, Julie L.
    Snow, Margaret
    Stanley, Sam
    Piwnica-Worms, David
    BIOCHEMISTRY, 2007, 46 (13) : 4055 - 4065
  • [39] Biomolecular imaging based on far-red fluorescent protein with a high two-photon excitation action cross section
    Tsai, TH
    Lin, CY
    Tsai, HJ
    Chen, SY
    Tai, SP
    Lin, KH
    Sun, CK
    OPTICS LETTERS, 2006, 31 (07) : 930 - 932
  • [40] Tetrameric far-red fluorescent protein as a scaffold to assemble an octavalent peptide nanoprobe for enhanced tumor targeting and intracellular uptake in vivo
    Luo, Haiming
    Yang, Jie
    Jin, Honglin
    Huang, Chuan
    Fu, Jianwei
    Yang, Fei
    Gong, Hui
    Zeng, Shaoqun
    Luo, Qingming
    Zhang, Zhihong
    FASEB JOURNAL, 2011, 25 (06): : 1865 - 1873