A brief review of reporter gene imaging in oncolytic virotherapy and gene therapy

被引:19
作者
Concilio, Susanna C. [1 ]
Russell, Stephen J. [1 ]
Peng, Kah-Whye [1 ]
机构
[1] Mayo Clin, Dept Mol Med, Rochester, MN 55905 USA
来源
MOLECULAR THERAPY-ONCOLYTICS | 2021年 / 21卷
基金
美国国家卫生研究院;
关键词
SODIUM-IODIDE SYMPORTER; POSITRON-EMISSION-TOMOGRAPHY; ADENOVIRUS-MEDIATED EXPRESSION; CARDIAC TRANSGENE EXPRESSION; CONVECTION-ENHANCED DELIVERY; LARGE ANIMAL-MODEL; IN-VIVO DETECTION; VACCINIA VIRUS; SODIUM/IODIDE-SYMPORTER; SOMATOSTATIN RECEPTOR;
D O I
10.1016/j.omto.2021.03.006
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Reporter gene imaging (RGI) can accelerate development timelines for gene and viral therapies by facilitating rapid and noninvasive in vivo studies to determine the biodistribution, magnitude, and durability of viral gene expression and/or virus infection. Functional molecular imaging systems used for this purpose can be divided broadly into deep-tissue and optical modalities. Deep-tissue modalities, which can be used in animals of any size as well as in human subjects, encompass single photon emission computed tomography (SPECT), positron emission tomography (PET), and functional/molecular magnetic resonance imaging (f/mMRI). Optical modalities encompass fluorescence, bioluminescence, Cerenkov luminescence, and photoacoustic imaging and are suitable only for small animal imaging. Here we discuss the mechanisms of action and relative merits of currently available reporter gene systems, highlighting the strengths and weaknesses of deep tissue versus optical imaging systems and the hardware/reagents that are used for data capture and processing. In light of recent technological advances, falling costs of imaging instruments, better availability of novel radioactive and optical tracers, and a growing realization that RGI can give invaluable insights across the entire in vivo translational spectrum, the approach is becoming increasingly essential to facilitate the competitive development of new virus- and gene-based drugs.
引用
收藏
页码:98 / 109
页数:12
相关论文
共 173 条
  • [1] Review on mechanistic strategy of gene therapy in the treatment of disease
    Alnasser, Sulaiman M.
    [J]. GENE, 2021, 769
  • [2] β-Gal Gene Expression MRI Reporter in Melanoma Tumor Cells. Design, Synthesis, and in Vitro and in Vivo Testing of a Gd(III) Containing Probe Forming a High Relaxivity, Melanin-Like Structure upon β-Gal Enzymatic Activation
    Arena, Francesca
    Singh, Jebasingh Bhagavath
    Gianolio, Eliana
    Stefania, Rachele
    Aime, Silvio
    [J]. BIOCONJUGATE CHEMISTRY, 2011, 22 (12) : 2625 - 2635
  • [3] Convection-enhanced delivery of AAV vector in parkinsonian monkeys;: In vivo detection of gene expression and restoration of dopaminergic function using pro-drug approach
    Bankiewicz, KS
    Eberling, JL
    Kohutnicka, M
    Jagust, W
    Pivirotto, P
    Bringas, J
    Cunningham, J
    Budinger, TF
    Harvey-White, J
    [J]. EXPERIMENTAL NEUROLOGY, 2000, 164 (01) : 2 - 14
  • [4] Phase I study of noninvasive imaging of adenovirus-mediated gene expression in the human prostate
    Barton, Kenneth N.
    Stricker, Hans
    Brown, Stephen L.
    Elshaikh, Mohamed
    Aref, Ibrahim
    Lu, Mei
    Pegg, Jan
    Zhang, Yingshu
    Karvelis, Kastytis C.
    Siddiqui, Farzan
    Kim, Jae Ho
    Freytag, Svend O.
    Movsas, Benjamin
    [J]. MOLECULAR THERAPY, 2008, 16 (10) : 1761 - 1769
  • [5] A quantitative method for measuring gene expression magnitude and volume delivered by gene therapy vectors
    Barton, KN
    Xia, XQ
    Yan, H
    Stricker, H
    Heisey, G
    Yin, FF
    Nagaraja, TN
    Zhu, GP
    Kolozsvary, A
    Fenstermacher, JD
    Lu, M
    Kim, JH
    Freytag, SO
    Brown, SL
    [J]. MOLECULAR THERAPY, 2004, 9 (04) : 625 - 631
  • [6] Development of [18F]DASA-23 for Imaging Tumor Glycolysis Through Noninvasive Measurement of Pyruvate Kinase M2
    Beinat, Corinne
    Alam, Israt S.
    James, Michelle L.
    Srinivasan, Ananth
    Gambhir, Sanjiv Sam
    [J]. MOLECULAR IMAGING AND BIOLOGY, 2017, 19 (05) : 665 - 672
  • [7] Noninvasive imaging of transgene expression by use of positron emission tomography in a pig model of myocardial gene transfer
    Bengel, FM
    Anton, M
    Richter, T
    Simoes, MV
    Haubner, R
    Henke, J
    Erhardt, W
    Reder, S
    Lehner, T
    Brandau, W
    Boekstegers, P
    Nekolla, SG
    Gansbacher, B
    Schwaiger, M
    [J]. CIRCULATION, 2003, 108 (17) : 2127 - 2133
  • [8] Oncotargeting by Vesicular Stomatitis Virus (VSV): Advances in Cancer Therapy
    Bishnoi, Suman
    Tiwari, Ritudhwaj
    Gupta, Sharad
    Byrareddy, Siddappa N.
    Nayak, Debasis
    [J]. VIRUSES-BASEL, 2018, 10 (02):
  • [9] Non-invasive observation of repeated adenoviral GFP gene delivery to the anterior segment of the monkey eye in vivo
    Borrás, T
    Gabelt, BT
    Klintworth, GK
    Peterson, JC
    Kaufman, PL
    [J]. JOURNAL OF GENE MEDICINE, 2001, 3 (05) : 437 - 449
  • [10] Nanoparticles for Cerenkov and Radioluminescent Light Enhancement for Imaging and Radiotherapy
    Boschi, Federico
    Spinelli, Antonello Enrico
    [J]. NANOMATERIALS, 2020, 10 (09) : 1 - 24