Gene expression and gene therapy imaging

被引:0
|
作者
Claire Rome
Franck Couillaud
Chrit T. W. Moonen
机构
[1] Université Victor Segalen,Laboratory for Molecular and Functional Imaging: From Physiology to Therapy ERT CNRS
[2] Université Victor Segalen,Imagerie Moléculaire et Fonctionnelle, ERT CNRS
来源
European Radiology | 2007年 / 17卷
关键词
Molecular imaging; Gene expression; Gene therapy;
D O I
暂无
中图分类号
学科分类号
摘要
The fast growing field of molecular imaging has achieved major advances in imaging gene expression, an important element of gene therapy. Gene expression imaging is based on specific probes or contrast agents that allow either direct or indirect spatio-temporal evaluation of gene expression. Direct evaluation is possible with, for example, contrast agents that bind directly to a specific target (e.g., receptor). Indirect evaluation may be achieved by using specific substrate probes for a target enzyme. The use of marker genes, also called reporter genes, is an essential element of MI approaches for gene expression in gene therapy. The marker gene may not have a therapeutic role itself, but by coupling the marker gene to a therapeutic gene, expression of the marker gene reports on the expression of the therapeutic gene. Nuclear medicine and optical approaches are highly sensitive (detection of probes in the picomolar range), whereas MRI and ultrasound imaging are less sensitive and require amplification techniques and/or accumulation of contrast agents in enlarged contrast particles. Recently developed MI techniques are particularly relevant for gene therapy. Amongst these are the possibility to track gene therapy vectors such as stem cells, and the techniques that allow spatiotemporal control of gene expression by non-invasive heating (with MRI guided focused ultrasound) and the use of temperature sensitive promoters.
引用
收藏
页码:305 / 319
页数:14
相关论文
共 50 条
  • [11] Scintigraphic imaging of gene expression and gene transfer
    Haberkorn, U
    Mier, W
    Eisenhut, M
    CURRENT MEDICINAL CHEMISTRY, 2005, 12 (07) : 779 - 794
  • [12] Regulated expression systems for gene therapy
    A. V. Bruter
    A. V. Avdeev
    A. V. Belyavsky
    Molecular Biology, 2013, 47 : 321 - 342
  • [13] Regulatable gene expression systems for gene therapy
    Vilaboa, Nuria
    Voellmy, Richard
    CURRENT GENE THERAPY, 2006, 6 (04) : 421 - 438
  • [14] Gene therapy imaging in patients for oncological applications
    Iván Peñuelas
    Uwe Haberkorn
    Shahriar Yaghoubi
    Sanjiv S. Gambhir
    European Journal of Nuclear Medicine and Molecular Imaging, 2005, 32 : S384 - S403
  • [15] Photoacoustic imaging of lacZ gene expression in vivo
    Li, Li
    Zemp, Roger J.
    Lungu, Gina
    Stoica, George
    Wang, Lihong V.
    JOURNAL OF BIOMEDICAL OPTICS, 2007, 12 (02)
  • [16] In vivo imaging in the development of gene therapy vectors
    Bogdanov, A
    CURRENT OPINION IN MOLECULAR THERAPEUTICS, 2003, 5 (06) : 594 - 602
  • [17] Gene therapy imaging in patients for oncological applications
    Penuelas, Ivan
    Haberkorn, Uwe
    Yaghoubi, Shahriar
    Gambhir, Sanjiv S.
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2005, 32 (Suppl 2) : S384 - S403
  • [18] Imaging of gene expression in vivo with photoacoustic tomography
    Li, Li
    Zemp, Roger J.
    Lungu, Gina
    Stoica, George
    Wang, Lihong V.
    PHOTONS PLUS ULTRASOUND: IMAGING AND SENSING 2006, 2006, 6086
  • [19] Radionuclide reporter gene imaging for cardiac gene therapy
    Inubushi, Masayuki
    Tamaki, Nagara
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2007, 34 (Suppl 1) : S27 - S33
  • [20] Methods to monitor gene therapy with molecular imaging
    Waerzeggers, Yannic
    Monfared, Parisa
    Viel, Thomas
    Winkeler, Alexandra
    Voges, Juergen
    Jacobs, Andreas H.
    METHODS, 2009, 48 (02) : 146 - 160