Serganova Inna, Blasberg Ronald G
Department of Neurology, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.
Hematol Oncol Clin North Am. 2006 Dec;20(6):1215-48. doi: 10.1016/j.hoc.2006.09.006.
Noninvasive in vivo molecular-genetic imaging uses nuclear, magnetic resonance, and optical imaging techniques. Described and discussed are "direct" imaging of specific molecules and pathway activity, "indirect" reporter gene imaging, and "bio-marker" or "surrogate" imaging. Applications of PET- and optical-based reporter imaging are demonstrated, including imaging of oncogenesis in genetic mouse models, endogenous molecular-genetic-biological properties, and response to therapy in animal models of human disease. Molecular imaging studies complement established ex vivo molecular-biological assays that require tissue sampling by providing a spatial as well as temporal dimension to our understanding of oncogenesis, and the progression and treatment of cancer. Molecular imaging studies being performed in experimental animals will be translated to animals in the near future.
无创体内分子遗传成像使用核成像、磁共振成像和光学成像技术。文中描述并讨论了特定分子和信号通路活性的“直接”成像、“间接”报告基因成像以及“生物标志物”或“替代物”成像。展示了基于正电子发射断层扫描(PET)和光学的报告基因成像的应用,包括在基因小鼠模型中对肿瘤发生、内源性分子遗传生物学特性以及人类疾病动物模型中治疗反应的成像。分子成像研究通过为我们对肿瘤发生、癌症进展和治疗的理解提供空间和时间维度,对需要组织采样的现有离体分子生物学检测起到补充作用。目前在实验动物中进行的分子成像研究将在不久的将来转化应用于人类。