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Breast imaging technology: Recent advances in imaging endogenous or transferred gene expression utilizing radionuclide technologies in living subjects - applications to breast cancer

机译:乳房成像技术:利用放射性核素技术在活体受试者中对内源或转移基因表达进行成像的最新进展-乳腺癌的应用

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摘要

A variety of imaging technologies is being investigated as tools for studying gene expression in living subjects. Two technologies that use radiolabeled isotopes are single photon emission computed tomography (SPECT) and positron emission tomography (PET). A relatively high sensitivity, a full quantitative tomographic capability, and the ability to extend small animal imaging assays directly into human applications characterize radionuclide approaches. Various radiolabeled probes (tracers) can be synthesized to target specific molecules present in breast cancer cells. These include antibodies or ligands to target cell surface receptors, substrates for intracellular enzymes, antisense oligodeoxynucleotide probes for targeting mRNA, probes for targeting intracellular receptors, and probes for genes transferred into the cell. We briefly discuss each of these imaging approaches and focus in detail on imaging reporter genes. In a PET reporter gene system for in vivo reporter gene imaging, the protein products of the reporter genes sequester positron emitting reporter probes. PET subsequently measures the PET reporter gene dependent sequestration of the PET reporter probe in living animals. We describe and review reporter gene approaches using the herpes simplex type 1 virus thymidine kinase and the dopamine type 2 receptor genes. Application of the reporter gene approach to animal models for breast cancer is discussed. Prospects for future applications of the transgene imaging technology in human gene therapy are also discussed. Both SPECT and PET provide unique opportunities to study animal models of breast cancer with direct application to human imaging. Continued development of new technology, probes and assays should help in the better understanding of basic breast cancer biology and in the improved management of breast cancer patients.
机译:人们正在研究各种成像技术作为研究活体基因表达的工具。使用放射性同位素标记的两种技术是单光子发射计算机断层扫描(SPECT)和正电子发射断层扫描(PET)。放射性核素方法具有较高的灵敏度,完整的定量层析成像能力以及将小动物成像分析直接扩展到人类应用的能力。可以合成各种放射性标记的探针(示踪剂)以靶向乳腺癌细胞中存在的特定分子。这些包括靶向细胞表面受体的抗体或配体,细胞内酶的底物,靶向mRNA的反义寡脱氧核苷酸探针,靶向细胞内受体的探针以及转移到细胞中的基因的探针。我们简要讨论了每种成像方法,并详细介绍了成像报告基因的方法。在用于体内报道基因成像的PET报道基因系统中,报道基因的蛋白质产物螯合正电子发射报告探针。随后,PET测量活体动物中PET报告基因探针的PET报告基因依赖性隔离。我们描述和审查使用单纯疱疹1型病毒胸苷激酶和多巴胺2型受体基因的报告基因方法。讨论了报告基因方法在乳腺癌动物模型中的应用。还讨论了转基因成像技术在人类基因治疗中的未来应用前景。 SPECT和PET都提供了直接应用于人体成像研究乳腺癌动物模型的独特机会。新技术,探针和测定法的不断发展应有助于更好地了解基础乳腺癌生物学,并改善乳腺癌患者的治疗。

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  • 年度 2000
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