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Imaging probe for tumor malignancy

机译:肿瘤恶性成像探头

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摘要

Solid tumors possess unique microenvironments that are exposed to chronic hypoxic conditions ("tumor hypoxia"). Although more than half a century has passed since it was suggested that tumor hypoxia correlated with poor treatment outcomes and contributed to cancer recurrence, a fundamental solution to this problem has yet to be found. Hypoxia-inducible factor (HIF-1) is the main transcription factor that regulates the cellular response to hypoxia. It induces various genes whose functions are strongly associated with malignant alteration of the entire tumor. The cellular changes induced by HIF-1 are extremely important targets of cancer therapy, particularly in therapy against refractory cancers. Imaging of the HIF-1-active microenvironment is therefore important for cancer therapy. To image HIF-1 activity in vivo, we developed a PTD-ODD fusion protein, POHA, which was uniquely labeled with near-infrared fluorescent dye at the C-terminal. POHA has two functional domains: protein transduction domain (PTD) and VHL-mediated protein destruction motif in oxygen-dependent degradation (ODD) domain of the alpha subunit of HIF-1 (HIF-1 a). It can therefore be delivered to the entire body and remain stabilized in the HIF-1-active cells. When it was intravenously injected into tumor-bearing mice, a tumor-specific fluorescence signal was detected in the tumor 6 h after the injection. These results suggest that POHA can be used an imaging probe for tumor malignancy.
机译:实体瘤具有暴露于慢性低氧状态(“肿瘤低氧”)的独特微环境。尽管自从有人提出肿瘤缺氧与不良的治疗结果相关联并促成癌症复发以来已经过去了半个多世纪,但尚未找到该问题的根本解决方案。缺氧诱导因子(HIF-1)是调节细胞对缺氧反应的主要转录因子。它诱导各种基因,其功能与整个肿瘤的恶性改变密切相关。 HIF-1诱导的细胞变化是癌症治疗的极其重要的目标,特别是在难治性癌症的治疗中。因此,HIF-1活性微环境的成像对于癌症治疗很重要。为了成像体内的HIF-1活性,我们开发了PTD-ODD融合蛋白POHA,该蛋白在C端独特地用近红外荧光染料标记。 POHA在HIF-1(HIF-1 a)的α亚基的氧依赖性降解(ODD)域中具有两个功能域:蛋白质转导域(PTD)和VHL介导的蛋白质破坏基序。因此,它可以被递送到整个身体,并在HIF-1活性细胞中保持稳定。当将其静脉内注射到荷瘤小鼠中时,注射后6小时在肿瘤中检测到肿瘤特异性荧光信号。这些结果表明,POHA可以用作肿瘤恶性程度的成像探针。

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  • 来源
  • 会议地点 San Jose CA(US)
  • 作者单位

    Department of Radiation Oncology and Image-applied Therapy, Kyoto University Graduate School of Medicine. 54 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507 Japan Kyoto City, Collaboration of Regional Entities for the Advancement of Technological Excellence, Japan Science and Technology Agency. Creation Core Kyoto Mikuruma、 448-5 Kajiicho, Kamigyo-ku, Kyoto Japan;

    Department of Radiation Oncology and Image-applied Therapy, Kyoto University Graduate School of Medicine. 54 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507 Japan Innovative Techno-Hub for Integrated Medical Bio-imaging, Kyoto University Graduate School of Medicine. 54 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507 Japan;

    Department of Radiation Oncology and Image-applied Therapy, Kyoto University Graduate School of Medicine. 5;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HIF-1; tumor hypoxia; optical imaging;

    机译:HIF-1;肿瘤缺氧光学成像;
  • 入库时间 2022-08-26 13:45:15

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