In vivo tumor imaging in mice with near-infrared labeled endostatin

Deborah Citrin1, Andrew K Lee, Tamalee Scott

  • 1Imaging and Molecular Therapeutics Section, Radiation Oncology Branch, National Cancer Institute, Bethesda, MD 20892, USA.

Insights

Near-infrared fluorescent endostatin (Cy5.5) successfully imaged tumors in mice, showing selective localization and binding to tumor vasculature. This technique aids in visualizing tumors for research and potential clinical applications.

Area of Science:

  • Oncology
  • Biomedical Imaging
  • Molecular Biology

Background:

  • Endostatin is a known inhibitor of angiogenesis.
  • Near-infrared (NIR) fluorescent probes are valuable laboratory imaging tools.
  • Selective tumor imaging is crucial for research and therapeutic monitoring.

Purpose of the Study:

  • To determine if endostatin labeled with a NIR probe (Cy5.5) can be detected in vivo.
  • To assess the selective tumor localization of endostatin-Cy5.5.
  • To investigate the binding characteristics of endostatin within tumors.

Main Methods:

  • Endostatin was conjugated to the NIR fluorescent dye Cy5.5.
  • Mice bearing Lewis lung carcinoma tumors were injected with endostatin-Cy5.5.
  • In vivo imaging was performed using a fluorescence microscope in the NIR bandwidth.
  • Immunofluorescence was used to identify intratumoral binding sites.

Main Results:

  • Endostatin-Cy5.5 produced a detectable NIR fluorescent signal within tumors.
  • The signal peaked at 42 hours after intraperitoneal injection and persisted.
  • Intravenous injection showed peak signal at 3 hours, persisting to 72 hours.
  • Endostatin-Cy5.5 demonstrated dose-dependent tumor imaging.
  • Immunofluorescence confirmed endostatin binds to tumor vasculature, colocalizing with PECAM-1.

Conclusions:

  • Endostatin labeled with Cy5.5 can be effectively used for in vivo tumor imaging.
  • The probe selectively localizes to tumors from a distant injection site.
  • Endostatin binds to tumor vasculature, indicating its potential as a targeted imaging agent.

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