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Isolation and Culture Expansion of Tumor-specific Endothelial Cells
Published on: October 14, 2015
Antiangiogenic gene therapy targeting the endothelium-specific receptor tyrosine kinase Tie2
1Department of Medicine, Duke University Medical Center, Durham, NC 27710, USA.
Abstract:
Angiogenesis is required for tumor growth and metastasis, and inhibition of angiogenesis is a promising approach for anticancer therapy. Tie2 (a.k.a Tek) is an endothelium-specific receptor tyrosine kinase known to play a role in tumor angiogenesis. To explore the therapeutic potential of blocking the Tie2 pathway, an adenoviral vector was constructed to deliver a recombinant, soluble Tie2 receptor (AdExTek) capable of blocking Tie2 activation. Two days after i.v. injection of AdExTek, the plasma concentration of ExTek exceeded 1 mg/ml and was maintained for about 8 days. Administration of AdExTek to mice with two different well established primary tumors, a murine mammary carcinoma (4T1) or a murine melanoma (B16F10.9), significantly inhibited the growth rate of both tumors (64% and 47%, respectively). To study the effect of ExTek on tumor metastasis, both tumor cell lines were coinjected i.v. with either AdExTek or a control virus. Mice coinjected with control virus developed numerous large, well vascularized lung metastases. In contrast, mice coinjected with AdExTek virus developed few, if any, grossly apparent metastases, and histologic examination revealed only small avascular clusters of tumor cells. Administration of AdExTek also inhibited tumor metastasis when delivered at the time of surgical excision of primary tumors in a clinically relevant model of tumor metastasis. This study demonstrates the potential utility of gene therapy for systemic delivery of an antiangiogenic agent targeting an endothelium-specific receptor, Tie2.
Insights
Gene therapy using AdExTek effectively inhibited tumor growth and metastasis by blocking the Tie2 pathway. This approach offers a promising strategy for developing new anticancer treatments targeting tumor angiogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Tumor growth and metastasis depend on angiogenesis.
- Inhibiting angiogenesis is a key anticancer strategy.
- Tie2 receptor tyrosine kinase is crucial for tumor angiogenesis.
Purpose of the Study:
- To evaluate the therapeutic potential of blocking the Tie2 pathway using gene therapy.
- To assess the efficacy of a soluble Tie2 receptor (ExTek) delivered via an adenoviral vector (AdExTek) in inhibiting tumor growth and metastasis.
Main Methods:
- Constructed an adenoviral vector (AdExTek) to deliver a soluble Tie2 receptor (ExTek).
- Administered AdExTek intravenously to mice with established murine mammary carcinoma (4T1) or melanoma (B16F10.9) tumors.
- Assessed tumor growth inhibition and metastasis reduction.
- Investigated the effect of AdExTek on metastasis in a surgical tumor excision model.
Main Results:
- AdExTek administration significantly inhibited primary tumor growth by 64% (4T1) and 47% (B16F10.9).
- Coinjection with AdExTek drastically reduced lung metastasis formation.
- AdExTek inhibited metastasis even when administered at the time of primary tumor excision.
Conclusions:
- Gene therapy enables systemic delivery of anti-angiogenic agents targeting the Tie2 receptor.
- AdExTek demonstrates significant potential as an anticancer therapeutic by inhibiting tumor angiogenesis, growth, and metastasis.
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