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In vitro Enrichment of Ovarian Cancer Tumor-initiating Cells
Published on: February 18, 2015
Tissue factor expression in ovarian cancer: implications for immunotherapy with hI-con1, a factor VII-IgGF(c)
Emiliano Cocco1, Joyce Varughese, Natalia Buza
1Department of Obstetrics, Gynecology & Reproductive Sciences, Yale University School of Medicine, New Haven, CT 06520-8063, USA.
Abstract:
We evaluated the expression of tissue factor (TF) in ovarian cancer (EOC) and the potential of hI-con1, an antibody-like molecule targeting TF, as a novel form of therapy against chemotherapy-resistant ovarian disease. We studied the expression of TF in 88 EOC by immunohistochemistry (IHC) and real-time-PCR (qRT-PCR) and the levels of membrane-bound-complement-regulatory-proteins CD46, CD55 and CD59 in primary EOC cell lines by flow-cytometry. Sensitivity to hI-con1-dependent-cell-mediated-cytotoxicity (IDCC), complement-dependent-cell-cytotoxicity and inhibition of IDCC by γ-immunoglobulin were evaluated in 5-h (51)chromium-release-assays. Cytoplasmic and/or membrane TF expression was observed in 24 out of 25 (96%) of the EOC samples tested by IHC, but not in normal ovarian-tissue. EOC with clear cell histology significantly overexpress TF when compared to serous, endometrioid, or undifferentiated tumors by qRT-PCR. With a single exception, all primary EOC that overexpressed TF demonstrated high levels of CD46, CD55 and CD59 and regardless of their histology or resistance to chemotherapy, were highly sensitive to IDCC. The effect of complement and physiologic doses of γ-immunoglobulin on IDCC in ovarian cancer cell lines overexpressing TF was tumor specific and related to the overexpression of CD59 on tumor cells. Small-interfering-RNA-mediated knockdown of CD59 expression in ovarian tumors significantly increased hI-con1-mediated cytotoxic activity in vitro. Finally, low doses of interleukin-2 further increased the cytotoxic effect induced by hI-con1 (P < 0.01). hI-con1 molecule induces strong cytotoxicity against primary chemotherapy-resistant ovarian cancer cell lines overexpressing TF and may represent a novel therapeutic agent for the treatment of ovarian tumors refractory to standard treatment modalities.
Insights
Tissue factor (TF) is highly expressed in ovarian cancer (EOC), making it a target for new therapies. The antibody-like molecule hI-con1 shows strong cytotoxicity against chemotherapy-resistant EOC, suggesting its potential as a novel ovarian cancer treatment.
Area of Science:
- Oncology
- Immunology
- Biochemistry
Background:
- Tissue factor (TF) is implicated in various cancers, including ovarian cancer (EOC).
- Chemotherapy resistance is a significant challenge in treating EOC.
- Targeting TF offers a potential therapeutic strategy for EOC.
Purpose of the Study:
- To evaluate TF expression in EOC.
- To assess the efficacy of hI-con1, a TF-targeting molecule, against chemotherapy-resistant EOC.
- To investigate the role of complement regulatory proteins in hI-con1-mediated cytotoxicity.
Main Methods:
- Immunohistochemistry (IHC) and qRT-PCR for TF expression analysis in 88 EOC samples.
- Flow cytometry for membrane-bound complement regulatory proteins (CD46, CD55, CD59) in EOC cell lines.
- Chromium-release assays to evaluate cytotoxicity (IDCC, CDC) and inhibition by gamma-immunoglobulin.
Main Results:
- TF was overexpressed in 96% of EOC samples, with clear cell histology showing higher expression.
- Most TF-overexpressing EOCs showed high CD46, CD55, and CD59 levels and were sensitive to IDCC.
- CD59 overexpression influenced hI-con1-mediated cytotoxicity; its knockdown enhanced efficacy.
- Interleukin-2 further increased hI-con1-induced cytotoxicity.
Conclusions:
- hI-con1 demonstrates significant cytotoxicity against primary chemotherapy-resistant EOC cell lines overexpressing TF.
- hI-con1 represents a promising novel therapeutic agent for refractory ovarian tumors.
- TF targeting, combined with immune modulation, may overcome treatment resistance in EOC.
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