Related Experiment Video
Updated: Mar 20, 2026

Heterotypic Three-dimensional In Vitro Modeling of Stromal-Epithelial Interactions During Ovarian Cancer Initiation and Progression
Published on: August 28, 2012
Fibroblast recruitment as a tool for ovarian cancer detection and targeted therapy
Roni Oren1, Yoseph Addadi1, Lian Narunsky Haziza1
1Department of Biological Regulation, Weizmann Institute of Science, Rehovot, Israel.
Abstract:
Metastatic ovarian cancer, the most lethal of gynecologic malignancies, is typically managed by debulking surgery, followed by chemotherapy. However, despite significant efforts, survival rate remains low. We have previously demonstrated, in mouse models, a specific systemic homing of labeled fibroblasts to solid ovarian tumors. Here, we demonstrate the feasibility of utilizing this specific homing of genetically modified fibroblasts for detection and targeted therapy of orthotopic metastatic ovarian carcinoma model in immune-deficient mice. Using an in vivo metastatic mouse model for ovarian cancer, we demonstrated that fibroblasts expressing fluorescent reporters injected intra-peritoneally, were specifically recruited to peritoneal tumor nodules (resulting in 93-100% co-localization). We further used fibroblasts over expressing the soluble receptor variant of VEGFR1 (s-Flt1). Mice bearing tumors were injected weekly with either control or s-Flt1 expressing fibroblasts. Injection of s-Flt1 expressing fibroblasts resulted in a significant reduction in the ascites volume, reduced vascularization of adherent metastases, and improved overall survival. Using fluorescently labeled fibroblasts for tumor detection with readily available intra-operative fluorescence imaging tools may be useful for tumor staging and directing biopsies or surgical efforts during exploratory or debulking surgery. Fibroblasts may serve as a beacon pointing to the otherwise invisible metastases in the peritoneal cavity of ovarian cancer patients. Utilizing the recruited fibroblasts also for targeted delivery of anti angiogenic or antitumor molecules may aid in controlling tumor progression. Thus, these results suggest a novel approach for targeting ovarian tumor metastases for both tumor detection and therapy.
Insights
Genetically modified fibroblasts can detect and treat ovarian cancer metastases. These cells specifically target tumors, aiding in imaging and delivering therapies to improve survival rates in ovarian cancer patients.
Area of Science:
- Oncology
- Biotechnology
- Medical Imaging
Background:
- Metastatic ovarian cancer has a low survival rate despite current treatments like surgery and chemotherapy.
- Fibroblasts have shown specific homing capabilities to solid ovarian tumors in preclinical models.
- There is a need for improved methods for detecting and treating ovarian cancer metastases.
Purpose of the Study:
- To evaluate the feasibility of using genetically modified fibroblasts for detecting and targeting ovarian cancer metastases.
- To assess the therapeutic potential of fibroblasts engineered to express a soluble VEGFR1 variant (s-Flt1).
- To investigate the role of fibroblast homing in tumor staging and therapeutic delivery.
Main Methods:
- An in vivo metastatic ovarian cancer mouse model was utilized.
- Intraperitoneal injection of fluorescently labeled fibroblasts to assess tumor homing.
- Administration of fibroblasts overexpressing s-Flt1 to tumor-bearing mice.
- Evaluation of ascites volume, metastasis vascularization, and overall survival.
Main Results:
- Fibroblasts demonstrated specific recruitment to peritoneal tumor nodules with 93-100% co-localization.
- Injection of s-Flt1-expressing fibroblasts significantly reduced ascites and metastasis vascularization.
- Treatment with s-Flt1 fibroblasts led to improved overall survival in the ovarian cancer model.
Conclusions:
- Genetically modified fibroblasts can be effectively used for detecting ovarian cancer metastases via intra-operative fluorescence imaging.
- Engineered fibroblasts expressing s-Flt1 show therapeutic potential in reducing tumor burden and improving survival.
- Fibroblasts offer a novel strategy for targeted delivery of anti-cancer agents and improved management of ovarian cancer.
More Related Videos
Related Concept Videos
Introduction to Fibroblasts
Targeted Cancer Therapies
There are several types of targeted therapies against...

