Related Experiment Video
Updated: Oct 25, 2025

Three-Dimensional Bone Extracellular Matrix Model for Osteosarcoma
Published on: April 12, 2019
The promising effects of BMP2 transfected mesenchymal stem cells on human osteosarcoma
Ahmet Sinan Sari1, Emre Demirçay2, Ahmet Öztürk3
1Department of Orthopedics and Traumatology, Faculty of Medicine, Başkent University, Ankara Training and Research Hospital, Ankara Turkey.
Abstract:
Selective targeting of transfected mesenchymal stem cells (MSCs) carrying specific antioncogenes to the tumor was suggested as a treatment option. Bone morphogenetic protein-2 (BMP2) was shown to inhibit the proliferation and aggressiveness of osteosarcoma (OS) cells. Here, we aimed to assess the homing efficiency of intraperitoneally administered hMSCs transfected with BMP2 to the tumoral site and their effects on OS using an orthotopic xenograft murine model. Orthotopic xenograft murine model of OS in six-week-old female NOD/SCID mice using 143B cells was established. hMSCs transfected with BMP2 (BMP2+hMSC) were used. In vivo experiments performed on four groups of mice that received no treatment, or intraperitoneally administered BMP2, hMSCs, and BMP2+hMSCs. Histopathological and immunohistochemical studies were used to evaluate the pathological identification and to assess the dimensions and necrotic foci of the tumor, the features of lung metastases, and immunostaining against p27, Ki-67, and caspase-3 antibodies. The osteogenic differentiation markers BMP2, BMP4, COL1A1, OPN, OCN and PF4 evaluated using RT-PCR. The tumor dimensions in the hMSCs group were significantly higher than those of the remaining groups (p < 0.01). The number of metastatic foci in the BMP2+hMSCs group was significantly lower than those of the other groups (p < 0.01). The current results showed that the intraperitoneal route could be efficiently used for targeting hMSCs to the tumoral tissues for effective BMP2 delivery. In this study, the effects of BMP2 transfected hMSCs on human OS and metastasis were promising for achieving osteogenic differentiation and reduced metastatic process.
Insights
Transfected human mesenchymal stem cells (hMSCs) delivering bone morphogenetic protein-2 (BMP2) effectively targeted osteosarcoma (OS) tumors. This therapy reduced tumor growth and metastasis in a murine model, showing promise for OS treatment.
Area of Science:
- Oncology
- Stem Cell Therapy
- Gene Therapy
Background:
- Mesenchymal stem cells (MSCs) offer potential for targeted cancer therapy.
- Bone morphogenetic protein-2 (BMP2) exhibits anti-tumor properties against osteosarcoma (OS).
- Targeting OS with genetically modified MSCs is a promising therapeutic strategy.
Purpose of the Study:
- To evaluate the homing efficiency of intraperitoneally administered BMP2-transfected hMSCs to OS tumors.
- To assess the therapeutic effects of BMP2-transfected hMSCs on OS progression and metastasis in vivo.
- To investigate the potential of this approach for osteogenic differentiation and reduced metastasis.
Main Methods:
- Established an orthotopic xenograft murine model of human OS using 143B cells.
- Administered BMP2-transfected hMSCs (BMP2+hMSCs) intraperitoneally to mice in four groups (no treatment, BMP2, hMSCs, BMP2+hMSCs).
- Utilized histopathological, immunohistochemical, and RT-PCR analyses to evaluate tumor characteristics, metastasis, and gene expression.
Main Results:
- BMP2+hMSCs demonstrated efficient homing to tumoral sites.
- Tumor dimensions were significantly smaller in the BMP2+hMSCs group compared to others (p < 0.01).
- The number of lung metastatic foci was significantly reduced in the BMP2+hMSCs group (p < 0.01).
Conclusions:
- Intraperitoneal administration is an effective route for targeting hMSCs to tumors for BMP2 delivery.
- BMP2-transfected hMSCs show significant potential in inhibiting OS growth and reducing metastasis.
- This strategy holds promise for osteogenic differentiation and improved outcomes in osteosarcoma treatment.
More Related Videos
12:18LINE-1 Methylation Analysis in Mesenchymal Stem Cells Treated with Osteosarcoma-Derived Extracellular Vesicles
Published on: February 1, 2020
10:32Author Spotlight: Simple Establishment of a Vascularized Osteogenic Bone Marrow Niche Using Pre-Cast Poly(Ethylene Glycol) (PEG) Hydrogels in an Imaging Microplate
Published on: May 19, 2023