Related Experiment Video
Updated: Feb 12, 2026

Mesenchymal Stem Cell Regulation of Macrophage Phagocytosis; Quantitation and Imaging
Published on: July 16, 2021
Regulated Mesenchymal Stem Cells Mediated Colon Cancer Therapy Assessed by Reporter Gene Based Optical Imaging
Senthilkumar Kalimuthu1, Liya Zhu2, Ji Min Oh3
1Department of Nuclear Medicine, School of Medicine, Kyungpook National University, Kyungpook National University Hospital, Daegu 41944, Korea. senthilbhus@gmail.com.
Abstract:
Colorectal cancer is the most common cancer in both men and women and the second most common cause of cancer-related deaths. Suicide gene-based therapy with suicide gene-transduced mesenchymal stem cells (MSCs) is a promising therapeutic strategy. A tetracycline-controlled Tet-On inducible system used to regulate gene expression may be a useful tool for gene-based therapies. The aim of this study was to develop therapeutic MSCs with a suicide gene that is induced by an artificial stimulus, to validate therapeutic gene expression, and to monitor the MSC therapy for colon cancer using optical molecular imaging. For our study, we designed the Tet-On system using a retroviral vector and developed a response plasmid RetroX-TRE (tetracycline response element) expressing a mutant form of herpes simplex virus thymidine kinase (HSV1-sr39TK) with dual reporters (eGFP-Fluc2). Bone marrow-derived MSCs were transduced using a RetroX-Tet3G (Clontech, CA, USA) regulatory plasmid and RetroX-TRE-HSV1-sr39TK-eGFP-IRES-Fluc2, for a system with a Tet-On (MSC-Tet-TK/Fluc2 or MSC-Tet-TK) or without a Tet-On (MSC-TK/Fluc2 or MSC-TK) function. Suicide gene engineered MSCs were co-cultured with colon cancer cells (CT26/Rluc) in the presence of the prodrug ganciclovir (GCV) after stimulation with or without doxycycline (DOX). Treatment efficiency was monitored by assessing Rluc (CT26/Rluc) and Fluc (MSC-Tet-TK and MSC-TK) activity using optical imaging. The bystander effect of therapeutic MSCs was confirmed in CT26/Rluc cells after GCV treatment. Rluc activity in CT26/Rluc cells decreased significantly with GCV treatment of DOX(+) cells (p < 0.05 and 0.01) whereas no significant changes were observed in DOX(-) cells. In addition, Fluc activity in also decreased significantly with DOX(+) MSC-Tet-TK cells, but no signal was observed in DOX(-) cells. In addition, an MSC-TK bystander effect was also confirmed. We assessed therapy with this system in a colon cancer xenograft model (CT26/Rluc). We successfully transduced cells and developed a Tet-On system with the suicide gene HSV1-sr39TK. Our results confirmed the therapeutic efficiency of a suicide gene with the Tet-On system for colon cancer. In addition, our results provide an innovative therapeutic approach using the Tet-On system to eradicate tumors by administration of MSC-Tet-TK cells with DOX and GCV.
Insights
This study developed a Tet-On inducible suicide gene system using mesenchymal stem cells (MSCs) to treat colon cancer. The system effectively eradicated colon cancer cells and tumors in preclinical models, offering a novel therapeutic strategy.
Area of Science:
- Oncology
- Gene Therapy
- Stem Cell Therapy
Background:
- Colorectal cancer is a leading cause of cancer-related deaths globally.
- Suicide gene therapy using mesenchymal stem cells (MSCs) presents a promising approach for cancer treatment.
- Inducible gene expression systems offer precise control over therapeutic gene delivery.
Purpose of the Study:
- To develop and validate a Tet-On inducible suicide gene system in MSCs for colon cancer therapy.
- To assess the therapeutic efficacy and monitor MSC-mediated gene expression in colon cancer models.
- To investigate the bystander effect of suicide gene-engineered MSCs.
Main Methods:
- Designed a Tet-On system using retroviral vectors to express herpes simplex virus thymidine kinase (HSV1-sr39TK) with dual reporters (eGFP-Fluc2) in MSCs.
- Transduced bone marrow-derived MSCs with regulatory and response plasmids for Tet-On or non-Tet-On systems.
- Co-cultured engineered MSCs with colon cancer cells and treated with ganciclovir (GCV) ± doxycycline (DOX), monitoring via optical imaging.
Main Results:
- Successfully engineered MSCs with a Tet-On inducible suicide gene system (MSC-Tet-TK).
- Demonstrated significant reduction in colon cancer cell viability and tumor growth in a xenograft model upon DOX and GCV treatment.
- Confirmed the bystander effect of therapeutic MSCs, leading to cancer cell death.
- Optical imaging effectively monitored gene expression and therapeutic response.
Conclusions:
- The Tet-On inducible suicide gene system using MSCs is effective for colon cancer therapy.
- This approach offers precise control over gene expression, enhancing therapeutic safety and efficacy.
- The study provides an innovative strategy for tumor eradication using engineered MSCs and an inducible system.
More Related Videos
Related Concept Videos
Gene Therapy
Mesenchymal Stem Cells
Reporter Genes
Regulation of Hematopoietic Stem Cells
Cancer Therapies
However, cancer treatments can pose several challenges, as therapies used to kill cancer cells are generally also toxic to normal cells. Moreover, cancer cells mutate rapidly and can develop resistance to chemical agents or radiation therapy. Besides, all types of cancer cells may not respond to the same therapy. Some cancer cells respond to one...
Stem Cell Therapy for Tissue Regeneration
Types of Stem Cells used in Stem Cell Therapy
The two main cell...

