Syngeneic mesenchymal stem cells loaded with telomerase-dependent oncolytic adenoviruses enhance anti-metastatic efficacy

Author:

Yang Mei-Lin12,Hu Che-Yuan3,Lee Ya-Che4,Chang Chao-Ching5,Chen Yi-Cheng5,Lee Pei-Ru5,Su Bing-Hua6,Chen Pi-Che4,Shiau Ai-Li12,Shieh Gia-Shing37,Wu Chao-Liang15ORCID,Wu Pensee89

Affiliation:

1. Department of Medical Research, Ditmanson Medical Foundation Chia-Yi Christian Hospital , Chiayi , Taiwan

2. Department of Microbiology and Immunology, College of Medicine, National Cheng Kung University , Tainan , Taiwan

3. Department of Urology, College of Medicine, National Cheng Kung University , Tainan , Taiwan

4. Department of Urology, Ditmanson Medical Foundation Chia-Yi Christian Hospital , Chiayi , Taiwan

5. Department of Biochemistry and Molecular Biology, College of Medicine, National Cheng Kung University , Tainan , Taiwan

6. School of Respiratory Therapy, College of Medicine, Taipei Medical University , Taipei , Taiwan

7. Department of Urology, Tainan Hospital, Department of Health, Executive Yuan , Tainan , Taiwan

8. School of Medicine, Keele University , Staffordshire , United Kingdom

9. Department of Obstetrics and Gynaecology, University Hospital of North Midlands , Newcastle-under-Lyme, Staffordshire , United Kingdom

Abstract

Abstract Oncolytic adenoviruses have emerged as a promising therapeutic approach for cancer therapy. However, systemic delivery of the viruses to metastatic tumors remains a major challenge. Mesenchymal stem cells (MSCs) possess tumor tropism property and can be used as cellular vehicles for delivering oncolytic adenoviruses to tumor sites. Since telomerase activity is found in ~90% of human carcinomas, but undetected in normal adult cells, the human telomerase reverse transcriptase gene (TERT) promoter can be exploited for regulating the replication of oncolytic adenoviruses. Here, we evaluated the antitumor effects of syngeneic murine MSCs loaded with the luciferase-expressing, telomerase-dependent oncolytic adenovirus Ad.GS2 (MSC-Ad.GS2) and Ad.GS2 alone on metastatic MBT-2 bladder tumors. MSCs supported a low degree of Ad.GS2 replication, which could be augmented by coculture with MBT-2 cells or tumor-conditioned medium (TCM), suggesting that viral replication is increased when MSC-Ad.GS2 migrates to tumor sites. MBT-2 cells and TCM enhanced viral replication in Ad.GS2-infected MSCs. SDF-1 is a stem cell homing factor. Our results suggest that the SDF-1/STAT3/TERT signaling axis in MSCs in response to the tumor microenvironment may contribute to the enhanced replication of Ad.GS2 carried by MSCs. Notably, we demonstrate the potent therapeutic efficacy of systemically delivered MSC-Ad.GS2 in pleural disseminated tumor and experimental metastasis models using intrapleural and tail vein injection of MBT-2 cells, respectively. Treatment with MSC-Ad.GS2 significantly reduced tumor growth and prolonged the survival of mice bearing metastatic bladder tumors. Since telomerase is expressed in a broad spectrum of cancers, this therapeutic strategy may be broadly applicable.

Funder

Ditmanson Medical Foundation Chia-Yi Christian Hospital

National Science and Technology Council, Taiwan

Publisher

Oxford University Press (OUP)

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