Epithelial ovarian cancer: feasibility of image-guided intratumoral radiofrequency hyperthermia-enhanced direct gene therapy.

HSV-TK/GCV Radiofrequency hyperthermia gene therapy molecular image ovarian cancer

Journal

American journal of cancer research
ISSN: 2156-6976
Titre abrégé: Am J Cancer Res
Pays: United States
ID NLM: 101549944

Informations de publication

Date de publication:
2019
Historique:
received: 27 12 2018
accepted: 04 01 2019
entrez: 26 3 2019
pubmed: 25 3 2019
medline: 25 3 2019
Statut: epublish

Résumé

The aim of this study was to develop an interventional oncologic technique, "Image-guided intratumoral radiofrequency hyperthermia (RFH)-enhanced herpes simplex virus-thymidine kinase (HSV-TK) gene therapy of ovarian cancer. This study consisted of three portions: (1) serial in-vitro experiments to establish "proof-of-principle" of this novel technique using human ovarian cancer cells; (2) serial in-vivo experiments to validate technical feasibility using animal models with the same orthotopic ovarian cancers; and (3) serial investigations into the underlying bio-molecular mechanisms of this technique. We included four subject groups: (i) combination therapy with RFH+HSV-TK gene therapy; (ii) gene therapy-only; (iii) RFH-only; and (iv) Phosphate-buffered saline (PBS). For in-vitro experiments, confocal microscopy and MTS assays were performed to quantify HSV-TK gene expression and assess cell viability. For in-vivo experiments, bioluminescence optical and ultrasound imaging were used to assess therapeutic effectiveness. These results were correlated with subsequent pathologic/laboratory studies to further elucidate the biologic mechanisms of this technique. In in-vitro experiments, combination therapy resulted in the lowest cell proliferation and greatest increase in HSV-TK gene expression among four subject groups. In in-vivo experiments, combination therapy lead to significant decreases of bioluminescence signals and sizes of tumors in combination therapy by optical and ultrasound imaging. Pathology/laboratory examinations confirmed the significantly increased expression of Bax, Caspase-3, HSP70, IL-2, and CD94 in cancer tissues subjected to combination therapy. "Image-guided intratumoral RFH-enhanced direct gene therapy" is an effective interventional oncologic technique which functions through apoptotic/anti-tumor immunity pathways. This technical development may open new avenues for treating ovarian cancer.

Identifiants

pubmed: 30906635
pmc: PMC6405963

Types de publication

Journal Article

Langues

eng

Pagination

378-389

Subventions

Organisme : NIBIB NIH HHS
ID : R01 EB028095
Pays : United States

Déclaration de conflit d'intérêts

None.

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Auteurs

Guangxin Jin (G)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.
Department of Interventional Oncology, Renji Hospital, Sochool of Medicine, Shanghai Jiaotong University Shanghai, China.

Yaying Li (Y)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.
Department of Radiology, Guizhou General Hospital Guiyang, China.

Feng Zhang (F)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Peicheng Li (P)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Liangcai Zhao (L)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Yiming Zhou (Y)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Hongxiu Ji (H)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.
Department of Pathology, Overlake Medical Center and Incyte Diagnostics Bellevue, WA, USA.

Sean Pietrini (S)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Bo Zhai (B)

Department of Interventional Oncology, Renji Hospital, Sochool of Medicine, Shanghai Jiaotong University Shanghai, China.

Xiaoming Yang (X)

Image-Guided Biomolecular Intervention Research, Section of Interventional Radiology, Department of Radiology, University of Washington School of Medicine Seattle, WA, USA.

Classifications MeSH