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Published on: October 27, 2014
Pulsed Electrical Field Ablation Plus Intratumoral Immunotherapy for Hepatocellular Carcinoma
Erik Soule1, Carlos Vargas2, Ramon Sanchez2
1University of Florida College of Medicine-Jacksonville, Jacksonville, FL.
Abstract:
The fourth leading cause of cancer death worldwide, hepatocellular carcinoma, is known to progress relentlessly and recur despite treatment. Given the high tumor mutational burden, hepatocellular carcinoma is an attractive target for immunotherapy. Early trials of systemic checkpoint inhibitors have produced promising results, although complete and durable immunologic tumor eradication remains elusive. Pulsed electrical field ablation is a nonthermal ablation technology that causes apoptosis of diseased cells, while preserving the neoantigens for subsequent immune recognition by antigen-presenting cells and effectors. The neoantigens are released when the membrane is permeabilized. Furthermore, pulsed electrical field ablation was shown to induce the formation of tertiary lymphoid structures, congregations of immune cells that form inside the tumor at the ablation site, analogous to a lymph node. We present a novel treatment regimen with pulsed electrical field ablation combined with intratumoral immunotherapy injection. Treatments were performed using computed tomography guidance in a percutaneous manner. Pulsed electrical field ablation was performed within the tumor using the Aliya pulsed electrical field system (Galvanize, Redwood City, CA). After ablation was performed, the immunotherapy was administered into the tumor, mixed with iodinated contrast for visibility and gelfoam slurry for local retention. Three patients underwent treatment, and all treated tumors responded favorably with a decrease in size and a marked decrease in postcontrast enhancement. There were no treatment-related complications or high-grade toxicities. Pulsed electrical field ablation plus intratumoral immunotherapy may be safe and effective for the treatment of advanced hepatocellular carcinoma.
Insights
Pulsed electrical field ablation combined with intratumoral immunotherapy shows promise for advanced hepatocellular carcinoma (HCC). This novel approach may safely reduce tumor size and enhance immune response, offering a new treatment option for this challenging cancer.
Area of Science:
- Oncology
- Immunotherapy
- Medical Technology
Background:
- Hepatocellular carcinoma (HCC) is a leading cause of cancer death with high recurrence rates.
- Immunotherapy shows potential for HCC due to its high tumor mutational burden, but durable responses are challenging.
- Pulsed electrical field ablation (PEFA) is a nonthermal technology that induces apoptosis and preserves tumor neoantigens.
Purpose of the Study:
- To evaluate the safety and efficacy of a novel treatment combining PEFA with intratumoral immunotherapy for advanced HCC.
- To assess the impact of this combined therapy on tumor response and immune cell activity.
Main Methods:
- A novel regimen involving percutaneous computed tomography-guided PEFA followed by intratumoral immunotherapy injection was administered.
- The PEFA system used was the Aliya system (Galvanize).
- Immunotherapy was injected into the tumor mixed with contrast and gelfoam for visualization and local retention.
Main Results:
- Three patients with advanced HCC were treated with the combined regimen.
- All treated tumors showed a favorable response, including decreased size and reduced postcontrast enhancement.
- No treatment-related complications or high-grade toxicities were observed.
Conclusions:
- Combined PEFA and intratumoral immunotherapy appears to be a safe and effective treatment strategy for advanced HCC.
- This approach may enhance tumor immunogenicity by preserving neoantigens and inducing tertiary lymphoid structures.
- Further investigation is warranted to confirm these promising preliminary findings.

