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Updated: Sep 20, 2026

Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Enhancing antimelanoma immune responses through apoptosis
Stacie R Bianco1, Juan Sun, Susan P Fosmire
1Center for Cancer Causation and Prevention, AMC Cancer Research Center and Donald Monk Cancer Research Foundation, Denver, Colorado 80214, USA.
Abstract:
We examined the feasibility of using tumor apoptosis at accessible sites to enhance antimelanoma immune responses in a model of spontaneous canine melanoma. We show that priming peripheral blood mononuclear cells with apoptotic melanoma cells significantly enhanced autologous and allogeneic lymphokine-activated killing of tumor cells. Since various pathways required for intrinsic apoptosis are often inactivated in melanoma, we used Fas ligand (FasL) overexpression to promote extrinsic apoptosis. FasL induced apoptosis in five of six cell lines. Each of the susceptible lines, but not the resistant one, expressed Fas mRNA. In addition, direct intratumoral administration of FasL DNA to tumor-bearing dogs was safe, with no adverse events reported over 7 days of observation. A reduction of tumor burden was seen in three of five dogs treated. The reduction of tumor volume was correlated with Fas expression by the tumors, although one dog with a Fas-negative tumor survived for 82 weeks after treatment. Our data show that overexpression of FasL is suitable to promote apoptosis of Fas(+) melanomas, and support the notion that priming immune responder cells with apoptotic tumor cells may enhance antitumor responses. The results also suggest that intratumoral administration of FasL offers a safe route for therapeutic gene delivery.
Insights
Priming immune cells with apoptotic melanoma cells enhances anti-tumor responses. Direct intratumoral Fas ligand (FasL) DNA delivery is safe and reduces tumor burden in dogs with melanoma.
Area of Science:
- Immunology
- Oncology
- Veterinary Medicine
Background:
- Melanoma often inactivates intrinsic apoptosis pathways.
- Tumor apoptosis can be leveraged to enhance anti-melanoma immune responses.
Purpose of the Study:
- To assess the feasibility of using tumor apoptosis to boost anti-melanoma immunity in canine melanoma.
- To investigate Fas ligand (FasL) for inducing extrinsic apoptosis in melanoma cells.
Main Methods:
- Priming peripheral blood mononuclear cells with apoptotic melanoma cells.
- Overexpressing FasL to induce extrinsic apoptosis.
- Intratumoral administration of FasL DNA in tumor-bearing dogs.
Main Results:
- Priming enhanced lymphokine-activated killing of tumor cells.
- FasL induced apoptosis in 5/6 melanoma cell lines expressing Fas mRNA.
- Intratumoral FasL DNA delivery was safe and reduced tumor burden in 3/5 dogs.
Conclusions:
- FasL overexpression effectively promotes apoptosis in Fas-positive melanomas.
- Priming immune cells with apoptotic tumor cells enhances anti-tumor responses.
- Intratumoral FasL DNA administration is a safe therapeutic gene delivery route.
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