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Updated: Sep 4, 2026

Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
pAc/Emm55 increases anti-melanoma immunity via TLR2 signaling in dendritic cells and improves checkpoint blockade
Thi Hong Nga Le1, Quang Tam Nguyen1, Youngchul Kim2,3
1Department of Cutaneous Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL, United States.
Background:
pAc/Emm55 (IFx-Hu2.0) is a plasmid DNA therapy encoding a Streptococcus pyogenes-derived bacterial gene. It shows anti-tumor activity in preclinical models, but the mechanisms of anti-melanoma immunity and additive effects with immune checkpoint blockade remain unclear.
Methods:
B16 melanoma tumor-bearing mice were treated intratumorally with pAc/Emm55 alone and/or intraperitoneally with PD-1, CTLA-4, or LAG-3 blockade and monitored for tumor growth. Antibodies against Emm55 and melanoma cells (B16 or YUMM) were quantified by flow cytometry. Bone marrow-derived dendritic cells (BMDCs) from WT, MyD88 KO, TLR2 KO, or TLR7 KO mice were assessed for antigen uptake, OVA cross-presentation, and OT-I priming after pulsing with cell lysates from Emm55- or empty-transfected melanoma cells. Tumor immune infiltration by CD8 and CD11c cells were evaluated by immunohistochemistry.
Results:
IFx-Hu2.0 significantly reduced tumor growth, correlating with increased intratumoral CD8+ T cell infiltration and enhanced systemic antibody responses against melanoma cells. TLR deficiency did not alter OVA uptake or basal BMDC cross-presentation. However, Emm55-enhanced OT-I priming and IFN-γ production required TLR2 and MyD88, but not TLR7, supporting a TLR2-MyD88-dependent mechanism. Emm55 monotherapy and anti-PD-1 each reduced tumor burden. The combination further improved inhibition. Adding anti-CTLA-4 or anti-LAG-3 to anti-PD-1 did not provide additional meaningful benefit.
Conclusions:
Emm55 facilitates the TLR2-MyD88 pathway in DCs and subsequent IFN-γ production by OT-I CD8 T cells. Combining intratumoral IFx-Hu2.0 with PD-1 blockade improves tumor control, supporting clinical evaluation of this strategy as also suggested by the first-in-human clinical trial of IFx-Hu2.0.

