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PLT012, a Humanized CD36-Blocking Antibody, Is Effective for Unleashing Antitumor Immunity Against Liver Cancer and
Sheue-Fen Tzeng1,2, Yi-Ru Yu3,4,5, Jaeoh Park4,5
1Tumor Immune Analysis Core, Office of Research & Development, Taipei Medical University, Taipei, Taiwan.
Abstract:
Tumor cells develop various strategies to evade immune surveillance, one of which involves altering the metabolic state of the tumor microenvironment. In response to metabolic stress in the tumor microenvironment, several tumor-infiltrating immune subsets upregulate CD36 to take up lipids. This leads to impaired antitumor immunity, as intratumoral regulatory T cells exhibit increased survival and suppressive activity, whereas CD8+ T cells become more susceptible to ferroptosis and exhaustion. In this study, we develop a humanized anti-CD36 IgG4 antibody, PLT012, against the lipid-binding domain of CD36 with excellent safety and favorable pharmacokinetic features in mice and cynomolgus monkeys. PLT012 alone or in combination with PD-L1 blockade or standard-of-care immunotherapy results in robust antitumor immunity in both immunotherapy-sensitive and -resistant hepatocellular carcinomas (HCC). Notably, PLT012 also reprograms the immune landscape of human HCC ex vivo. Our findings provide proof-of-concept evidence that PLT012 reprograms antitumor immunity in HCC, positioning it as a first-in-class immunotherapy targeting CD36.
Significance:
Despite the success of cancer immunotherapies, like immune checkpoint inhibitors, many patients still fail to demonstrate significant responses because of metabolic constraints in tumors. PLT012 rejuvenates antitumor immunity by targeting metabolic pathways to reprogram the immune landscape of liver cancer and liver metastasis, with potential to influence future HCC immunotherapy.
Insights
Metabolic constraints limit cancer immunotherapy responses. PLT012 rejuvenates antitumor immunity by targeting metabolic pathways, offering potential for improved hepatocellular carcinoma (HCC) immunotherapy.
Area of Science:
- Oncology
- Immunology
- Metabolic pathways
Background:
- Cancer immunotherapies, such as immune checkpoint inhibitors, show promise but face limitations.
- Tumor metabolic constraints are a key factor in patient non-response to immunotherapy.
Purpose of the Study:
- To investigate the potential of PLT012 in overcoming metabolic constraints.
- To evaluate PLT012's ability to rejuvenate antitumor immunity in liver cancer.
Main Methods:
- Targeting specific metabolic pathways within the tumor microenvironment.
- Reprogramming the immune landscape to enhance anti-tumor responses.
Main Results:
- PLT012 demonstrated rejuvenation of antitumor immunity.
- Successful reprogramming of the immune landscape in liver cancer models.
Conclusions:
- PLT012 shows potential to enhance immunotherapy efficacy by addressing metabolic tumor constraints.
- This approach may significantly influence future hepatocellular carcinoma (HCC) immunotherapy strategies.
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