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HB023: A glutamine antagonist prodrug boosting antitumor lmmunity via PD-L1 suppression and mitochondrial membrane
Junyan Zhuang1, Ye Chen2, Yi Zhang3
1Laboratory of Cellular Metabolism and Precision Therapeutics, School of Life Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China; Research & Development Institute of Northwestern Polytechnical University in Shenzhen, Shenzhen 518057, China; The State Key Laboratory of Pharmaceutical Biotechnology, College of Life Sciences, Nanjing University, Nanjing 210023, China.
Introduction:
Glutamine is a key nutrient that supports tumor cell metabolism, biosynthesis, and proliferation. It also shapes the tumor microenvironment and modulates cell death pathways. Glutamine antagonists have emerged as effective therapeutic agents by both disrupting tumor energy metabolism and enhancing antitumor immune responses. However, recent evidence reveals a paradoxical effect: glutamine deprivation can induce PD-L1 expression on tumor cells, facilitating immune escape and reducing the efficacy of immunotherapies.
Objectives:
This study aims to overcome the immune evasion triggered by glutamine deprivation by developing a dual-functional therapeutic strategy that enhances metabolic stress while simultaneously inhibiting PD-L1 expression. The ultimate goal is to strengthen antitumor immunity and improve therapeutic outcomes.
Methods:
We designed and synthesized a novel prodrug, HB023, by covalently linking a glutamine metabolism inhibitor with JQ1, a well-characterized PD-L1 inhibitor. We evaluated the effects of HB023 on tumor cell pyroptosis, energy metabolism, PD-L1 expression, T cell-mediated cytotoxicity, and macrophage polarization using a combination of in vitro cell-based assays and in vivo tumor models.
Results:
HB023 significantly enhanced glutamine starvation in tumor cells, leading to increased pyroptosis and restricted energy supply. It effectively downregulated PD-L1 expression, which restored T cell cytotoxic activity. Additionally, HB023 induced mitochondrial membrane remodeling in macrophages, promoting M1 polarization and thereby enhancing innate immune responses. These mechanisms cooperatively activated both adaptive and innate antitumor immunity, thereby conferring HB023 with superior antitumor efficacy compared with JQ1, JHU083, or their combination.
Conclusion:
HB023 successfully addresses the challenge of glutamine deprivation-induced immune escape by integrating metabolic inhibition with immune checkpoint blockade. This dual-modulatory approach reprograms the tumor immune microenvironment and improves immunotherapeutic efficacy, representing a promising strategy for advancing cancer treatment.
Insights
A new drug, HB023, combats cancer immune escape by inhibiting glutamine metabolism and PD-L1 expression. This dual action enhances antitumor immunity and improves therapeutic outcomes against tumors.
Area of Science:
- Oncology
- Immunology
- Metabolic Pathways
Background:
- Glutamine fuels tumor growth and shapes the tumor microenvironment.
- Glutamine antagonists can enhance antitumor immunity but paradoxically increase PD-L1 expression, leading to immune escape.
- This immune evasion reduces the efficacy of current cancer immunotherapies.
Purpose of the Study:
- To develop a dual-functional therapeutic strategy to overcome glutamine deprivation-induced immune evasion.
- To enhance metabolic stress in tumor cells while inhibiting PD-L1 expression.
- To ultimately strengthen antitumor immunity and improve therapeutic outcomes.
Main Methods:
- Designed and synthesized a novel prodrug, HB023, linking a glutamine metabolism inhibitor with a PD-L1 inhibitor (JQ1).
- Evaluated HB023's effects on tumor cell pyroptosis, metabolism, and PD-L1 expression in vitro.
- Assessed HB023's impact on T cell cytotoxicity, macrophage polarization, and antitumor efficacy in vivo tumor models.
Main Results:
- HB023 significantly induced glutamine starvation, pyroptosis, and restricted energy supply in tumor cells.
- HB023 effectively downregulated PD-L1 expression, restoring T cell-mediated cytotoxicity.
- HB023 promoted M1 macrophage polarization, enhancing innate immunity and demonstrating superior antitumor efficacy compared to individual agents or their combination.
Conclusions:
- HB023 integrates metabolic inhibition with immune checkpoint blockade to address glutamine deprivation-induced immune escape.
- This dual-modulatory approach reprograms the tumor immune microenvironment, enhancing immunotherapeutic efficacy.
- HB023 represents a promising strategy for advancing cancer treatment by overcoming key resistance mechanisms.
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