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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Celastrol, which targets IL-2/CD25 binding inhibition, induces T cell-mediated antitumor activity in melanoma
Okki Cho1, Joong-Woon Lee1, Young-Jin Jeong1
1Laboratory of Pharmacoimmunology, Integrated Research Institute of Pharmaceutical Sciences and BK21 FOUR Team for Advanced Program for SmartPharma Leaders, College of Pharmacy, The Catholic University of Korea, 43 Jibong-ro, Bucheon-si, Gyeonggi-do, 14662, Republic of Korea.
Abstract:
Interleukin-2 (IL-2) induces contrasting immune responses depending on its binding receptor subunit; thus, selective receptor binding is considered a key challenge in cancer therapeutic strategies. In this study, we aimed to investigate the inhibition of IL-2 action and antitumor activity of celastrol (CEL), a compound identified in a screen for IL-2/CD25 binding inhibitors, and to elucidate the underlying role of CEL in immune cells. We found that CEL selectively impairs the binding of IL-2 and CD25 and directly binds to IL-2 but not to CD25. CEL significantly suppressed the proliferation and signaling of IL-2-dependent murine T cells and interfered with IL-2-responsive STAT5 phosphorylation in IL-2 reporter cells and human PBMCs. After confirming the impact of CEL on IL-2, we evaluated its antitumor activity in C57BL/6 mice bearing B16F10 tumors and found that CEL significantly inhibited tumor growth by increasing CD8+ T cells. We also found that CEL did not inhibit tumor growth in T cell-deficient BALB/c nude mice, suggesting that its activity was mediated by the T-cell response. Moreover, combination therapy with low-dose CEL and a TNFR2 antagonist synergistically improved the therapeutic efficacy of the individual monotherapies by increasing the ratio of intratumoral CD8/Treg cells and suppressing Foxp3 expression. These findings suggest that CEL, which inhibits CD25 binding by targeting IL-2, exerts antitumor activity by mediating the T-cell response and could be a promising candidate for combination therapy in cancer immunotherapy against melanoma.
Insights
Celastrol (CEL) inhibits Interleukin-2 (IL-2) signaling by targeting IL-2 directly, enhancing antitumor activity against melanoma by boosting CD8+ T cells. Combination therapy with CEL and a TNFR2 antagonist shows synergistic effects.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- Interleukin-2 (IL-2) signaling is crucial for immune responses but its selective targeting remains a challenge in cancer therapy.
- Celastrol (CEL) was identified as an inhibitor of IL-2/CD25 binding, prompting investigation into its therapeutic potential.
Purpose of the Study:
- To investigate the inhibition of IL-2 action and antitumor activity of celastrol (CEL).
- To elucidate the role of CEL in immune cells and its mechanism of action in cancer immunotherapy.
Main Methods:
- CEL's binding to IL-2 and CD25 was assessed.
- Effects of CEL on IL-2-dependent T cell proliferation, signaling, and STAT5 phosphorylation were evaluated in vitro.
- Antitumor activity of CEL was tested in murine melanoma models (C57BL/6 and T cell-deficient BALB/c nude mice).
- Combination therapy with CEL and a TNFR2 antagonist was explored.
Main Results:
- CEL directly binds to IL-2, impairing IL-2/CD25 binding and suppressing T cell proliferation and signaling.
- CEL demonstrated significant antitumor activity in C57BL/6 mice by increasing CD8+ T cells, with activity dependent on T cells.
- Combination therapy synergistically enhanced therapeutic efficacy by increasing intratumoral CD8/Treg ratio and suppressing Foxp3.
Conclusions:
- CEL inhibits IL-2 action by targeting IL-2, exerting antitumor effects through T-cell mediated responses.
- CEL is a promising candidate for cancer immunotherapy, particularly in combination therapy for melanoma.
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