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Discovery of a Conditionally Activated IL-2 that Promotes Antitumor Immunity and Induces Tumor Regression
Abstract:
IL-2 is a cytokine clinically approved for the treatment of melanoma and renal cell carcinoma. Unfortunately, its clinical utility is hindered by serious side effects driven by the systemic activity of the cytokine. Here, we describe the design and characterization of a conditionally activated IL-2 prodrug, WTX-124, that takes advantage of the dysregulated protease milieu of tumors. WTX-124 was engineered as a single molecule containing an inactivation domain and a half-life extension domain that are tethered to a fully active IL-2 by protease-cleavable linkers. We show that the inactivation domain prevented IL-2 from binding to its receptors in nontumor tissues, thereby minimizing the toxicity associated with systemic exposure to IL-2. The half-life extension element improves the pharmacokinetic profile of WTX-124 over free IL-2, allowing for greater exposure. WTX-124 was preferentially activated in tumor tissue by tumor-associated proteases, releasing active IL-2 in the tumor microenvironment. In vitro assays confirmed that the activity of WTX-124 was dependent on proteolytic activation, and in vivo WTX-124 treatment resulted in complete rejection of established tumors in a cleavage-dependent manner. Mechanistically, WTX-124 treatment triggered the activation of T cells and natural killer (NK) cells, and markedly shifted the immune activation profile of the tumor microenvironment, resulting in significant inhibition of tumor growth in syngeneic tumor models. Collectively, these data demonstrate that WTX-124 minimizes the toxicity of IL-2 treatment in the periphery while retaining the full pharmacology of IL-2 in the tumor microenvironment, supporting its further development as a cancer immunotherapy treatment. See related Spotlight by Silva, p. 544.
Insights
A novel cancer immunotherapy, WTX-124, conditionally activates Interleukin-2 (IL-2) in tumors. This prodrug minimizes systemic toxicity while enhancing anti-tumor immune responses for improved cancer treatment.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Interleukin-2 (IL-2) is approved for melanoma and renal cell carcinoma but causes severe side effects due to systemic activity.
- Tumor microenvironments often exhibit dysregulated protease activity, presenting an opportunity for targeted drug delivery.
Purpose of the Study:
- To design and characterize WTX-124, a conditionally activated IL-2 prodrug for cancer immunotherapy.
- To evaluate the safety and efficacy of WTX-124 in preclinical cancer models.
Main Methods:
- Engineered a single molecule prodrug (WTX-124) with inactivation and half-life extension domains linked to IL-2 via protease-cleavable sites.
- Assessed WTX-124's ability to prevent IL-2 binding in non-tumor tissues and its activation by tumor-associated proteases.
- Evaluated in vitro and in vivo anti-tumor activity, including immune cell activation and tumor microenvironment modulation.
Main Results:
- WTX-124 demonstrated protease-dependent activation, releasing active IL-2 specifically within the tumor microenvironment.
- Minimized systemic IL-2 toxicity by preventing peripheral receptor binding.
- Achieved complete tumor rejection in vivo through T cell and NK cell activation, demonstrating significant anti-tumor efficacy.
Conclusions:
- WTX-124 effectively targets IL-2 therapy to tumors, reducing peripheral toxicity and enhancing anti-cancer immunity.
- The conditional activation strategy shows promise for developing safer and more effective IL-2-based cancer immunotherapies.
- WTX-124 warrants further clinical development for treating various cancers.
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