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April 5, 2026Cancer Research0 citations

Abstract 470: JZP898, a conditionally activated interferon alpha, generates efficacy and robust TME engagement in syngeneic mouse models.

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AKAnkur KarmokarJazz Pharmaceuticals (United States)ELEmanuele LoroJazz Pharmaceuticals (United States)ZZZhiling ZhangJazz Pharmaceuticals (United States)

Key Points

  • The research aims to evaluate JZP898, a conditionally activated interferon alpha, for its effectiveness in targeting tumors while minimizing systemic toxicity.
  • Utilized syngeneic mouse tumor models to assess JZP898's antitumor activity.
  • Investigated pharmacokinetic (PK) and pharmacodynamic (PD) profiles of JZP898 using a mouse analog (JZP898S).
  • Measured immune cell activation and cytokine levels in the tumor microenvironment (TME) and periphery after treatment.
  • JZP898S increased tumor exposure relative to peripheral circulation, enhancing efficacy.
  • Treatment resulted in greater activation of cytotoxic T-cells and reduced regulatory T-cells in the TME.
  • A specific gene expression signature related to JZP898 was observed in tumors, indicating PK/PD relationships.

Abstract

Abstract Interferon alpha (IFNα) is a cytokine belonging to type I IFNs that exert pleiotropic effects on cell functions. IFNα induces antitumor activity and has been extensively applied in clinical oncology. However, use of IFNα has historically been restricted in clinical practice largely due to systemic toxicity and limited clinical activity compared to currently approved immunotherapies. JZP898, a conditionally activated IFNα, has the potential to minimize the toxicity associated with systemic IFNα therapy, preferentially releasing IFNα to tumors and thereby expanding its clinical utility in treating cancer. Cleavage of a proprietary linker by tumor associated proteases controls the release of active IFNα into the tumor microenvironment. Here we describe the preclinical tumor activity, pharmacokinetic (PK) and pharmacodynamic (PD) profiles of JZP898 using a mouse specific analog of JZP898 (JZP898S). Targeted release of IFNα by JZP898S in syngeneic mouse tumor models increased tumor exposure relative to peripheral circulation, translating into greater achievable efficacy, both as a single agent and in combination with CPIs. JZP898S-induced antitumor activity correlated with immune cell activation in the TME and increased cytokine levels in the periphery; elevated peripheral cytokine levels correlated with increased JZP898S exposure. We observed increased number of activated cytotoxic T-cells and decreased number of regulatory cells within the TME. This effect on immune cells in the TME was extended a week beyond the last dose suggesting increased and sustained IFNα effects due to the conditional release of IFNα over time. Predictably, an IFNα gene expression profile was detected in treated tumors in a time and dose dependent manner and demonstrated a PK/PD relationship. From this data, we derived a JZP898-specific gene expression signature in tumors treated with JZP898S. These data support the utility and effectiveness of JZP898 as a novel mechanism to drive IFNα exposure in the TME and impact tumor growth while potentially attenuating IFNα associated tolerability and supports exploring the combinatorial effects with checkpoint inhibitors (CPIs). Citation Format: Ankur Karmokar, Emanuele Loro, Zhiling Zhang, Rao Mukavilli, Aparna Gupta, Kevin Trouba, Vian Amber, Robin C. Humphreys. JZP898, a conditionally activated interferon alpha, generates efficacy and robust TME engagement in syngeneic mouse models abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 470.

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Karmokar et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd3da79560c99a0a3204https://doi.org/10.1158/1538-7445.am2026-470
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