Related Experiment Video
Updated: Sep 18, 2025

Evaluation of the In vivo Antitumor Activity of Polyanhydride IL-1α Nanoparticles
Published on: June 28, 2021
Interleukin-18 (IL-18) engineered for half-life extension and resistance to IL-18 binding protein (IL-18BP) to
Kristiana H Dreaden1, Su-Ping Pearson1, Pinar S Gurel1
1Mural Oncology Inc., 852 Winter Street, Waltham, MA 02451, United States.
Recombinant interleukin-18 (IL-18) holds promise as a therapeutic for oncology, as a robust activator of adaptive and innate immune cells and a potent producer of IFN-γ. However, clinical success has been limited due to rapid upregulation of the natural IL-18 inhibitor, IL-18 binding protein (IL-18BP), and fast systemic clearance of active IL-18, unbound to IL-18BP. To overcome these limitations, human IL-18 and mouse orthologs were engineered with resistance to IL-18BP and extended half-life by fusion to an Fc scaffold, with the goal of creating an improved IL-18-based therapeutic. IL-18 variants with a range of potencies showed no detectable binding to IL-18BP and retained full biological activity in the presence of super-physiological levels of IL-18BP. Pharmacokinetic studies comparing the mouse orthologs with a "naked" IL-18BP resistant tool IL-18 variant confirmed the importance of half-life extension. Importantly, the mouse Fc orthologs exhibited stronger and more durable TH1 cytokine production and expansion of cytotoxic NK cells and effector CD8+ T cells when compared to the naked IL-18 variant. Remarkably, mouse engineered IL-18 variants administered once a week demonstrated strong tumor growth inhibition and improved survival compared to vehicle treated mice in multiple syngeneic tumor models. Human IL-18 variants dosed in humanized mice mirrored in vivo findings from mouse orthologs, displaying extended pharmacokinetics and durable upregulation of serum TH1 cytokines. These promising preclinical results highlight engineered IL-18 solutions that resist IL-18BP binding and extend half-life, unlocking its full potential for sustained anti-cancer immune responses.
Recombinant interleukin-18 (IL-18) holds promise as a therapeutic for oncology, as a robust activator of adaptive and innate immune cells and a potent producer of IFN-γ. However, clinical success has been limited due to rapid upregulation of the natural IL-18 inhibitor, IL-18 binding protein (IL-18BP), and fast systemic clearance of active IL-18, unbound to IL-18BP. To overcome these limitations, human IL-18 and mouse orthologs were engineered with resistance to IL-18BP and extended half-life by fusion to an Fc scaffold, with the goal of creating an improved IL-18-based therapeutic. IL-18 variants with a range of potencies showed no detectable binding to IL-18BP and retained full biological activity in the presence of super-physiological levels of IL-18BP. Pharmacokinetic studies comparing the mouse orthologs with a "naked" IL-18BP resistant tool IL-18 variant confirmed the importance of half-life extension. Importantly, the mouse Fc orthologs exhibited stronger and more durable TH1 cytokine production and expansion of cytotoxic NK cells and effector CD8+ T cells when compared to the naked IL-18 variant. Remarkably, mouse engineered IL-18 variants administered once a week demonstrated strong tumor growth inhibition and improved survival compared to vehicle treated mice in multiple syngeneic tumor models. Human IL-18 variants dosed in humanized mice mirrored in vivo findings from mouse orthologs, displaying extended pharmacokinetics and durable upregulation of serum TH1 cytokines. These promising preclinical results highlight engineered IL-18 solutions that resist IL-18BP binding and extend half-life, unlocking its full potential for sustained anti-cancer immune responses.
More Related Videos
07:20Ex vivo Expansion of Tumor-reactive T Cells by Means of Bryostatin 1/Ionomycin and the Common Gamma Chain Cytokines Formulation
Published on: January 14, 2011
08:16An IL-8 Transiently Transgenized Mouse Model for the In Vivo Long-term Monitoring of Inflammatory Responses
Published on: July 7, 2017
Related Concept Videos
Tumor Immunotherapy
Targeted Cancer Therapies
There are several types of targeted therapies against...