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Updated: Sep 13, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
Highly selective HPK1 inhibitor NDI-101150 mediates immune cell activation and robust antitumor responses, distinct
David N Ciccone1, Fu-Shan Kuo1, Scott Boiko1
1Nimbus Therapeutics Inc, Boston, Massachusetts, USA.
Background:
HPK1 (hematopoietic progenitor kinase 1, MAP4K1), an MAP4K serine/threonine kinase family member, is a negative regulator of immune cell function. Genetic HPK1 kinase inactivation or knockout in mice leads to immune cell activation and tumor growth suppression, providing a strong rationale for targeting HPK1 kinase activity as an immuno-oncology therapy.
Methods:
A structure-guided drug design approach was used to identify a highly potent and selective small molecule inhibitor of HPK1 kinase activity, NDI-101150. The effect of NDI-101150 in vitro was evaluated on multiple immune cell types and in multiple syngeneic tumor models in vivo.
Results:
Treatment with NDI-101150 enhanced T-cell activation in immune-suppressive or exhausted conditions, augmented B-cell activation, and upregulated dendritic cell function, including in settings where anti-programmed cell death protein-1 (PD-1) did not have an effect. These effects translated into significant inhibition of tumor growth in several syngeneic tumor models, including models that are less responsive to anti-PD-1. Importantly, NDI-101150 alone or in combination with anti-PD-1 mediated a highly effective antitumor response on tumor re-challenge, indicating that NDI-101150 induces immune memory against the tumor.
Conclusion:
The data presented here indicate that a small molecule kinase inhibitor of HPK1 results in broad immune cell activation, leading to an efficacious antitumor immune response.
Insights
A novel small molecule inhibitor, NDI-101150, targets hematopoietic progenitor kinase 1 (HPK1) to activate immune cells. This immuno-oncology therapy demonstrates potent anti-tumor effects and induces immune memory.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Hematopoietic progenitor kinase 1 (HPK1) is a serine/threonine kinase that negatively regulates immune cell function.
- Inactivating HPK1 in mice enhances immune cell activity and suppresses tumor growth, suggesting HPK1 as a therapeutic target in immuno-oncology.
Purpose of the Study:
- To identify and characterize a potent and selective small molecule inhibitor of HPK1 kinase activity.
- To evaluate the efficacy of the HPK1 inhibitor NDI-101150 in preclinical cancer models.
Main Methods:
- Employed a structure-guided drug design approach to discover NDI-101150.
- Assessed NDI-101150's effects on various immune cells in vitro and in syngeneic tumor models in vivo.
Main Results:
- NDI-101150 enhanced T-cell, B-cell, and dendritic cell activation, even in immune-suppressive conditions or where anti-PD-1 therapy was ineffective.
- NDI-101150 demonstrated significant tumor growth inhibition in multiple models, including those resistant to anti-PD-1.
- The inhibitor induced durable anti-tumor immune memory upon tumor re-challenge.
Conclusions:
- Small molecule inhibition of HPK1 kinase leads to broad immune cell activation.
- This activation results in an effective anti-tumor immune response, highlighting NDI-101150's potential as an immuno-oncology therapeutic.
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