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Updated: May 21, 2025

A Real-time Potency Assay for Chimeric Antigen Receptor T Cells Targeting Solid and Hematological Cancer Cells
Published on: November 12, 2019
JMC14: a novel dual PI3Kδ/CSF1R inhibitor with potent antitumor activity in hematological and solid tumors
1Division of Anti-tumor Pharmacology, State Key Laboratory of Chemical Biology, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.
Abstract:
PI3Kδ, predominantly expressed in immune cells and markedly dysregulated in B-cell malignancies, emerges as a promising and well-validated therapeutic target in hematologic cancers. Meanwhile, CSF1R regulates the formation and polarization of tumor-associated macrophages (TAMs), facilitating immune suppression and tumor progression in various solid tumors. Although targeting PI3Kδ or CSF1R has shown promise, the clinical application is often constrained by off-target effects, toxicity, and limited efficacy, particularly in solid malignancies. In this study, we identified JMC14, a novel dual inhibitor targeting PI3Kδ and CSF1R with a distinct structure and favorable selectivity among human kinome, yielding IC50 values of 12 nM against PI3Kδ and 143 nM against CSF1R, respectively. JMC14 preferentially inhibited PI3Kδ-mediated signaling at the cellular level and exhibited robust antiproliferative activity across 10 lines of diffuse large B-cell lymphoma (DLBCL) cells, outperforming the approved PI3Kδ inhibitor idelalisib. Notably, its efficacy negatively correlated with the PI3Kα expression among the cell lines tested, suggesting a compensatory pathway mediated by PI3Kα. Daily oral administration of JMC14 (10, 30, or 100 mg/kg, for 21 days) dose-dependently suppressed tumor progression in xenografts derived from TMD8 cells and DLBCL patients, accompanied by good tolerance. Additionally, M-NFS-60 myeloid leukemia cells, which are dependent on the CSF-1-CSF1R axis for survival and proliferation, were effectively inhibited by JMC14 both in vitro and in vivo, further validating its inhibitory activity targeting CSF1R. Furthermore, JMC14 demonstrated potent antitumor activity in murine triple-negative breast cancer (TNBC), which was associated with its activity to reshape the immune microenvironment by reducing M2-like TAMs, enhancing CD8+ T cell infiltration. Collectively, these findings establish JMC14 as a potent dual PI3Kδ/CSF1R inhibitor with remarkable efficacy against both hematologic and solid malignancies with hyperactivation of PI3Kδ and/or CSF1R, highlighting the potential of JMC14 as a useful probe to dissect the interaction of PI3Kδ and CSF1R in tumor progression and immune reprogramming.
Insights
A novel dual inhibitor, JMC14, effectively targets PI3Kδ and CSF1R, showing potent anticancer activity in both blood cancers and solid tumors like triple-negative breast cancer.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Phosphoinositide 3-kinase delta (PI3Kδ) is dysregulated in B-cell malignancies.
- Colony-stimulating factor 1 receptor (CSF1R) regulates tumor-associated macrophages (TAMs) in solid tumors.
- Existing PI3Kδ or CSF1R inhibitors have limitations in clinical application, including toxicity and efficacy.
Purpose of the Study:
- To identify and characterize JMC14, a novel dual inhibitor of PI3Kδ and CSF1R.
- To evaluate the efficacy of JMC14 in preclinical models of hematologic and solid malignancies.
- To investigate the mechanism of action of JMC14 in modulating the tumor immune microenvironment.
Main Methods:
- Synthesis and structural characterization of JMC14.
- In vitro kinase assays to determine IC50 values for PI3Kδ and CSF1R.
- Antiproliferative assays using diffuse large B-cell lymphoma (DLBCL) cell lines.
- In vivo studies using DLBCL xenografts and murine triple-negative breast cancer (TNBC) models.
- Flow cytometry and immunohistochemistry to assess immune cell infiltration and TAM polarization.
Main Results:
- JMC14 demonstrated potent inhibition of PI3Kδ (IC50 = 12 nM) and CSF1R (IC50 = 143 nM) with favorable selectivity.
- JMC14 exhibited robust antiproliferative activity against DLBCL cell lines, outperforming idelalisib.
- In vivo studies showed dose-dependent suppression of tumor progression in DLBCL xenografts and potent antitumor activity in TNBC models.
- JMC14 reshaped the immune microenvironment in TNBC by reducing M2-like TAMs and enhancing CD8+ T cell infiltration.
Conclusions:
- JMC14 is a potent dual PI3Kδ/CSF1R inhibitor with significant preclinical efficacy in hematologic and solid tumors.
- JMC14 demonstrates potential for treating malignancies characterized by PI3Kδ and/or CSF1R hyperactivation.
- JMC14 may serve as a valuable tool for studying the interplay between PI3Kδ, CSF1R, tumor progression, and immune reprogramming.
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