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Evaluation of the In vivo Antitumor Activity of Polyanhydride IL-1α Nanoparticles
Published on: June 28, 2021
IL1 Receptor Antagonist Inhibits Pancreatic Cancer Growth by Abrogating NF-κB Activation
Zhuonan Zhuang1, Huai-Qiang Ju2, Mitzi Aguilar3
1Department of Molecular and Cellular Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas. Department of General Surgery, Beijing Tsinghua Changgung Hospital Medical Center, Tsinghua University, Beijing, China.
Purpose:
Constitutive NF-κB activation is identified in about 70% of pancreatic ductal adenocarcinoma (PDAC) cases and is required for oncogenic KRAS-induced PDAC development in mouse models. We sought to determine whether targeting IL-1α pathway would inhibit NF-κB activity and thus suppress PDAC cell growth.
Experimental Design:
We determined whether anakinra, a human IL-1 receptor (rhIL-1R) antagonist, inhibited NF-κB activation. Assays for cell proliferation, migration, and invasion were performed with rhIL-1R antagonist using the human PDAC cell lines AsPc1, Colo357, MiaPaCa-2, and HPNE/K-ras(G12V)/p16sh. In vivo NF-κB activation-dependent tumorigenesis was assayed using an orthotopic nude mouse model (n = 20, 5 per group) treated with a combination of gemcitabine and rhIL-1RA.
Results:
rhIL-1R antagonist treatment led to a significant decrease in NF-κB activity. PDAC cells treated with rhIL-1R antagonist plus gemcitabine reduced proliferation, migration, and invasion as compared with single gemcitabine treatment. In nude mice, rhIL-1R antagonist plus gemcitabine significantly reduced the tumor burden (gemcitabine plus rhIL-1RA vs. control, P = 0.014).
Conclusions:
We found that anakinra, an FDA-approved drug that inhibits IL-1 receptor (IL-1R), when given with or without gemcitabine, can reduce tumor growth by inhibiting IL1α-induced NF-κB activity; this result suggests that it is a useful therapeutic approach for PDAC.
Insights
Targeting the IL-1 receptor pathway with anakinra significantly reduced pancreatic ductal adenocarcinoma (PDAC) cell growth and tumor burden. This approach inhibits IL-1α-induced NF-κB activity, offering a potential new therapy for PDAC.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Constitutive NF-κB activation is prevalent in pancreatic ductal adenocarcinoma (PDAC), driving oncogenic KRAS-induced tumor development.
- The IL-1α pathway is implicated in NF-κB activation, suggesting it as a potential therapeutic target in PDAC.
Purpose of the Study:
- To investigate if targeting the IL-1α pathway with anakinra inhibits NF-κB activity.
- To determine the efficacy of anakinra in suppressing PDAC cell growth, migration, and invasion.
- To evaluate the therapeutic potential of anakinra in combination with gemcitabine for PDAC treatment.
Main Methods:
- Assessed NF-κB activation inhibition by anakinra, an IL-1 receptor antagonist (rhIL-1R antagonist).
- Conducted cell proliferation, migration, and invasion assays using PDAC cell lines treated with rhIL-1R antagonist.
- Evaluated in vivo tumor growth in an orthotopic nude mouse model using a combination of gemcitabine and rhIL-1RA.
Main Results:
- Anakinra treatment significantly decreased NF-κB activity.
- Combined treatment with rhIL-1R antagonist and gemcitabine reduced PDAC cell proliferation, migration, and invasion compared to gemcitabine alone.
- Significant reduction in tumor burden was observed in nude mice treated with rhIL-1R antagonist and gemcitabine.
Conclusions:
- Anakinra, an FDA-approved drug, effectively inhibits IL-1α-induced NF-κB activity in PDAC.
- Combination therapy with anakinra and gemcitabine shows promise in reducing PDAC tumor growth.
- Targeting the IL-1 receptor pathway represents a viable therapeutic strategy for pancreatic ductal adenocarcinoma.
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