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Updated: Mar 9, 2026

Intra-Cardiac Injection of Human Prostate Cancer Cells to Create a Bone Metastasis Xenograft Mouse Model
Published on: November 4, 2022
Cooperation among heterogeneous prostate cancer cells in the bone metastatic niche
K Shahriari1, F Shen1, A Worrede-Mahdi1
1Department of Pharmacology and Physiology, Drexel University College of Medicine, Philadelphia, PA, USA.
Abstract:
The growth of disseminated tumor cells into metastatic lesions depends on the establishment of a favorable microenvironment in the stroma of the target organs. Here we show that mice treated with anakinra, an antagonist of the interleukin (IL)-1β receptor (IL-1R), or harboring a targeted deletion of IL-1R are significantly less prone to develop bone tumors when inoculated in the arterial circulation with human prostate cancer (PCa) cells expressing IL-1β. Interestingly, human mesenchymal stem cells exposed in vitro to medium conditioned by IL-1β-expressing cancer cells responded by upregulating S100A4, a marker of cancer-associated fibroblasts (CAFs), and this effect was blocked by anakinra. Analogously, the stroma adjacent to skeletal metastases generated in mice by IL-1β-expressing cancer cells showed a dramatic increase in S100A4, COX-2 and the alteration of 30 tumor-related genes as measured by Nanostring analysis. These effects were not observed in the stroma associated with the rare and much smaller metastases generated by the same cells in IL-1R knockout animals, confirming that tumor-secreted IL-1β generates skeletal CAFs and conditions the surrounding bone microenvironment. In skeletal lesions from patients with metastatic PCa, histological and molecular analyses revealed that IL-1β is highly expressed in cancer cells in which the androgen receptor (AR) is not detected (AR-), whereas this cytokine is uniformly absent in the AR-positive (AR+) metastatic cells. The stroma conditioned by IL-1β-expressing cancer cells served as a supportive niche also for coexisting IL-1β-lacking cancer cells, which are otherwise unable to generate tumors after independently seeding the skeleton of mice. This niche is established very early following tumor seeding and hints to a role of IL-1β in promoting early colonization of PCa at the skeletal level.
Insights
Interleukin-1 beta (IL-1β) secreted by prostate cancer cells promotes bone metastasis by creating a supportive microenvironment. Blocking the IL-1 beta receptor (IL-1R) with anakinra inhibits this process, reducing tumor growth.
Area of Science:
- Oncology
- Immunology
- Cell Biology
Background:
- Metastasis growth relies on a supportive microenvironment.
- Prostate cancer (PCa) bone metastasis is a significant clinical challenge.
Purpose of the Study:
- To investigate the role of interleukin-1 beta (IL-1β) in prostate cancer bone metastasis.
- To determine if IL-1β shapes the bone microenvironment to support tumor growth.
Main Methods:
- Mice were treated with anakinra (IL-1 receptor antagonist) or used as IL-1 receptor knockout models.
- Prostate cancer cells expressing IL-1β were inoculated into the arterial circulation.
- In vitro studies used human mesenchymal stem cells exposed to cancer cell-conditioned medium.
- Stromal gene expression was analyzed using Nanostring analysis.
- Human metastatic PCa lesions were analyzed for IL-1β and androgen receptor (AR) expression.
Main Results:
- Mice lacking IL-1 receptor function showed significantly reduced bone tumor development.
- IL-1β-expressing cancer cells induced upregulation of S100A4 in mesenchymal stem cells, a CAF marker, an effect blocked by anakinra.
- The stroma of bone metastases from IL-1β-expressing cells showed increased S100A4, COX-2, and altered gene expression.
- IL-1β was highly expressed in AR-negative metastatic PCa cells but absent in AR-positive cells.
- The IL-1β-conditioned stroma supported the growth of coexisting IL-1β-lacking cancer cells.
Conclusions:
- Tumor-secreted IL-1β plays a critical role in establishing a pro-metastatic bone microenvironment.
- IL-1β promotes the formation of cancer-associated fibroblasts (CAFs) in the bone stroma.
- IL-1β may be crucial for the early colonization of the skeleton by prostate cancer cells.
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