Related Experiment Video
Updated: Aug 28, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Osteoblast Secretome Modulated by Abiraterone Treatment Affects Castration Resistant Prostate Cancer Cell
Michele Iuliani1, Sonia Simonetti1, Giulia Ribelli1
1Department of Medical Oncology, Campus Bio-Medico University of Rome, 00128 Rome, Italy.
Abstract:
Abiraterone is a selective inhibitor of androgen biosynthesis approved for the treatment of metastatic patients affected by castration-resistant or castration-sensitive prostate cancer. Intriguingly, clinical data revealed that abiraterone also delayed disease progression in bone improving bone-related endpoints. Our group has previously demonstrated in vitro a direct effect of abiraterone on osteoclast and osteoblast function suggesting its ability to modulate bone microenvironment. Here, we performed an extensive proteomic analysis to investigate how abiraterone influences osteoblast cell secretome and, consequently, osteoblast/prostate cancer cells interaction. A panel of 507 soluble molecules were analyzed in osteoblast conditioned media (OCM) obtained from osteoblast treated or not with abiraterone. Subsequently, OCM was added to prostate cancer cells to investigate its potential effect on prostate cancer cell proliferation and androgen receptor (AR) activation status. Out of 507 screened molecules, 39 of them were differentially expressed in OCM from osteoblasts treated with abiraterone (OCM ABI) compared to OCM obtained from untreated OBs (OCM CTRL). Pathway enrichment analysis revealed that abiraterone down-modulated the release of specific osteoblast soluble factors, positively associated with cell proliferation pathways (false discovery rate adjusted p-value = 0.0019). In vitro validation data showed that OCM ABI treatment significantly reduced cancer proliferation in C4-2B cells (p = 0.022), but not in AR- negative PC-3 cells. Moreover, we also found a reduction in AR activation in C4-2B cells (p = 0.017) confirming the "indirect" anti-tumor AR-dependent effect of abiraterone mediated by osteoblasts. This study provides the first evidence of an additional antitumor effect of abiraterone through the modulation of multiple osteoblast proliferative signals.
Insights
Abiraterone, used for prostate cancer, also impacts bone health. This study shows abiraterone alters bone cells, reducing signals that fuel cancer growth and androgen receptor activation in prostate cancer cells.
Area of Science:
- Oncology
- Bone Biology
- Proteomics
Background:
- Abiraterone acetate is a standard treatment for metastatic prostate cancer.
- Clinical observations suggest abiraterone acetate benefits bone health in prostate cancer patients.
- Previous in vitro studies indicated abiraterone acetate directly affects osteoclast and osteoblast function.
Purpose of the Study:
- To investigate the proteomic changes in osteoblast-conditioned media following abiraterone acetate treatment.
- To determine the effect of abiraterone acetate-modulated osteoblast secretome on prostate cancer cell proliferation and androgen receptor (AR) activity.
Main Methods:
- Proteomic analysis of osteoblast-conditioned media (OCM) from abiraterone acetate-treated and untreated osteoblasts.
- Treatment of prostate cancer cell lines (C4-2B and PC-3) with OCM.
- Assessment of prostate cancer cell proliferation and AR activation status.
Main Results:
- 39 out of 507 screened soluble molecules were differentially expressed in OCM from abiraterone acetate-treated osteoblasts.
- Abiraterone acetate down-modulated osteoblast-secreted factors associated with cell proliferation pathways.
- OCM from abiraterone acetate-treated osteoblasts significantly reduced proliferation and AR activation in AR-positive C4-2B prostate cancer cells, but not in AR-negative PC-3 cells.
Conclusions:
- Abiraterone acetate exerts an indirect, AR-dependent anti-tumor effect on prostate cancer cells by modulating the osteoblast secretome.
- This study reveals a novel mechanism of action for abiraterone acetate involving the bone microenvironment.
- Abiraterone acetate's modulation of osteoblast-derived proliferative signals contributes to its anti-cancer efficacy.
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Abnormal Proliferation
Targeted Cancer Therapies
There are several types of targeted therapies against...
Inhibition of Cdk Activity

