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Published on: October 27, 2020
Effect of transforming growth factor beta (TGF-β) receptor I kinase inhibitor on prostate cancer bone growth
Xinhai Wan1, Zhi-Gang Li, Jonathan M Yingling
1Department of Genitourinary Medical Oncology-Research, Unit 18-6, The University of Texas MD Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA.
Abstract:
Transforming growth factor beta 1 (TGF-β1) has been implicated in the pathogenesis of prostate cancer (PCa) bone metastasis. In this study, we tested the antitumor efficacy of a selective TGF-β receptor I kinase inhibitor, LY2109761, in preclinical models. The effect of LY2109761 on the growth of MDA PCa 2b and PC-3 human PCa cells and primary mouse osteoblasts (PMOs) was assessed in vitro by measuring radiolabeled thymidine incorporation into DNA. In vivo, the right femurs of male SCID mice were injected with PCa cells. We monitored the tumor burden in control- and LY2109761-treated mice with MRI analysis and the PCa-induced bone response with X-ray and micro-CT analyses. Histologic changes in bone were studied by performing bone histomorphometric evaluations. PCa cells and PMOs expressed TGF-β receptor I. TGF-β1 induced pathway activation (as assessed by induced expression of p-Smad2) and inhibited cell growth in PC-3 cells and PMOs but not in MDA PCa 2b cells. LY2109761 had no effect on PCa cells but induced PMO proliferation in vitro. As expected, LY2109761 reversed the TGF-β1-induced pathway activation and growth inhibition in PC-3 cells and PMOs. In vivo, LY2109761 treatment for 6weeks resulted in increased volume in normal bone and increased osteoblast and osteoclast parameters. In addition, LY2109761 treatment significantly inhibited the growth of MDA PCa 2b and PC-3 in the bone of SCID mice (p<0.05); moreover, it resulted in significantly less bone loss and change in osteoclast-associated parameters in the PC-3 tumor-bearing bones than in the untreated mice. In summary, we report for the first time that targeting TGF-β receptors with LY2109761 can control PCa bone growth while increasing the mass of normal bone. This increased bone mass in nontumorous bone may be a desirable side effect of LY2109761 treatment for men with osteopenia or osteoporosis secondary to androgen-ablation therapy, reinforcing the benefit of effectively controlling PCa growth in bone. Thus, targeting TGF-β receptor I is a valuable intervention in men with advanced PCa.
Insights
Targeting transforming growth factor beta 1 (TGF-β1) with LY2109761 effectively controls prostate cancer (PCa) bone metastasis. This treatment also enhances normal bone mass, offering a dual benefit for advanced PCa patients.
Area of Science:
- Oncology
- Bone Metastasis
- Pharmacology
Background:
- Transforming growth factor beta 1 (TGF-β1) is implicated in prostate cancer (PCa) bone metastasis.
- Selective TGF-β receptor I kinase inhibitors represent a potential therapeutic strategy.
Purpose of the Study:
- To evaluate the antitumor efficacy of the TGF-β receptor I kinase inhibitor LY2109761 in preclinical models of PCa bone metastasis.
- To assess the effects of LY2109761 on PCa cell growth and bone remodeling in vivo.
Main Methods:
- In vitro assessment of LY2109761 effects on PCa cells and primary mouse osteoblasts (PMOs) using thymidine incorporation.
- In vivo studies in SCID mice with PCa bone metastasis, monitoring tumor burden (MRI) and bone response (X-ray, micro-CT, histomorphometry).
Main Results:
- LY2109761 inhibited PCa cell growth in bone and reduced bone loss associated with PC-3 tumors.
- Treatment increased normal bone volume and osteoblast/osteoclast parameters in vivo.
- LY2109761 reversed TGF-β1-induced growth inhibition in sensitive cell lines and osteoblasts.
Conclusions:
- Targeting TGF-β receptor I with LY2109761 is a valuable intervention for controlling PCa bone growth.
- LY2109761 demonstrated significant antitumor efficacy in bone and improved normal bone mass, suggesting potential benefits for patients with bone complications.
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