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Tasquinimod inhibits prostate cancer growth in bone through alterations in the bone microenvironment
Lisa U Magnusson1, Malin Hagberg Thulin1, Pascale Plas2
1Sahlgrenska Cancer Center, Department of Urology, Institute of Clinical Sciences, Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden.
Background:
Tasquinimod (ABR-215050) is an orally active quinoline-3-carboxamide analog that inhibits occurrence of experimental metastasis and delays disease progression of castration resistant prostate cancer in humans. Its mechanism of action is not fully elucidated, but previous studies show immunomodulatory and anti-angiogenic effects. The aim of the present study was to investigate the tumor inhibiting effect of tasquinimod in bone of castrated mice as well as to elucidate its working mechanism related to bone microenvironment.
Methods:
Effects of tasquinimod on prostate cancer metastasis to bone was studied in an intratibial xenograft model. Animals were treated with tasquinimod and tumor establishment and growth, immunological status, as well as markers for bone remodeling were analyzed. Direct effects of tasquinimod on osteoblasts were studied in vitro.
Results:
Establishment and growth of tumors in the bone after intratibial implantation in castrated mice was suppressed by tasquinimod treatment. The treatment effect was linked to decreased potential for immunosuppression in the pre-metastatic niche in bone (lower levels of CD206 and Arg1 expression in combination with increased iNOS expression) as well as in the tumor microenvironment (less Gr1 and CD206 staining). The shift to a pro-inflammatory, anti-tumorigenic milieu was also reflected in serum by increased levels of IFN-γ, CCL4, IL-5, LIX, IP-10, and MCP-1 as well as decreased TGF-β. Tasquinimod treatment also affected expression of factors involved in the pre-metastatic niche in the bone microenvironment (Lox, Cdh2, Cdh11, and Cxcl12). In addition, tasquinimod treatment caused a decreased osteogenic response indicated by decreased expression of Ocn, Runx2, and Col1a2 and increased expression of osteoclast stimulating CSF2. In vitro studies on mouse osteoblasts showed impaired osteoblast mineralization upon tasquinimod treatment.
Conclusions:
The present study shows that tasquinimod reduces establishment and progression of tumor growth in bone likely through a combination of effects on the pre-metastatic niche, homing, immunological status, and osteogenesis. It was concluded that tasquinimod interferes with the metastatic process, presumably by inhibition of tumor establishment. Hence, our data suggest that tasquinimod might be most effective in inhibiting the occurrence of new metastatic lesions.
Insights
Tasquinimod suppresses prostate cancer growth in bone by modulating the immune microenvironment and osteogenesis. This quinoline-3-carboxamide analog inhibits tumor establishment and progression, suggesting efficacy in preventing new bone metastases.
Area of Science:
- Oncology
- Bone Metastasis Research
- Immunology
Background:
- Tasquinimod (ABR-215050) is an oral quinoline-3-carboxamide analog investigated for castration-resistant prostate cancer.
- Previous research indicates tasquinimod possesses immunomodulatory and anti-angiogenic properties.
- Its precise mechanism, particularly in the bone microenvironment, requires further elucidation.
Purpose of the Study:
- To investigate the tumor-inhibiting effects of tasquinimod in the bone microenvironment of castrated mice.
- To elucidate the mechanisms underlying tasquinimod's action, focusing on immune and bone remodeling aspects.
Main Methods:
- An intratibial xenograft model was used to study tasquinimod's effects on prostate cancer bone metastasis.
- Analysis included tumor establishment and growth, immunological status, and bone remodeling markers.
- In vitro studies assessed direct effects on osteoblasts.
Main Results:
- Tasquinimod suppressed tumor establishment and growth in bone xenografts.
- Treatment modulated the immune microenvironment by reducing immunosuppressive markers (CD206, Arg1) and increasing pro-inflammatory markers (iNOS, IFN-γ).
- Tasquinimod impacted bone remodeling by decreasing osteogenic markers (Ocn, Runx2) and increasing osteoclast-stimulating factors (CSF2), with impaired osteoblast mineralization observed in vitro.
Conclusions:
- Tasquinimod reduces bone tumor growth by influencing the pre-metastatic niche, immune status, and osteogenesis.
- The drug interferes with the metastatic process, likely by inhibiting tumor establishment.
- Data suggest tasquinimod's potential efficacy in preventing new metastatic lesions in bone.
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