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Intra-iliac Artery Injection for Efficient and Selective Modeling of Microscopic Bone Metastasis
Published on: September 26, 2016
Future directions of bone-targeted therapy for metastatic breast cancer
Tomifumi Onishi1, Naoki Hayashi, Richard L Theriault
1Christus Hospital-St Elizabeth, 2830 Calder Street, Beaumont, TX 77702, USA.
Abstract:
Bone is the most common metastatic site for breast cancer, and bone metastases can cause pain as well as risk of pathological fractures. Emerging treatments for metastatic bone disease have arisen from advances in our understanding of the unique cellular and molecular mechanisms that contribute to bone metastasis. The interaction between tumor cells and the bone microenvironment results in a 'vicious cycle' that increases both bone destruction and tumor burden. The tumor secretes factors, such as parathyroid hormone-related peptide, that stimulate osteoclastogenesis. Similarly, the bone stroma produces growth factors, such as transforming growth factor β, that promote tumor growth in bone. Therapeutic targeting of these microenvironmental factors is under intensive investigation. Other attractive therapeutic targets include signaling molecules, such as receptor activator of nuclear factor κB ligand, Src kinase, and cathepsin K, all of which regulate osteoclast function, and chemokine receptor 4, which is involved in the homing of tumor cells to bone. In this Review, we describe the progress and future directions of novel bone-targeted therapies that may reduce or prevent destructive bone metastasis from breast cancer. Novel modalities for predicting and monitoring treatment response will also be described.
Insights
New breast cancer treatments target the bone microenvironment to prevent metastasis and fractures. Research focuses on blocking tumor cell and bone cell interactions for better outcomes.
Area of Science:
- Oncology
- Bone Biology
- Cancer Metastasis
Background:
- Breast cancer commonly metastasizes to bone, causing pain and fractures.
- Tumor cells and the bone microenvironment create a destructive cycle.
- Understanding these interactions is key to developing new therapies.
Purpose of the Study:
- To review novel bone-targeted therapies for breast cancer metastasis.
- To discuss future directions in treating bone metastases.
- To explore methods for predicting and monitoring treatment response.
Main Methods:
- Review of current literature on bone metastasis and targeted therapies.
- Analysis of cellular and molecular mechanisms in the bone microenvironment.
- Identification of key signaling pathways and therapeutic targets.
Main Results:
- The tumor-bone microenvironment interaction drives metastasis.
- Targeting factors like parathyroid hormone-related peptide and transforming growth factor β is promising.
- Inhibiting osteoclast function (RANKL, Src kinase, cathepsin K) and tumor cell homing (CXCR4) are key strategies.
Conclusions:
- Novel bone-targeted therapies offer potential to reduce or prevent breast cancer bone metastasis.
- Targeting the tumor-bone microenvironment is a critical therapeutic strategy.
- Advances in monitoring treatment response are essential for effective management.
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