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Updated: Jul 22, 2026

Models of Bone Metastasis
Published on: September 4, 2012
Pathophysiologic interactions in skeletal metastasis
F W Orr1, J Lee, W C Duivenvoorden
1Department of Pathology, University of Manitoba, Winnipeg, Canada.
Background:
This review summarizes evidence that the formation of bone metastases is the result of multiple synergistic cellular and molecular interactions between metastatic cells and the unique microenvironment in bone.
Methods:
Molecular technologies have been used to detect cancer cells in bone and to define their genotypic and phenotypic properties. Bone organ cultures have been employed to analyze the ability of tumor cells to modulate bone resorption and to study the effects of resorption products on the phenotypic properties of cancer cells. Experimental models of bone metastasis provide the ability to examine the effects of modulating specific host or tumor properties in vivo by quantifying their effects on the formation of bone tumors.
Results:
By means of the blood stream, cells from many common neoplasms seed bone marrow as an early clinical event. The subsequent growth of these cells into clinically significant metastatic lesions is associated with their ability to stimulate bone resorption through osteoclasts and macrophages or through a direct action on bone. In turn, the products of bone resorption, which include matrix-derived growth factors, act on the tumor cells to stimulate the expression of properties that promote their metastatic competence. These include the induction of integrin adhesion molecules, the stimulation of cell motility and chemotaxis, the enhanced expression of matrix metalloproteinases, and the stimulation of tumor cell growth.
Conclusions:
The interdependency of tumor cells and bone was recognized by Steven Paget over 100 years ago, and it provides a rational basis for the development of current therapeutic strategies against bone metastasis.
Insights
Bone metastasis involves complex interactions between cancer cells and the bone microenvironment. Tumor cells stimulate bone resorption, and bone-derived factors enhance cancer cell growth and spread.
Area of Science:
- Oncology
- Cell Biology
- Bone Biology
Background:
- Bone metastasis formation is a complex process driven by synergistic interactions between cancer cells and the bone microenvironment.
- Understanding these interactions is crucial for developing effective therapeutic strategies.
Purpose of the Study:
- To review the current evidence on the cellular and molecular mechanisms underlying bone metastasis.
- To highlight the bidirectional communication between tumor cells and the bone microenvironment.
Main Methods:
- Utilizing molecular technologies to characterize bone-metastasizing cancer cells.
- Employing bone organ cultures to study tumor cell-bone interactions and bone resorption.
- Using experimental models of bone metastasis to investigate therapeutic interventions.
Main Results:
- Cancer cells frequently seed the bone marrow, initiating metastasis.
- Tumor cells stimulate bone resorption via osteoclasts and macrophages, while bone resorption products promote cancer cell growth, motility, and invasiveness.
- This creates a self-perpetuating cycle that drives the progression of bone metastases.
Conclusions:
- The interdependency between tumor cells and bone, recognized over a century ago, remains a fundamental concept.
- This understanding provides a rationale for developing targeted therapies against bone metastasis.
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