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Axis of evil: molecular mechanisms of cancer metastasis
Thomas Bogenrieder1, Meenhard Herlyn
1The Wistar Institute, 3601 Spruce Street, Philadelphia, PA 19104, USA.
Abstract:
Although the genetic basis of tumorigenesis may vary greatly between different cancer types, the cellular and molecular steps required for metastasis are similar for all cancer cells. Not surprisingly, the molecular mechanisms that propel invasive growth and metastasis are also found in embryonic development, and to a less perpetual extent, in adult tissue repair processes. It is increasingly apparent that the stromal microenvironment, in which neoplastic cells develop, profoundly influences many steps of cancer progression, including the ability of tumor cells to metastasize. In carcinomas, the influences of the microenvironment are mediated, in large part, by bidirectional interactions (adhesion, survival, proteolysis, migration, immune escape mechanisms lymph-/angiogenesis, and homing on target organs) between epithelial tumor cells and neighboring stromal cells, such as fibroblasts as well as endothelial and immune cells. In this review, we summarize recent advances in understanding the molecular mechanisms that govern this frequently lethal metastatic progression along an axis from primary tumor to regional lymph nodes to distant organ sites. Affected proteins include growth factor signaling molecules, chemokines, cell-cell adhesion molecules (cadherins, integrins) as well as extracellular proteases (matrix metalloproteinases). We then discuss promising new therapeutic approaches targeting the microenvironment. We note, however, that there is still too little knowledge of how the many events are coordinated and integrated by the cancer cell, with conspiratorial help by the stromal component of the host. Before drug development can proceed with a legitimate chance of success, significant gaps in basic knowledge need to be filled.
Insights
Cancer metastasis involves similar cellular steps across types, influenced by the tumor microenvironment. Understanding these interactions is key to developing new therapies targeting cancer progression.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Cancer metastasis shares cellular and molecular mechanisms with embryonic development and tissue repair.
- The tumor microenvironment significantly influences cancer progression and metastasis.
- Bidirectional interactions between tumor cells and stromal cells mediate microenvironmental influences.
Purpose of the Study:
- To review recent advances in understanding the molecular mechanisms of cancer metastasis.
- To explore the role of the tumor microenvironment in metastatic progression.
- To discuss novel therapeutic strategies targeting the tumor microenvironment.
Main Methods:
- Review of current scientific literature on cancer metastasis and the tumor microenvironment.
- Analysis of molecular mechanisms including growth factor signaling, chemokines, cell adhesion molecules, and proteases.
- Discussion of therapeutic approaches targeting stromal interactions.
Main Results:
- Metastasis involves coordinated interactions between tumor cells and stromal components like fibroblasts, endothelial cells, and immune cells.
- Key molecular players include growth factors, chemokines, cadherins, integrins, and matrix metalloproteinases.
- The tumor microenvironment profoundly impacts invasion, migration, immune escape, and homing to distant sites.
Conclusions:
- Despite advances, significant knowledge gaps exist in understanding the coordination of metastatic events.
- Targeting the tumor microenvironment offers promising therapeutic avenues.
- Further basic research is crucial for successful drug development against cancer metastasis.
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