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Tissue Engineering of Tumor Stromal Microenvironment with Application to Cancer Cell Invasion
Published on: March 18, 2014
Retinoid-mediated suppression of tumor invasion and matrix metalloproteinase synthesis
M P Schoenermark1, T I Mitchell, J L Rutter
1Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
Abstract:
Cancer mortality usually results from the tumor invading the local environment and metastasizing to vital organs, e.g. liver, lung, and brain. Degradation of the extracellular matrix is, therefore, the sine qua non of tumor cell invasion. this degradation is mediated mainly by MMPs, and thus, inhibition of MMP synthesis is a target for anticancer agents. Tumor cells must traverse both the basement membrane (type IV collagen) and the interstitial stroma (type I collagen). Therefore, we used scanning electron microscopy to examine the invasive behavior of several aggressive tumor cell lines, A2058 melanoma cells, and SCC and FaDu squamous cell carcinomas through these matrices; and we monitored the ability of all-trans retinoic acid and several RAR-specific ligands to block invasion. We demonstrate that several retinoids, which are specific RAR alpha, beta, or gamma agonists/antagonists, selectively inhibited MMP synthesis in the three tumor cell lines. However, there was not a common pattern of MMP inhibition by a particular retinoid. For instance, a RAR alpha antagonist suppressed MMP-1 and MMP-2 synthesis in the melanoma cell line, but not in the FaDu or SCC-25 cells. On the other hand, synthesis of MMP-1 and MMP-9 by the FaDu cells was affected hardly at all, while a RAR gamma antagonist reduced the levels of MMP-2. Only all-trans retinoic acid reduced MMP-1 synthesis in these cells. We postulate that the differences may be related to a differential pattern of RAR expression in each of these cells, and that the RARs expressed by each cell line may not be targets of these RAR specific compounds. All-trans retinoic acid is a pan ligand, binding to all three RARs and, therefore, may modulate gene expression more generally. We conclude that the power of these new ligands lies in their specificity, which can be directed towards modulating expression of certain RARs and, thus, of certain MMPs. By blocking MMP synthesis, retinoids may be effective in cancer therapy by decreasing tumor invasiveness.
Insights
Retinoids can selectively inhibit matrix metalloproteinase (MMP) synthesis in aggressive tumor cells. This targeted MMP inhibition by retinoids offers a promising strategy for reducing cancer invasion and metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cancer mortality is often due to tumor invasion and metastasis.
- Extracellular matrix degradation, mediated by matrix metalloproteinases (MMPs), is crucial for tumor cell invasion.
- Targeting MMP synthesis is a key strategy for developing anticancer agents.
Purpose of the Study:
- To investigate the invasive behavior of aggressive tumor cell lines through extracellular matrices.
- To evaluate the efficacy of all-trans retinoic acid and RAR-specific ligands in blocking tumor cell invasion.
- To determine the effects of retinoids on MMP synthesis in different cancer cell lines.
Main Methods:
- Scanning electron microscopy was used to examine tumor cell invasion through basement membrane (type IV collagen) and interstitial stroma (type I collagen).
- Aggressive tumor cell lines (A2058 melanoma, SCC, and FaDu squamous cell carcinomas) were treated with all-trans retinoic acid and various retinoic acid receptor (RAR)-specific ligands.
- Matrix metalloproteinase (MMP) synthesis levels were monitored in response to retinoid treatment.
Main Results:
- Several retinoids selectively inhibited MMP synthesis in the tested tumor cell lines.
- A RAR alpha antagonist suppressed MMP-1 and MMP-2 synthesis in melanoma cells but not in others.
- RAR gamma antagonist reduced MMP-2 levels in FaDu cells, while all-trans retinoic acid reduced MMP-1 synthesis.
- No common pattern of MMP inhibition was observed across different retinoids and cell lines, suggesting differential RAR expression.
Conclusions:
- Retinoids, particularly RAR-specific ligands, can selectively inhibit MMP synthesis, thereby reducing tumor cell invasiveness.
- The observed differences in MMP inhibition suggest a role for differential RAR expression in mediating retinoid effects.
- Targeted modulation of specific RARs by retinoids presents a potential therapeutic strategy for decreasing cancer invasion.
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