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A Mouse Model to Investigate the Role of Cancer-Associated Fibroblasts in Tumor Growth
Published on: December 22, 2020
The 18 kDa isoform of basic fibroblast growth factor is sufficient to stimulate human melanoma growth and
Dennis Fontijn1, Monique C A Duyndam, Jeroen A M Beliën
1Department of Medical Oncology, VU University Medical Center, Amsterdam, The Netherlands.
Abstract:
Basic fibroblast growth factor is the best-characterized autocrine growth factor in melanoma development and progression. We hypothesized that basic fibroblast growth factor might induce a more aggressive phenotype dependent on the amount of protein expressed in melanoma. Two human melanoma cell lines, M14 and 1F6, known to have low endogenous basic fibroblast growth factor expression and slow growth as subcutaneous xenografts, were stably transfected with vectors encoding either the 18 kDa or all (ALL) isoform proteins of human basic fibroblast growth factor. Different clones overexpressing the 18 kDa or ALL basic fibroblast growth factor proteins were easily obtained. Increased levels of basic fibroblast growth factor were secreted in conditioned medium and stored on the extracellular membrane. Biological activity of the overexpressed basic fibroblast growth factor was confirmed in a human umbilical vein endothelial cell proliferation assay. In 1F6 cells, overexpression of either 18 kDa or ALL basic fibroblast growth factor proteins resulted in up to two-fold shorter in-vitro doubling times (P<0.05). In addition, in vivo, both 18 kDa and ALL basic fibroblast growth factor-overexpressing 1F6 subcutaneous xenografts displayed significantly higher growth rates (P<0.05). In contrast, no major differences in in-vitro and in-vivo doubling times were observed when 18 kDa or ALL isoforms of basic fibroblast growth factor were overexpressed in M14 cells. Interestingly, basic fibroblast growth factor overexpression only affected the microvasculature in 1F6 xenografts. Although blood vessels in 1F6 parent tumors were large, 1F6 tumors overexpressing basic fibroblast growth factor contained numerous small, compressed vessels. Taken together, overexpression of the 18 kDa basic fibroblast growth factor protein only can promote autocrine melanoma cell growth and paracrine-driven angiogenesis.
Insights
Basic fibroblast growth factor (FGF2) promotes melanoma growth and angiogenesis. Overexpressing FGF2 in certain melanoma cells accelerates tumor progression and alters tumor microvasculature, suggesting FGF2
Area of Science:
- Melanoma Research
- Cancer Biology
- Molecular Oncology
Background:
- Basic fibroblast growth factor (FGF2) is a key autocrine growth factor in melanoma.
- Its role in melanoma aggressiveness is hypothesized to be dose-dependent.
- Melanoma cell lines M14 and 1F6 exhibit low endogenous FGF2 and slow growth.
Purpose of the Study:
- To investigate the impact of FGF2 overexpression on melanoma phenotype.
- To determine if FGF2 isoforms (18 kDa and ALL) influence melanoma aggressiveness.
- To assess FGF2's effect on tumor growth, cell doubling times, and microvasculature.
Main Methods:
- Stable transfection of M14 and 1F6 melanoma cells with FGF2 isoforms (18 kDa, ALL).
- Quantification of secreted and membrane-bound FGF2.
- In vitro cell proliferation assays and in vivo subcutaneous xenograft models.
- Analysis of tumor growth rates and microvasculature in xenografts.
Main Results:
- Overexpression of both 18 kDa and ALL FGF2 isoforms increased secretion and extracellular levels.
- FGF2 overexpression significantly reduced in vitro doubling times and increased in vivo growth rates in 1F6 cells.
- M14 cells showed no significant changes in growth rates upon FGF2 overexpression.
- FGF2 overexpression in 1F6 xenografts altered microvasculature, creating numerous small, compressed vessels.
Conclusions:
- FGF2 overexpression can drive autocrine melanoma cell growth and paracrine-driven angiogenesis.
- The 18 kDa FGF2 isoform specifically promotes melanoma cell growth and angiogenesis.
- Melanoma cell line context influences the response to FGF2 overexpression.
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