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Updated: Aug 13, 2026

Rat Mesentery Angiogenesis Assay
Published on: June 18, 2011
1 alpha,25-dihydroxyvitamin D(3) inhibits angiogenesis in vitro and in vivo
D J Mantell1, P E Owens, N J Bundred
1Wellcome Trust Centre for Cell Matrix Research, Department of Medicine University of Manchester, Manchester, UK.
Abstract:
Modulation of angiogenesis is now a recognized strategy for the prevention and treatment of pathologies categorized by their reliance on a vascular supply. The purpose of this study was to evaluate the effect of 1 alpha,25-dihydroxyvitamin D(3) [1, 25(OH)(2)D(3)], the active metabolite of vitamin D(3), on angiogenesis by using well-characterized in vitro and in vivo model systems. 1,25(OH)(2)D(3) (1 x 10(-9) to 1 x 10(-7) mol/L) significantly inhibited vascular endothelial growth factor (VEGF)-induced endothelial cell sprouting and elongation in vitro in a dose-dependent manner and had a small, but significant, inhibitory effect on VEGF-induced endothelial cell proliferation. 1, 25(OH)(2)D(3) also inhibited the formation of networks of elongated endothelial cells within 3D collagen gels. The addition of 1, 25(OH)(2)D(3) to endothelial cell cultures containing sprouting elongated cells induced the regression of these cells, in the absence of any effect on cells present in the cobblestone monolayer. Analysis of nuclear morphology, DNA integrity, and enzymatic in situ labeling of apoptosis-induced strand breaks demonstrated that this regression was due to the induction of apoptosis specifically within the sprouting cell population. The effect of 1,25(OH)(2)D(3) on angiogenesis in vivo was investigated by using a model in which MCF-7 breast carcinoma cells, which had been induced to overexpress VEGF, were xenografted subcutaneously together with MDA-435S breast carcinoma cells into nude mice. Treatment with 1,25(OH)(2)D(3) (12.5 pmol/d for 8 weeks) produced tumors that were less well vascularized than tumors formed in mice treated with vehicle alone. These results highlight the potential use of 1,25(OH)(2)D(3) in both the prevention and regression of conditions characterized by pathological angiogenesis.
Insights
The active vitamin D metabolite, 1 alpha,25-dihydroxyvitamin D(3) [1, 25(OH)(2)D(3)], inhibits angiogenesis by inducing apoptosis in sprouting endothelial cells. This suggests potential therapeutic applications for conditions involving pathological blood vessel formation.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Angiogenesis, the formation of new blood vessels, is crucial for tumor growth and various pathologies.
- Modulating angiogenesis is a key strategy in treating diseases reliant on vascular supply.
Purpose of the Study:
- To investigate the anti-angiogenic effects of 1 alpha,25-dihydroxyvitamin D(3) [1, 25(OH)(2)D(3)], the active form of vitamin D(3).
- To evaluate the impact of 1, 25(OH)(2)D(3) on both in vitro and in vivo models of angiogenesis.
Main Methods:
- Utilized in vitro models assessing endothelial cell sprouting, proliferation, and network formation in response to vascular endothelial growth factor (VEGF).
- Examined the induction of apoptosis in sprouting endothelial cells using assays for nuclear morphology, DNA integrity, and in situ labeling.
- Employed an in vivo xenograft model with breast carcinoma cells (MCF-7 and MDA-435S) in nude mice to assess tumor vascularization after 1, 25(OH)(2)D(3) treatment.
Main Results:
- 1, 25(OH)(2)D(3) significantly inhibited VEGF-induced endothelial cell sprouting, elongation, and proliferation in a dose-dependent manner in vitro.
- Observed regression of elongated endothelial cells in 3D collagen gels, attributed to apoptosis specifically in the sprouting cell population.
- In vivo studies showed that 1, 25(OH)(2)D(3) treatment resulted in less vascularized tumors compared to vehicle-treated controls.
Conclusions:
- 1, 25(OH)(2)D(3) demonstrates potent anti-angiogenic properties by selectively inducing apoptosis in activated endothelial cells.
- These findings support the potential therapeutic use of 1, 25(OH)(2)D(3) for preventing and treating pathological angiogenesis.
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