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Updated: Aug 30, 2026

Angiogenesis in the Ischemic Rat Lung
Published on: February 8, 2013
Effects of tamoxifen on ischemia-induced angiogenesis in the mouse lung
Elizabeth M Wagner1, Sandra J Gallagher, Sekhar Reddy
1Department of Medicine, Johns Hopkins University, Baltimore, Maryland 21224, USA. wagnerem@jhmi.edu
Abstract:
Obstruction of pulmonary blood flow in the mouse lung causes a prompt angiogenic response, with new systemic vessels from intercostal arteries penetrating the pleura within 5-6 days [Mitzner et al. Am J Pathol 2000; 157(1): 93-101]. Tamoxifen, a triphenylethylene antiestrogen, has been shown to be effective in limiting tumor growth, possibly because of inhibition of angiogenesis. We investigated the effects of tamoxifen on blood vessel development after left pulmonary artery ligation (LPAL). Timed-release pellets of either tamoxifen (free base/15 mg over 21 days) or placebo carrier were implanted subcutaneously in male C57BL/6J mice 6-8 weeks of age. Two days after pellet implantation, the left pulmonary artery was permanently obstructed by suture ligation. New systemic vessel growth was assessed after left ventricular injection of fluorescence labeled microspheres. Tamoxifen slowed the formation of functional blood vessels seven days after LPAL. By 14 days, however, no difference was observed between tamoxifen and placebo treated mice with systemic perfusion to the left lung reaching a maximum of 3.8% and 4.7% of cardiac output respectively. No change in VEGF mRNA expression was observed until 14 days after LPAL when a small increase (2-fold) was observed in both placebo and tamoxifen treated lungs. However, VEGF protein was elevated in both tamoxifen and placebo lungs 24 h after LPAL (approximately 4-fold). These changes in VEGF protein may be due to the presence of trapped inflammatory cells observed in lung sections at this early time point. Although tamoxifen appeared to slow the progression of blood vessel formation, it did not affect VEGF mRNA, therefore likely acting through an estrogen receptor-independent mechanism.
Insights
Tamoxifen temporarily slowed new blood vessel growth in mouse lungs after pulmonary artery obstruction. However, this effect was transient, with no significant differences observed after 14 days, suggesting an estrogen receptor-independent mechanism.
Area of Science:
- Cardiovascular Research
- Pulmonary Medicine
- Pharmacology
Background:
- Pulmonary blood flow obstruction triggers rapid angiogenesis in mouse lungs.
- Tamoxifen, an antiestrogen, may inhibit angiogenesis and tumor growth.
- The role of tamoxifen in post-obstruction pulmonary angiogenesis is not well understood.
Purpose of the Study:
- To investigate the effects of tamoxifen on systemic blood vessel development following left pulmonary artery ligation (LPAL) in mice.
- To determine if tamoxifen influences vascular endothelial growth factor (VEGF) expression post-LPAL.
Main Methods:
- Male C57BL/6J mice received tamoxifen or placebo pellets.
- Left pulmonary artery ligation (LPAL) was performed.
- Systemic vessel growth was assessed using fluorescently labeled microspheres.
- VEGF mRNA and protein expression were analyzed.
Main Results:
- Tamoxifen transiently slowed new blood vessel formation at 7 days post-LPAL.
- No significant difference in systemic perfusion was observed between groups by 14 days.
- VEGF protein increased early post-LPAL in both groups; VEGF mRNA showed a delayed increase.
Conclusions:
- Tamoxifen appears to temporarily inhibit angiogenesis after pulmonary artery obstruction.
- The mechanism is likely estrogen receptor-independent, as VEGF mRNA levels were unaffected.
- Further research is needed to clarify tamoxifen's role in pulmonary vascular remodeling.

