Related Experiment Video
Updated: May 17, 2026

An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Estradiol inhibits vascular endothelial cells pro-inflammatory activation induced by C-reactive protein
Émilie Cossette1, Isabelle Cloutier, Kim Tardif
1Research Center, Montreal Heart Institute, 5000 Bélanger Street, Montreal, QC H1T 1C8, Canada.
Insights
17β-estradiol (E2) reduces C-reactive protein (CRP) production and inflammatory responses in endothelial cells. This hormone may offer a new mechanism for vascular repair by blocking CRP
Area of Science:
- Vascular Biology
- Endocrinology
- Immunology
Background:
- C-reactive protein (CRP) is an inflammatory biomarker and risk factor for cardiovascular disease, contributing to atherosclerosis.
- CRP induces pro-inflammatory molecule expression in endothelial cells (ECs).
- 17β-estradiol (E2) exhibits beneficial effects on vascular cells, reducing pro-inflammatory molecule expression.
Purpose of the Study:
- To investigate if E2 blocks or reduces CRP-mediated inflammatory responses in ECs.
- To explore E2's modulation of endogenous CRP production and activation mechanisms in ECs.
Main Methods:
- Utilized human aortic ECs (HAECs) to assess CRP production and self-induction.
- Evaluated the effect of E2 pre-treatment on CRP production, IL-6 secretion, and pro-inflammatory molecule expression (IL-8, VCAM-1, ICAM-1).
- Assessed E2's impact on vascular endothelial growth factor-mediated EC migration impaired by CRP.
Main Results:
- Recombinant human CRP stimulation induced a fivefold increase in CRP expression in HAECs.
- E2 pre-treatment significantly decreased CRP production, suggesting blockage of its amplification loop.
- E2 reduced IL-6 secretion by 21% and decreased CRP-induced expression of IL-8, VCAM-1, and ICAM-1.
- E2 restored CRP-impaired EC migration, indicating a pro-angiogenic property.
Conclusions:
- E2 interferes with CRP's pro-inflammatory effects in endothelial cells.
- E2 may act via a rapid, non-genomic pathway to modulate CRP-mediated inflammation.
- These findings suggest a potential new mechanism for vascular repair involving E2 and CRP.
Abstract:
In addition of being an important inflammatory biomarker and a risk factor for cardiovascular disease, much evidence indicates that the C-reactive protein (CRP) contributes to the atherosclerosis development process. This plasmatic protein synthesized by hepatocytes in response to inflammation and tissue injury induces pro-inflammatory molecules' expression by endothelial cells (ECs). Previous studies showed that the 17β-estradiol (E2) has beneficial effects on vascular cells by reducing in vitro pro-inflammatory molecules expressions in EC. Therefore, we hypothesize that E2 blocks or reduces CRP-mediated inflammatory responses by modulating endogenous production of CRP in EC and/or activation mechanisms. Using human aortic ECs (HAECs), we first evaluated CRP production by vascular EC and second demonstrated its self-induction. Indeed, recombinant human CRP stimulation induces a fivefold increase of CRP expression. A 1-h pre-treatment of E2 at a physiologic dose (10(-9 )M) leads to an important decrease of CRP production suggesting a partial blockage of its amplification loop mechanism. Furthermore, in HAEC, E2 reduces the secretion of the most potent agonist of CRP induction, the IL-6, by 21 %. E2 pre-treatment also decreased the expression of pro-inflammatory molecules IL-8, VCAM-1, and ICAM-1 induced by CRP and involved in leukocytes recruitment. In addition, we demonstrated that E2 could restore vascular endothelial growth factor-mediated EC migration response impaired by CRP suggesting another pro-angiogenic property of this hormone. These findings suggest that E2 can interfere with CRP pro-inflammatory effects via activation signals using its rapid, non-genomic pathway that may provide a new mechanism to improve vascular repair.
Related Concept Videos
Inflammatory Response I: Vascular and Cellular
Regulation of Angiogenesis and Blood Supply
Treatment for Pulmonary Arterial Hypertension: Prostacyclin Receptor Agonists
These agonists bind to the IPR receptor situated on the plasma membrane of the pulmonary artery smooth muscle cells. This binding triggers a cascade of reactions known as the GS-AC-cAMP-PKA pathway. This pathway results in the relaxation of smooth muscle...
Inflammation

