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Updated: Feb 7, 2026

Enhancing the Engraftment of Human Induced Pluripotent Stem Cell-derived Cardiomyocytes via a Transient Inhibition of Rho Kinase Activity
Published on: July 10, 2019
Rho kinase activation in circulating leukocytes is related to hypertensive myocardial remodeling
Maria P Ocaranza1,2, Camila Fierro1, Jorge E Jalil3
1Department of Cardiovascular Diseases, School of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile.
Insights
Rho-kinase activity in circulating leukocytes accurately reflects its activation in the heart and aorta in hypertension. This pathway is linked to myocardial remodeling, offering a potential biomarker for cardiovascular disease.
Area of Science:
- Cardiovascular Physiology
- Molecular Biology
- Hypertension Research
Background:
- Rho-kinase plays a crucial role in blood pressure regulation and cardiovascular remodeling.
- Assessing Rho-kinase activity in circulating leukocytes is possible, but its correlation with myocardial and vascular activity in hypertension remains unclear.
Purpose of the Study:
- To investigate the association between Rho-kinase cascade activation in leukocytes and its activation in the heart and aorta in a hypertension model.
- To analyze this relationship from a cause-and-effect perspective.
Main Methods:
- Hypertensive deoxycorticosterone (DOCA)-salt rats were treated with the Rho-kinase antagonist fasudil.
- Rho-kinase activity was measured in peripheral blood mononucleated cells (PBMC), myocardium, and aortic walls.
- Cardiac and aortic remodeling markers, including hypertrophy, collagen deposition, and inflammatory cell infiltration, were assessed.
Main Results:
- Fasudil treatment significantly reduced blood pressure, cardiac hypertrophy, myocardial collagen, and macrophage infiltration.
- Rho-kinase activity in PBMC, myocardium, and aortic walls decreased to sham levels with fasudil treatment.
- PBMC Rho-kinase activity strongly correlated with cardiac remodeling parameters like hypertrophy, collagen, and inflammation.
Conclusions:
- Rho-kinase pathway activation in circulating leukocytes serves as a reliable indicator of its activation in the myocardium and aorta during hypertension.
- Leukocyte Rho-kinase activity is significantly associated with myocardial remodeling, including hypertrophy, fibrosis, and inflammation.
Abstract:
Rho-kinase has relevant functions in blood pressure modulation and cardiovascular remodeling. Rho-kinase activity is determined in circulating leukocytes measuring phosphorylation of its target myosin phosphatase target subunit 1 (MYPT1), but its relationship with Rho-kinase activity in the myocardium and in vasculature in hypertension has not been evaluated.The aim was to determine the degree of association between Rho-kinase cascade activation in circulating leukocytes with cardiac and aortic Rho-kinase pathway activation in a model of hypertension and to analyze it with a cause-effect perspective.Hypertensive deoxycorticosterone (DOCA)-salt rats received the Rho-kinase antagonist fasudil (DOCA-Fas, 100 mg/kg/day, 3 weeks). Results were compared with an untreated DOCA-salt and a sham group.Rho-kinase inhibition reduced significantly blood pressure, cardiac hypertrophy, myocardial collagen and macrophage infiltration, but not aortic wall hypertrophy. Fasudil decreased significantly Rho-kinase activity in peripheral blood mononucleated cells (PBMC), myocardium and aortic wall to similar levels as in the sham group. A significant correlation was found between PBMC Rho-kinase activity and cardiac remodeling, specifically with hypertrophy (r = 0.51, P≤0.01), myocardial collagen (r = 0.40, P≤0.05) and ED1 immunostaining (r = 0.48, P≤0.01). In the untreated hypertensive group, increased levels (P<0.05) of the proinflammatory molecules p65 NF-κB, vascular cell adhesion molecule 1 and interleukin-6 antibody in the myocardium, aortic wall and PBMC were observed and were reduced with fasudil (P<0.05).In conclusion, in this hypertension model, Rho-kinase and its pathway activation determined in circulating leukocytes reflect the activation of this pathway in the myocardium and in the aortic wall and are significantly related to myocardial remodeling (hypertrophy, fibrosis and inflammation).
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