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Vascular and Macrophage Heme Oxygenase-1 in Hypertension: A Mini-Review
Marta Martínez-Casales1, Raquel Hernanz1,2, María J Alonso1,2
1Depto. de Ciencias Básicas de la Salud, Facultad de Ciencias de la Salud, Universidad Rey Juan Carlos, Alcorcón, Spain.
Insights
Hypertension involves inflammation and immune cells. Heme oxygenase-1 (HO-1) protects against damage by shifting macrophages to an anti-inflammatory state, reducing blood pressure.
Area of Science:
- Cardiovascular Science
- Immunology
- Molecular Medicine
Background:
- Hypertension is a risk factor for stroke and heart disease, characterized by inflammation, oxidative stress, and immune cell infiltration.
- Macrophages, particularly the M1 (proinflammatory) phenotype, play a significant role in hypertension pathogenesis.
- Heme oxygenase-1 (HO-1) is an enzyme induced by oxidative stress with known protective effects.
Purpose of the Study:
- To review the role of Heme oxygenase-1 (HO-1) in hypertensive pathology.
- To focus on the expression and function of HO-1 within macrophages in the context of hypertension.
Main Methods:
- This is a review article, synthesizing existing research.
- Analysis of studies investigating HO-1 expression and its impact on macrophage phenotype.
- Examination of the molecular mechanisms underlying HO-1's protective effects in hypertension.
Main Results:
- HO-1 expression is protective against oxidative and inflammatory damage in hypertension.
- HO-1 shifts macrophages from a proinflammatory (M1) to an anti-inflammatory (M2) phenotype.
- HO-1 reduces end-organ damage and blood pressure through various antioxidant and anti-inflammatory mechanisms.
Conclusions:
- HO-1 plays a crucial role in mitigating hypertension-associated cardiovascular damage.
- Targeting HO-1, particularly its effects on macrophage polarization, offers a potential therapeutic strategy for hypertension.
- The beneficial effects of HO-1 are mediated by its enzymatic products and antioxidant/anti-inflammatory properties.
Abstract:
Hypertension is one predictive factor for stroke and heart ischemic disease. Nowadays, it is considered an inflammatory disease with elevated cytokine levels, oxidative stress, and infiltration of immune cells in several organs including heart, kidney, and vessels, which contribute to the hypertension-associated cardiovascular damage. Macrophages, the most abundant immune cells in tissues, have a high degree of plasticity that is manifested by polarization in different phenotypes, with the most well-known being M1 (proinflammatory) and M2 (anti-inflammatory). In hypertension, M1 phenotype predominates, producing inflammatory cytokines and oxidative stress, and mediating many mechanisms involved in the pathogenesis of this disease. The increase in the renin-angiotensin system and sympathetic activity contributes to the macrophage mobilization and to its polarization to the pro-inflammatory phenotype. Heme oxygenase-1 (HO-1), a phase II detoxification enzyme responsible for heme catabolism, is induced by oxidative stress, among others. HO-1 has been shown to protect against oxidative and inflammatory insults in hypertension, reducing end organ damage and blood pressure, not only by its expression at the vascular level, but also by shifting macrophages toward the anti-inflammatory phenotype. The regulatory role of heme availability for the synthesis of enzymes involved in hypertension development, such as cyclooxygenase or nitric oxide synthase, seems to be responsible for many of the beneficial HO-1 effects; additionally, the antioxidant, anti-inflammatory, antiapoptotic, and antiproliferative effects of the end products of its reaction, carbon monoxide, biliverdin/bilirubin, and Fe2+, would also contribute. In this review, we analyze the role of HO-1 in hypertensive pathology, focusing on its expression in macrophages.
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