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result(s) for
"RAAS"
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Endocan as a marker of endotheliitis in COVID-19 patients
by
Martins, Sandra
,
Tavares, Margarida
,
Silva-Pereira, Carolina
in
Endocan
,
Endotheliitis
,
Hypertension
2025
Publisher Copyright: © 2025. The Author(s).
BACKGROUND AND AIMS: Endocan has been scarcely explored in COVID-19, especially regarding its modulation by veno-venous extracorporeal membrane oxygenation (VV-ECMO), hypertension or previous renin-angiotensin-aldosterone system (RAAS) inhibitors treatment. We compared endocan and other endotheliitis markers in hospitalized COVID-19 patients and assessed their modulation by VV-ECMO, hypertension and previous RAAS inhibitors treatment. MATERIAL AND METHODS: Serum endocan, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1) and E-selectin were measured in \"severe\" (n = 27), \"critically ill\" (n = 17) and \"critically ill on VV-ECMO\" (n = 17) COVID-19 patients at admission, days 3-4, 5-8 and weekly thereafter, and in controls (n = 23) at a single time point. RESULTS: Admission endocan and VCAM-1 were increased in all patients, but \"critically ill on VV-ECMO\" patients had higher endocan and E-Selectin. Endocan remained elevated throughout hospitalization in all groups. \"Severe\" and \"critically ill\" hypertensive patients or previously treated with RAAS inhibitors had higher endocan and/or VCAM-1, but in VV-ECMO patients the raised endocan values seemed unrelated with these factors. Among all COVID-19 hypertensive patients, those with previous RAAS inhibitors treatment had higher endocan. CONCLUSIONS: In our study, endocan stands out as the best marker of endotheliitis in hospitalized COVID-19 patients, being upregulated by VV-ECMO support, hypertension and previous RAAS inhibitor treatment.
Journal Article
ACE2: The key Molecule for Understanding the Pathophysiology of Severe and Critical Conditions of COVID-19: Demon or Angel?
2020
Recently, the SARS-CoV-2 induced disease COVID-19 has spread all over the world. Nearly 20% of the patients have severe or critical conditions. SARS-CoV-2 exploits ACE2 for host cell entry. ACE2 plays an essential role in the renin–angiotensin–aldosterone system (RAAS), which regulates blood pressure and fluid balance. ACE2 also protects organs from inflammatory injuries and regulates intestinal functions. ACE2 can be shed by two proteases, ADAM17 and TMPRSS2. TMPRSS2-cleaved ACE2 allows SARS-CoV-2 cell entry, whereas ADAM17-cleaved ACE2 offers protection to organs. SARS-CoV-2 infection-caused ACE2 dysfunction worsens COVID-19 and could initiate multi-organ failure. Here, we will explain the role of ACE2 in the pathogenesis of severe and critical conditions of COVID-19 and discuss auspicious strategies for controlling the disease.
Journal Article
Circulating renin–angiotensin–aldosterone system markers in cats with non-hypertensive chronic kidney disease or systemic arterial hypertension
by
Lourenço, Bianca N
,
Coleman, Amanda E
,
Reno, Lisa
in
Aldosterone - blood
,
Amlodipine - therapeutic use
,
Angiotensins - blood
2026
Abstract
Background
Information on the classical and alternative circulating renin–angiotensin–aldosterone systems (RAAS) in cats with non-hypertensive chronic kidney disease (NHT-CKD) or systemic arterial hypertension (SAH) is limited. Age and diet affect the RAAS.
Hypothesis/Objectives
To compare serum equilibrium concentrations of angiotensin peptides and aldosterone in healthy cats and cats with NHT-CKD or untreated SAH, and to evaluate changes in these concentrations in hypertensive cats administered amlodipine.
Animals
Client-owned cats with NHT-CKD (serum creatinine ≥ 1.6 mg/dL, systolic blood pressure [SBP] < 160 mmHg; n = 17), SAH (SBP ≥ 160 mmHg or ≥ 150 mmHg with hypertensive ocular lesions; n = 6), or normal SBP (<140 mmHg) and kidney function (n = 17).
Methods
Prospective, single-center, observational study. Cats underwent indirect SBP measurement and clinicopathologic analyses. Serum was obtained contemporaneously in all cats, and after 2-4 weeks of amlodipine therapy in hypertensive cats, for evaluation of angiotensin I, II, III, IV, 1-5, and 1-7, and aldosterone.
Results
Adjusting for diet, age, or both modified the conclusions of statistical comparisons for several variables. Mean serum angiotensin I, II, and III concentrations were lower in cats with untreated SAH vs healthy controls across unadjusted and diet-, age-, or both diet- and age-adjusted linear mixed models (geometric mean [95% CI] angiotensin I, 9.02 [3.05-26.62] vs 29.78 [21.15-41.94] pmol/L; angiotensin II, 33.63 [12.25-92.26] vs 124.24 [90.52-170.51] pmol/L; angiotensin III, 1.56 [0.88-2.79] vs 7.96 [5.35-11.86] pmol/L; all P ≤ .038). Controlling for diet but not age, angiotensin II (P = .043) and III (P = .019) were also lower in cats with NHT-CKD vs controls. All angiotensin peptides, except for angiotensin IV, significantly increased in hypertensive cats during amlodipine therapy. Serum aldosterone did not differ between groups, or before and after amlodipine in hypertensive cats.
Conclusions and clinical importance
Evidence of circulating RAAS activation in cats with NHT-CKD or untreated SAH was not found.
Journal Article
Renin-Angiotensin System in Pathogenesis of Atherosclerosis and Treatment of CVD
by
Grechko, Andrey V.
,
Orekhov, Alexander N.
,
Sazonova, Margarita A.
in
Apoptosis
,
Atherosclerosis
,
Blood pressure
2021
Atherosclerosis has complex pathogenesis, which involves at least three serious aspects: inflammation, lipid metabolism alterations, and endothelial injury. There are no effective treatment options, as well as preventive measures for atherosclerosis. However, this disease has various severe complications, the most severe of which is cardiovascular disease (CVD). It is important to note, that CVD is among the leading causes of death worldwide. The renin–angiotensin–aldosterone system (RAAS) is an important part of inflammatory response regulation. This system contributes to the recruitment of inflammatory cells to the injured site and stimulates the production of various cytokines, such as IL-6, TNF-a, and COX-2. There is also an association between RAAS and oxidative stress, which is also an important player in atherogenesis. Angiotensin-II induces plaque formation at early stages, and this is one of the most crucial impacts on atherogenesis from the RAAS. Importantly, while stimulating the production of ROS, Angiotensin-II at the same time decreases the generation of NO. The endothelium is known as a major contributor to vascular function. Oxidative stress is the main trigger of endothelial dysfunction, and, once again, links RAAS to the pathogenesis of atherosclerosis. All these implications of RAAS in atherogenesis lead to an explicable conclusion that elements of RAAS can be promising targets for atherosclerosis treatment. In this review, we also summarize the data on treatment approaches involving cytokine targeting in CVD, which can contribute to a better understanding of atherogenesis and even its prevention.
Journal Article
Effects of RAAS Inhibitors in Patients with Kidney Disease
by
Liu, Fuyou
,
Zhang, Hongqing
,
Peng, Youming
in
Angiotensin Receptor Antagonists - pharmacology
,
Angiotensin-Converting Enzyme Inhibitors - pharmacology
,
Cardiology
2017
Proteinuria and decline of renal function are associated with progression of kidney disease. The Renin Angiotensin Aldosterone System (RAAS) plays an important role in blood pressure regulation, fluid volume, and sodium balance. Overactivity of RAAS contributes to the pathogenesis of a variety of clinical conditions including progress of chronic kidney disease (CKD). This review summarizes the use of RAAS inhibitors as dual therapy or monotherapy in different stages of kidney disease. Experimental and clinical studies have demonstrated RAAS inhibitors prevent proteinuria, kidney fibrosis and slow decline of renal function and thus play a protective role in both early and end stages of kidney disease. While combination use of RAAS inhibitors showed higher efficiency compared with monotherapy, it is also associated with higher incidence of adverse events. Besides ACEI/ARBs, more mechanism research of mineralocorticoid receptor antagonists in kidney disease should be performed.
Journal Article
Effect of furosemide on comprehensive renin-angiotensin-aldosterone system activity of Thoroughbred horses
by
Ames, Marisa K.
,
Domenig, Oliver
,
Morgan, Jessica M.
in
adults
,
alternative RAAS
,
Angiotensin I - blood
2024
Abstract
Background
Furosemide, a commonly used diuretic, activates the renin-angiotensin-aldosterone system (RAAS) in other species. Little is known about RAAS peptide activation in horses.
Hypothesis/Objectives
To evaluate equilibrium analysis as a practical method for RAAS quantification in horses and describe the RAAS response to a single dose of furosemide. We hypothesize that furosemide would cause transient increase in RAAS peptides in horses.
Animals
14 healthy adult thoroughbreds from a university teaching herd.
Methods
Horses received either furosemide (1 mg/kg IV) or saline IV in a crossover study design. Protease-inhibited samples were compared with equilibrium analysis samples with Deming regression analysis. Renin-angiotensin-aldosterone system hormones were evaluated at 0, 0.25, 0.5, 4, and 24 hours postadministration, via equilibrium analysis. Values were compared with a mixed effects model.
Results
Correlation between protease inhibition and equilibrium analysis was high for angiotensin I peptide (AngI) and angiotensin II peptide (AngII) (r = .92 and .95, respectively). Baseline RAAS peptide concentrations were below the limit of detection except AngII (median, 7.5 [range, 3.5-14.0] pmol/L). Furosemide administration resulted in an increase in AngI (8.0 [0.5-15.5] pmol/L, P = .03), AngII (33.7 [9.6-57.9] pmol/L, P = .0008), angiotensin III peptide (AngIII) (2.9 [0.9-4.9] pmol/L, P = .0005), angiotensin IV peptide (AngIV) (2.0 [0.6-3.4] pmol/L, P = .0005), and angiotensin 1-5 peptide (Ang1-5) (5.6 [1.2-5.9] pmol/L, P = .003) at 4 hours. Differences are reported as difference in the mean (95% confidence interval [CI]).
Conclusions and Clinical Importance
Furosemide produced an increase in hormones associated with both the classical and alternative RAAS pathways. Serum equilibrium analysis is practical for RAAS analysis in horses.
Journal Article
Structural and Computational Insights into the Angiotensin II Type 1 Receptor: Advances in Antagonist Design and Implications for Hypertension Therapy (2020–2024)
by
Chatzipieris, Filippos Panteleimon
,
Lambrinidis, George
,
Petsas, Errikos
in
ACE inhibitors
,
active site of AT1R
,
Aldosterone
2025
The renin–angiotensin–aldosterone system (RAAS) is essential for controlling blood pressure and maintaining fluid balance, driving significant structural changes throughout the cardiovascular system, including the heart and blood vessels. As a result, the RAAS is a key therapeutic target for various chronic cardiovascular diseases, ranging from arterial hypertension (AH) to heart failure (HF). In this review, one of our objectives is to describe the new evidence over the last 4 years regarding the RAAS. Moreover, we pay attention to the structure and function of the angiotensin II type 1 receptor (AT1R) and its role in hypertension, as well as define its active site. Later, we discuss the most potent, selective inhibitors of AT1 receptors, based on in vitro and in vivo experiments, from 2020 to 2024. Large peptide molecules, small non-peptide-like molecules, and sartan derivatives are analyzed. The low IC50 values of the entities that do not resemble sartans showcase the vast chemical space that can be explored for the creation of more potent antihypertensive medications. We have also employed computational chemistry tools in order to identify key molecular interactions between the compounds of the literature studied in order to elucidate the underlying reasons why these different molecules exhibit variations in their binding energies and overall potency.
Journal Article
Maintenance of Kidney Metabolic Homeostasis by PPAR Gamma
by
Medina-Gómez, Gema
,
Corrales, Patricia
,
Izquierdo-Lahuerta, Adriana
in
Homeostasis
,
Metabolism
,
Review
2018
Peroxisome proliferator-activated receptors (PPARs) are a family of nuclear hormone receptors that control the transcription of specific genes by binding to regulatory DNA sequences. Among the three subtypes of PPARs, PPARγ modulates a broad range of physiopathological processes, including lipid metabolism, insulin sensitization, cellular differentiation, and cancer. Although predominantly expressed in adipose tissue, PPARγ expression is also found in different regions of the kidney and, upon activation, can redirect metabolism. Recent studies have highlighted important roles for PPARγ in kidney metabolism, such as lipid and glucose metabolism and renal mineral control. PPARγ is also implicated in the renin-angiotensin-aldosterone system and, consequently, in the control of systemic blood pressure. Accordingly, synthetic agonists of PPARγ have reno-protective effects both in diabetic and nondiabetic patients. This review focuses on the role of PPARγ in renal metabolism as a likely key factor in the maintenance of systemic homeostasis.
Journal Article
Blood pressure reduction and RAAS inhibition in diabetic kidney disease: therapeutic potentials and limitations
by
Viazzi, Francesca
,
Leoncini, Giovanna
,
Fioretto, Paola
in
Medicine
,
Medicine & Public Health
,
Nephrology
2020
Diabetic kidney disease (DKD) affects approximately one-third of patients with diabetes and taking into consideration the high cardiovascular risk burden associated to this condition a multifactorial therapeutic approach is traditionally recommended, in which glucose and blood pressure control play a central role. The inhibition of renin–angiotensin–aldosterone RAAS system represent traditionally the cornerstone of DKD. Clinical outcome trials have demonstrated clinical significant benefit in slowing nephropathy progression mainly in the presence of albuminuria. Thus, international guidelines mandate their use in such patients. Given the central role of RAAS activity in the pathogenesis and progression of renal and cardiovascular damage, a more profound inhibition of the system by the use of multiple agents has been proposed in the past, especially in the presence of proteinuria, however clinical trials have failed to confirm the usefulness of this therapeutic approach. Furthermore, whether strict blood pressure control and pharmacologic RAAS inhibition entails a favorable renal outcome in non-albuminuric patients is at present unclear. This aspect is becoming an important issue in the management of DKD since nonalbuminuric DKD is currently the prevailing presenting phenotype. For these reasons it would be advisable that blood pressure management should be tailored in each subject on the basis of the renal phenotype as well as related comorbidities. This article reviews the current literature and discusses potentials and limitation of targeting the RAAS in order to provide the greatest renal protection in DKD.
Journal Article
Endothelium Infection and Dysregulation by SARS-CoV-2: Evidence and Caveats in COVID-19
2020
The ongoing pandemic of coronavirus disease 2019 (COVID-19) caused by the acute respiratory syndrome-coronavirus-2 (SARS-CoV-2) poses a persistent threat to global public health. Although primarily a respiratory illness, extrapulmonary manifestations of COVID-19 include gastrointestinal, cardiovascular, renal and neurological diseases. Recent studies suggest that dysfunction of the endothelium during COVID-19 may exacerbate these deleterious events by inciting inflammatory and microvascular thrombotic processes. Although controversial, there is evidence that SARS-CoV-2 may infect endothelial cells by binding to the angiotensin-converting enzyme 2 (ACE2) cellular receptor using the viral Spike protein. In this review, we explore current insights into the relationship between SARS-CoV-2 infection, endothelial dysfunction due to ACE2 downregulation, and deleterious pulmonary and extra-pulmonary immunothrombotic complications in severe COVID-19. We also discuss preclinical and clinical development of therapeutic agents targeting SARS-CoV-2-mediated endothelial dysfunction. Finally, we present evidence of SARS-CoV-2 replication in primary human lung and cardiac microvascular endothelial cells. Accordingly, in striving to understand the parameters that lead to severe disease in COVID-19 patients, it is important to consider how direct infection of endothelial cells by SARS-CoV-2 may contribute to this process.
Journal Article