Javascript must be enabled to continue!
An Oral Formulation of Angiotensin-(1-7) Reverses Corpus Cavernosum Damages Induced by Hypercholesterolemia
View through CrossRef
ABSTRACT
Introduction
The renin angiotensin system plays a crucial role in erectile function. It has been shown that elevated angiotensin-II levels contribute to the development of erectile dysfunction (ED). Oppositely, angiotensin-(1-7) (Ang-[1-7]) mediates penile erection by activation of receptor Mas. Recently, we have developed a formulation based on Ang-(1-7) inclusion in cyclodextrin (CyD) [Ang-(1-7)-CyD], which allows for the oral administration of Ang-(1-7).
Aim
In the present study, we evaluated the effects of chronic treatment with Ang-(1-7)-CyD on penile fibrosis, oxidative stress, and endothelial function in hypercholesterolemic mice.
Methods
Apolipoprotein(Apo)E−/− mice fed a Western-type diet for 11 weeks received Ang-(1-7)-CyD or vehicle during the final 3 weeks. Collagen content and reactive oxygen species (ROS) production within the corpus cavernosum were evaluated by Sirius red and dihydroethidium staining, respectively. Protein expression of neuronal nitric oxide synthase (nNOS) and endothelial nitric oxide synthase (eNOS), nicotinamide adenine dinucleotide phosphate (NADPH) subunits (p67-phox and p22-phox), and AT1 and Mas receptors in the penis was assessed by Western blotting. Nitric oxide (NO) production was measured by Griess assay in the mice serum. Cavernosal strips were mounted in an isometric organ bath to evaluate the endothelial function.
Main Outcome Measures
The effect of Ang-(1-7)-CyD treatment on penile fibrosis, oxidative stress, and endothelial function in hypercholesterolemia-induced ED.
Results
Ang-(1-7)-CyD treatment reduced collagen content in the corpus cavernosum of ApoE−/− mice. This effect was associated with an attenuation of ROS production and a diminished expression of NADPH. Furthermore, Ang-(1-7)-CyD treatment augmented the expression of nNOS and eNOS in the penis and elevated vascular NO production. Importantly, these effects were accompanied by an improvement in cavernosal endothelial function.
Conclusion
Long-term treatment with Ang-(1-7)-CyD reduces penile fibrosis associated with attenuation of oxidative stress. Additionally, cavernosal endothelial function in hypercholesterolemic mice was markedly improved. These results suggest that Ang-(1-7)-CyD might have significant therapeutic benefits for the treatment of erectile dysfunction.
Title: An Oral Formulation of Angiotensin-(1-7) Reverses Corpus Cavernosum Damages Induced by Hypercholesterolemia
Description:
ABSTRACT
Introduction
The renin angiotensin system plays a crucial role in erectile function.
It has been shown that elevated angiotensin-II levels contribute to the development of erectile dysfunction (ED).
Oppositely, angiotensin-(1-7) (Ang-[1-7]) mediates penile erection by activation of receptor Mas.
Recently, we have developed a formulation based on Ang-(1-7) inclusion in cyclodextrin (CyD) [Ang-(1-7)-CyD], which allows for the oral administration of Ang-(1-7).
Aim
In the present study, we evaluated the effects of chronic treatment with Ang-(1-7)-CyD on penile fibrosis, oxidative stress, and endothelial function in hypercholesterolemic mice.
Methods
Apolipoprotein(Apo)E−/− mice fed a Western-type diet for 11 weeks received Ang-(1-7)-CyD or vehicle during the final 3 weeks.
Collagen content and reactive oxygen species (ROS) production within the corpus cavernosum were evaluated by Sirius red and dihydroethidium staining, respectively.
Protein expression of neuronal nitric oxide synthase (nNOS) and endothelial nitric oxide synthase (eNOS), nicotinamide adenine dinucleotide phosphate (NADPH) subunits (p67-phox and p22-phox), and AT1 and Mas receptors in the penis was assessed by Western blotting.
Nitric oxide (NO) production was measured by Griess assay in the mice serum.
Cavernosal strips were mounted in an isometric organ bath to evaluate the endothelial function.
Main Outcome Measures
The effect of Ang-(1-7)-CyD treatment on penile fibrosis, oxidative stress, and endothelial function in hypercholesterolemia-induced ED.
Results
Ang-(1-7)-CyD treatment reduced collagen content in the corpus cavernosum of ApoE−/− mice.
This effect was associated with an attenuation of ROS production and a diminished expression of NADPH.
Furthermore, Ang-(1-7)-CyD treatment augmented the expression of nNOS and eNOS in the penis and elevated vascular NO production.
Importantly, these effects were accompanied by an improvement in cavernosal endothelial function.
Conclusion
Long-term treatment with Ang-(1-7)-CyD reduces penile fibrosis associated with attenuation of oxidative stress.
Additionally, cavernosal endothelial function in hypercholesterolemic mice was markedly improved.
These results suggest that Ang-(1-7)-CyD might have significant therapeutic benefits for the treatment of erectile dysfunction.
Related Results
An Increased Arginase Activity Is Associated with Corpus Cavernosum Impairment Induced by Hypercholesterolemia
An Increased Arginase Activity Is Associated with Corpus Cavernosum Impairment Induced by Hypercholesterolemia
Abstract
Introduction
Hypercholesterolemia is a prevalent risk factor for the development of erectile dysfunction (ED), mostly d...
Development of angiotensin (1‐7) as an agent to accelerate dermal repair
Development of angiotensin (1‐7) as an agent to accelerate dermal repair
Angiotensin II has been shown to be a potent agent in the acceleration of wound repair. Angiotensin (1‐7), a fragment of angiotensin II that is not hypertensive, was found to be co...
Diminazene Protects Corpus Cavernosum Against Hypercholesterolemia-Induced Injury
Diminazene Protects Corpus Cavernosum Against Hypercholesterolemia-Induced Injury
AbstractIntroductionAngiotensin-converting enzyme 2 (ACE2) is a key enzyme of the renin angiotensin system, which breaks down angiotensin II and forms angiotensin-(1–7). In erectil...
Abstract 125: Modified Angiotensin II Has Lower Vasoconstrictive Effect Than Angiotensin II
Abstract 125: Modified Angiotensin II Has Lower Vasoconstrictive Effect Than Angiotensin II
Introduction:
The renin-angiotensin-aldosterone system (RAAS) is involved in the regulation of the blood pressure, water- and electrolyte balance. Pathophysiologically,...
Žanrovska analiza pomorskopravnih tekstova i ostvarenje prijevodnih univerzalija u njihovim prijevodima s engleskoga jezika
Žanrovska analiza pomorskopravnih tekstova i ostvarenje prijevodnih univerzalija u njihovim prijevodima s engleskoga jezika
Genre implies formal and stylistic conventions of a particular text type, which inevitably affects the translation process. This „force of genre bias“ (Prieto Ramos, 2014) has been...
Angiotensin II Induces Oxidative Stress in Prostate Cancer
Angiotensin II Induces Oxidative Stress in Prostate Cancer
Abstract
Angiotensin II has been shown to be a cytokine especially acting as a growth factor. A local renin-angiotensin system has been identified in the prostate gl...
Interrelationships Between Angiotensin, Norepinephrine, Epinephrine, Aldosterone Secretion, and Electrolyte Metabolism in Man
Interrelationships Between Angiotensin, Norepinephrine, Epinephrine, Aldosterone Secretion, and Electrolyte Metabolism in Man
Oversecretion of aldosterone is a consistent finding in the syndrome of malignant hypertension. Infusion of angiotensin has been consistently shown to induce an increased secretion...
Pathological Role of Angiotensin II in Severe COVID-19
Pathological Role of Angiotensin II in Severe COVID-19
AbstractThe activated renin–angiotensin system induces a prothrombotic state resulting from the imbalance between coagulation and fibrinolysis. Angiotensin II is the central effect...

