Reduction of oxidative stress markers in the corpora cavernosa and media of penile dorsal artery in middle-aged rats treated with COMP-4
Autor: | Kendra Arriaga Castellanos, Monica G. Ferrini, Sabine Nguyen, Andrea Abraham |
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Rok vydání: | 2020 |
Předmět: |
medicine.medical_specialty
Vascular smooth muscle Urology 030232 urology & nephrology medicine.disease_cause Nitric oxide 03 medical and health sciences chemistry.chemical_compound fluids and secretions 0302 clinical medicine food Internal medicine medicine Myocyte Paullinia cupana 030219 obstetrics & reproductive medicine biology business.industry Nitrotyrosine food.food Endocrinology chemistry Myeloperoxidase biology.protein business Oxidative stress Intracellular |
Zdroj: | International Journal of Impotence Research. 33:67-74 |
ISSN: | 1476-5489 0955-9930 |
Popis: | COMP-4, a nutraceutical combination consisting of ginger rhizome, muira puama, Paullinia cupana, and L-citrulline, enhances intracellular nitric oxide (NO) production by the corporal smooth muscle cells (CSMC). This study aims to determine if the previously shown beneficial effect of COMP-4 on the histology and function of the aging penis is associated with an antioxidative effect from endogenously produced NO. Ten-month-old male rats were treated daily for 2 months with COMP-4 or vehicle at which time the corpora and penile dorsal artery (PDA) were evaluated by immunohistochemistry for (a) apoptosis (b) proliferative cell nuclear antigen, (c) heme oxygenase-1 (HO-1), (d) myeloperoxidase (MPO), and (e) nitrotyrosine (NT). CSMC were cultured and incubated with COMP-4 in order to determine intracellular oxidative stress via the GSH/GSSG ratio. In both the corpora and PDA, daily treatment with COMP-4 resulted in an increase in both smooth muscle cell proliferation and HO-1 expression as well as a decrease in MPO. There was no change in either apoptosis or NT expression. In the CSMC cell culture, treatment with COMP-4 increased the intracellular GSH/GSSG ratio. COMP-4 appears to have an antioxidant effect on the aging vascular smooth muscle cells both in the corpora and peripheral vasculature. |
Databáze: | OpenAIRE |
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