Spironolactone treatment attenuates vascular dysfunction in type 2 diabetic mice by decreasing oxidative stress and restoring NO/GC signaling

被引:30
作者
Silva, Marcondes A. B. [1 ]
Bruder-Nascimento, Thiago [1 ]
Cau, Stefany B. A. [1 ]
Lopes, Rheure A. M. [1 ]
Mestriner, Fabiola L. A. C. [1 ]
Fais, Rafael S. [1 ]
Touyz, Rhian M. [2 ]
Tostes, Rita C. [1 ]
机构
[1] Univ Sao Paulo, Ribeirao Preto Med Sch, Dept Pharmacol, BR-14049900 Ribeirao Preto, SP, Brazil
[2] Univ Glasgow, BHF Glasgow Cardiovasc Res Ctr, Inst Cardiovasc & Med Sci, Glasgow, Lanark, Scotland
来源
FRONTIERS IN PHYSIOLOGY | 2015年 / 6卷
基金
巴西圣保罗研究基金会;
关键词
type; 2; diabetes; aldosterone; mineralocorticoid receptor; vascular; oxidative stress; NITRIC-OXIDE SYNTHASE; MINERALOCORTICOID RECEPTOR; ENDOTHELIAL DYSFUNCTION; HYPERPOLARIZING FACTOR; CARDIOVASCULAR-DISEASE; RESISTANCE VESSELS; HEART-FAILURE; KNOCKOUT MICE; DB/DB MICE; INSULIN-RESISTANCE;
D O I
10.3389/fphys.2015.00269
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Type 2 diabetes (DM2) increases the risk of cardiovascular disease. Aldosterone, which has pro oxidative and pro inflammatory effects in the cardiovascular system, is positively regulated in DM2. We assessed whether blockade of mineralocorticoid receptors (MR) with spironolactone decreases reactive oxygen species (ROS)-associated vascular dysfunction and improves vascular nitric oxide (NO) signaling in diabetes. Leptin receptor knockout [LepR(db)/LepR(db) (db/db)] mice, a model of DM2, and their counterpart controls [LepR(db)/Lep(R+)(db/+) mice] received spironolactone (50 mg/kg body weight/day) or vehicle (ethanol 1%) via oral per gavage for 6 weeks. Spironolactone treatment abolished endothelial dysfunction and increased endothelial nitric oxide synthase (eNOS) phosphorylation (Ser(1177)) in arteries from db/db mice, determined by acetylcholine-induced relaxation and Western Blot analysis, respectively. MR antagonist therapy also abrogated augmented ROS-generation in aorta from diabetic mice, determined by lucigenin luminescence assay. Spironolactone treatment increased superoxide dismutase-1 and catalase expression, improved sodium nitroprusside and BAY 41-2272-induced relaxation, and increased soluble guanylyl cyclase (sGC) beta, subunit expression in arteries from db/db mice. Our results demonstrate that spironolactone decreases diabetes associated vascular oxidative stress and prevents vascular dysfunction through processes involving increased expression of antioxidant enzymes and sGC. These findings further elucidate redox-sensitive mechanisms whereby spironolactone protects against vascular injury in diabetes.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Liver X receptor agonist treatment attenuates cardiac dysfunction in type 2 diabetic db/db mice
    Qing He
    Jun Pu
    Ancai Yuan
    Tianbao Yao
    Xiaoying Ying
    Yichao Zhao
    Longwei Xu
    Huan Tong
    Ben He
    Cardiovascular Diabetology, 13
  • [22] The sesame lignan sesamin attenuates vascular dysfunction in streptozotocin diabetic rats: Involvement of nitric oxide and oxidative stress
    Baluchnejadmojarad, Tourandokht
    Roghani, Mehrdad
    Nadoushan, Mohammad-Reza Jalali
    Mahdavi, Mohammad-Reza Vaez
    Kalalian-Moghaddam, Hamid
    Roghani-Dehkordi, Farshad
    Dariani, Sharareh
    Raoufi, Safoura
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2013, 698 (1-3) : 316 - 321
  • [23] Role of advanced glycation end products with oxidative stress in resistance artery dysfunction in type 2 diabetic mice
    Su, Jun
    Lucchesi, Pamela A.
    Gonzalez-Villalobos, Romer A.
    Palen, Desiree I.
    Rezk, Bashir M.
    Suzuki, Yasuhiro
    Boulares, Hamid A.
    Matrougui, Khalid
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2008, 28 (08) : 1432 - 1438
  • [24] Long-Acting Phosphodiesterase-5 Inhibitor Tadalafil Attenuates Oxidative Stress and Protects Against Myocardial Ischemia/Reperfusion Injury in Type 2 Diabetic Mice
    Koka, Saisudha
    Das, Anindita
    Salloum, Fadi N.
    Kukreja, Rakesh C.
    CIRCULATION, 2011, 124 (21)
  • [25] Moringa oleifera from Cambodia Ameliorates Oxidative Stress, Hyperglycemia, and Kidney Dysfunction in Type 2 Diabetic Mice
    Tang, Yujiao
    Choi, Eun-Ju
    Han, Weon Cheol
    Oh, Mirae
    Kim, Jin
    Hwang, Ji-Young
    Park, Pyo-Jam
    Moon, Sang-Ho
    Kim, Yon-Suk
    Kim, Eun-Kyung
    JOURNAL OF MEDICINAL FOOD, 2017, 20 (05) : 502 - 510
  • [26] Cannabidiol Attenuates Cardiac Dysfunction, Oxidative Stress, Fibrosis, and Inflammatory and Cell Death Signaling Pathways in Diabetic Cardiomyopathy
    Rajesh, Mohanraj
    Mukhopadhyay, Partha
    Batkai, Sandor
    Patel, Vivek
    Saito, Keita
    Matsumoto, Shingo
    Kashiwaya, Yoshihiro
    Horvath, Bela
    Mukhopadhyay, Bani
    Becker, Lauren
    Hasko, Gyoergy
    Liaudet, Lucas
    Wink, David A.
    Veves, Aristidis
    Mechoulam, Raphael
    Pacher, Pal
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2010, 56 (25) : 2115 - 2125
  • [27] Endothelial dysfunction and oxidative stress in type 1 and type 2 diabetic patients without clinical macrovascular complications
    De Mattia, Giancaylo
    Bravi, Maria Cyistina
    Laurenti, Oriana
    Moretti, Arianna
    Cipriani, Rosalba
    Gatti, Alessandra
    Mandosi, Elisabetta
    Morano, Susanna
    DIABETES RESEARCH AND CLINICAL PRACTICE, 2008, 79 (02) : 337 - 342
  • [28] Angiotensin II Type 1 Receptor-Dependent Oxidative Stress Mediates Endothelial Dysfunction in Type 2 Diabetic Mice
    Wong, Wing Tak
    Tian, Xiao Yu
    Xu, Aimin
    Ng, Chi Fai
    Lee, Hung Kay
    Chen, Zhen Yu
    Au, Chak Leung
    Yao, Xiaoqiang
    Huang, Yu
    ANTIOXIDANTS & REDOX SIGNALING, 2010, 13 (06) : 757 - 768
  • [29] Oxidative stress in skeletal muscle impairs mitochondrial respiration and limits exercise capacity in type 2 diabetic mice
    Yokota, Takashi
    Kinugawa, Shintaro
    Hirabayashi, Kagami
    Matsushima, Shouji
    Inoue, Naoki
    Ohta, Yukihiro
    Hamaguchi, Sanae
    Sobirin, Mochamad A.
    Ono, Taisuke
    Suga, Tadashi
    Kuroda, Satoshi
    Tanaka, Shinya
    Terasaki, Fumio
    Okita, Koichi
    Tsutsui, Hiroyuki
    AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2009, 297 (03): : H1069 - H1077
  • [30] C2CD4B Evokes Oxidative Stress and Vascular Dysfunction via a PI3K/Akt/PKCα-Signaling Pathway
    Di Pietro, Paola
    Abate, Angela Carmelita
    Prete, Valeria
    Damato, Antonio
    Venturini, Eleonora
    Rusciano, Maria Rosaria
    Izzo, Carmine
    Visco, Valeria
    Ciccarelli, Michele
    Vecchione, Carmine
    Carrizzo, Albino
    ANTIOXIDANTS, 2024, 13 (01)