Protective Effects of Resveratrol Against Airway Hyperreactivity, Oxidative Stress, and Lung Inflammation in a Rat Pup Model of Bronchopulmonary Dysplasia

被引:0
|
作者
Recica, Shkelzen [1 ]
Kryeziu, Islam [1 ]
Thaci, Qendrim [1 ]
Avtanski, Dimiter [2 ]
Mladenov, Mitko [3 ]
Basholli-Salihu, Mimoza [1 ]
Sopi, Ramadan B. [1 ]
机构
[1] Univ Prishtina, Fac Med, Prishtina, Kosovo
[2] Feinstein Inst Med Res, Manhasset, NY USA
[3] Sts Cyril & Methodius Univ, Inst Biol, Fac Nat Sci & Math, Skopje, North Macedonia
关键词
Bronchopulmonary dysplasia; Hyperoxia; Airway hyperreactivity; Resveratrol; Pro-inflammatory cytokine; NITRIC-OXIDE; RED WINE; SUPEROXIDE-DISMUTASE; HYPEROXIA; RELAXATION; EXPRESSION; OXYGEN; HYPERRESPONSIVENESS; ANTIOXIDANT; MECHANISMS;
D O I
10.33549/physiolres.935239
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Oxygen therapy provides an important treatment for preterm and low-birth-weight neonates, however, it has been shown that prolonged exposure to high levels of oxygen (hyperoxia) is one the factors contributing to the development of bronchopulmonary dysplasia (BPD) by inducing lung injury and airway hyperreactivity. There is no effective therapy against the adverse effects of hyperoxia. Therefore, this study was undertaken to test the hypothesis that natural phytoalexin resveratrol will overcome hyperoxia-induced airway hyperreactivity, oxidative stress, and lung inflammation. Newborn rats were exposed to hyperoxia (fraction of inspired oxygen - FiO 2 >95 % O 2 ) or ambient air (AA) for seven days. Resveratrol was supplemented either in vivo (30 mg<middle dot>kg -1 <middle dot>day -1 ) by intraperitoneal administration or in vitro the tracheal preparations in an organ bath (100 mu M). Contractile and relaxant responses were studied in tracheal smooth muscle (TSM) using the in vitro organ bath system. To explain the involvement of nitric oxide in the mechanisms of the protective effect of resveratrol against hyperoxia, a nitric oxide synthase inhibitor - N omega -nitro-L-arginine methyl ester (L-NAME), was administered in some sets of experiments. The superoxide dismutase (SOD) and glutathione peroxidase (GPx) activities and the tumor necrosis factor-alpha (TNF-alpha) and interleukin-1I3 (IL -1I3) levels in the lungs were determined. Resveratrol significantly reduced contraction and restored the impaired relaxation of hyperoxia-exposed TSM (p<0.001). L-NAME reduced the inhibitory effect of resveratrol on TSM contractility, as well as its promotion relaxant effect (p<0.01). Resveratrol preserved the SOD and GPx activities and decreased the expression of TNF-alpha and IL -1I3 in hyperoxic animals. The findings of this study demonstrate the protective effect of resveratrol against hyperoxia-induced airway hyperreactivity and lung damage and suggest that resveratrol might serve as a therapy prevent the adverse effects of neonatal hyperoxia.
引用
收藏
页码:239 / 251
页数:13
相关论文
共 50 条
  • [1] Resveratrol has protective effects against airway remodeling and airway hyperreactivity in a murine model of allergic airways disease
    Royce, Simon G.
    Dang, William
    Yuan, Gao
    Tran, Jenny
    El Osta, Assam
    Karagiannis, Tom C.
    Tang, Mimi L. K.
    PATHOBIOLOGY OF AGING AND AGE-RELATED DISEASES, 2011, 1 (01):
  • [2] The Effects of Resveratrol on Silica-Induced Lung Oxidative Stress and Inflammation in Rat
    Esfahani, Maryam
    Rahbar, Amir Hossein
    Asl, Sara Soleimani
    Bashirian, Saed
    Moeini, Effat Sadat Mir
    Mehri, Fereshteh
    SAFETY AND HEALTH AT WORK, 2023, 14 (01) : 118 - 123
  • [3] Protective effect of resveratrol against hepatic damage induced by heat stress in a rat model is associated with the regulation of oxidative stress and inflammation
    Cheng, Kang
    Yan, Enfa
    Song, Zhihua
    Li, Simian
    Zhang, Hao
    Zhang, Lili
    Wang, Chao
    Wang, Tian
    JOURNAL OF THERMAL BIOLOGY, 2019, 82 : 70 - 75
  • [4] The Effects of Resveratrol on Inflammation and Oxidative Stress in a Rat Model of Chronic Obstructive Pulmonary Disease
    Wang, Xiao-Li
    Li, Ting
    Li, Ji-Hong
    Miao, Shu-Ying
    Xiao, Xian-Zhong
    MOLECULES, 2017, 22 (09)
  • [5] Melatonin protects against oxidative damage in a neonatal rat model of bronchopulmonary dysplasia
    Li Pan
    Jian-Hua Fu
    Xin-Dong Xue
    Wei Xu
    Ping Zhou
    Bing Wei
    World Journal of Pediatrics, 2009, 5 : 216 - 221
  • [6] Melatonin protects against oxidative damage in a neonatal rat model of bronchopulmonary dysplasia
    Pan, Li
    Fu, Jian-Hua
    Xue, Xin-Dong
    Xu, Wei
    Zhou, Ping
    Wei, Bing
    WORLD JOURNAL OF PEDIATRICS, 2009, 5 (03) : 216 - 221
  • [7] Protective effects of quercetin against inflammation and oxidative stress in a rabbit model of knee osteoarthritis
    Wei, Bing
    Zhang, Yan
    Tang, Lixia
    Ji, Yikui
    Yan, Cheng
    Zhang, Xiaoke
    DRUG DEVELOPMENT RESEARCH, 2019, 80 (03) : 360 - 367
  • [8] Protective Effect of Metformin against Acute Inflammation and Oxidative Stress in Rat
    Pandey, Abhimanu
    Kumar, Vijay L.
    DRUG DEVELOPMENT RESEARCH, 2016, 77 (06) : 278 - 284
  • [9] Effects of Interleukin-1 receptor antagonist on airway remodeling and hyperreactivity in murine bronchopulmonary dysplasia induced by perinatal inflammation and hyperoxia
    Royce, S.
    Nold, M.
    Bui, C.
    Donovan, C.
    Lam, M.
    Lamanna, E.
    Rudloff, I
    Bourke, J.
    Nold, C.
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2016, 46 : 872 - 872
  • [10] A Guinea Pig Model of Airway Smooth Muscle Hyperreactivity Induced by Chronic Allergic Lung Inflammation: Contribution of Epithelium and Oxidative Stress
    Cesar Vasconcelos, Luiz Henrique
    Correia Silva, Maria da Conceicao
    Costa, Alana Cristina
    de Oliveira, Giuliana Amanda
    Luna de Souza, Iara Leao
    Queiroga, Fernando Ramos
    Araujo, Layanne da Cunha
    Cardoso, Glebia Alexa
    Righetti, Renato Fraga
    Silva, Alexandre Sergio
    da Silva, Patricia Mirella
    de Oliveira Carvalho, Carla Roberta
    Vieira, Giciane Carvalho
    Lopes Calvo Tiberio, Iolanda de Fatima
    Cavalcante, Fabiana de Andrade
    da Silva, Bagnolia Araujo
    FRONTIERS IN PHARMACOLOGY, 2019, 9