Stachydrine hydrochloride reduces NOX2 activity to suppress oxidative stress levels to improve cardiac insufficiency

被引:0
|
作者
Fu, Mengwei [1 ]
Guo, Shuting [1 ]
Yang, Songru [1 ]
Yang, Kaijing [1 ]
Li, Rongshan [1 ]
Shan, Xiaoli [1 ]
Zhao, Pei [1 ]
Zhang, Chen [2 ]
Guo, Wei [2 ]
Xu, Ming [2 ]
Chen, Huihua [1 ]
Lu, Rong [1 ]
机构
[1] Shanghai Univ Tradit Chinese Med, Sch Tradit Chinese Med, Shanghai 201203, Peoples R China
[2] Shanghai Univ Tradit Chinese Med, Sch Integrat Med, Shanghai 201203, Peoples R China
基金
中国国家自然科学基金;
关键词
Stachydrine hydrochloride; Cardiac insufficiency; Excitation-contraction decoupling; Oxidative stress; Nox2; HYPERTROPHY; HEART; ACTIVATION; PRESSURE; PROTECTS;
D O I
10.1016/j.phymed.2025.156621
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Oxidative stress is a significant cause in the occurrence of cardiac insufficiency. Nicotinamide adenine dinucleotide phosphate (NADPH) oxidase2 (NOX2)-derived reactive oxygen species (ROS) play a pivotal role in oxidative stress-induced excitation-contraction decoupling. Stachydrine hydrochloride (Sta) reduces pressure overload-induced cardiac insufficiency, which may be related to the NOX2-ROS pathway, as demonstrated by our earlier research. However, the mechanism through which Sta specifically affects NOX2 remains unknown. Purpose: In order to investigate whether Sta plays a cardioprotective role by inhibiting NOX2 activity, we explored the specific mechanism by which Sta improves cardiac function by affecting NOX2-mediated oxidative stress in this study. Methods: Molecular docking and cellular thermal shift assay (CETSA) were performed to verify whether Sta can bind to individual subunits of NOX2. We induced models of cardiac insufficiency in the compensatory phase (cardiac hypertrophy) by phenylephrine (PE) in vivo and in vitro and treated with Sta and GSK2795039 (NOX2 inhibitor). Cardiac function and structure were observed by echocardiography analysis. We detected the expression and localization of NOX2 subunits and calcium channel proteins, also detected the activities of ROS and NOX2, SOD, and GSH, and observed intracardiac calcium homeostasis and systolic-diastolic function in cardiomyocytes. Secondly, we used adenovirus and adeno-associated virus transfection for cardiac-specific overexpression of NOX2 in vivo and in vitro respectively, and also treated with Sta to observe NOX2 activation indexes and ROS levels, cardiac function and cardiomyocyte function in mice. Results: Prior to our investigation, we discovered that Sta could bind to NOX2 through molecular docking and CETSA. The findings demonstrated that Sta decreased the expression levels of gp91phox and p67phox, as well as the phosphorylation levels of p47phox, and by preventing p67phox and p47phox from translocating across cell membranes. NOX2 activity inhibition by Sta suppresses ROS production. Sta reduced ROS-induced oxidation of Ca2+/calmodulin protein kinase II and modulated excitatory-contractile coupling via sarcoplasmic reticulum calcium pumps. Cardiac-specific overexpression of gp91phox promotes membrane translocation of p67phox and p47phox, increases NOX2 activity, and promotes ROS generation. Sta inhibition of gp91phox overexpression reduced the membrane translocation of p67phox and p47phox, decreased NOX2 activity and oxidative stress levels, and restored excitatory-contractor-coupled myocardial function. Conclusions: Our study innovatively verified the key role of NOX2 in cardiac insufficiency. Sta downgrades NOX2's activity by suppressing the protein level of gp91phox and the membrane transport of p67phox and p47phox,
引用
收藏
页数:14
相关论文
共 50 条
  • [1] INHIBITION OF NOX2 REDUCES LOCOMOTOR IMPAIRMENT, INFLAMMATION AND OXIDATIVE STRESS AFTER SPINAL CORD INJURY
    Khayrullina, G.
    Bermudez, S.
    Byrnes, K. R.
    JOURNAL OF NEUROTRAUMA, 2014, 31 (12) : A14 - A14
  • [2] Inhibition of NOX2 reduces locomotor impairment, inflammation, and oxidative stress after spinal cord injury
    Guzal Khayrullina
    Sara Bermudez
    Kimberly R. Byrnes
    Journal of Neuroinflammation, 12
  • [3] NOX2 inhibition reduces oxidative stress and prolongs survival of mice with Kras induced myeloproliferative disease
    Aydin, Ebru
    Hallner, Alexander
    Wiktorin, Hanna Grauers
    Staffas, Anna
    Hellstrand, Kristoffer
    Martner, Anna
    CANCER RESEARCH, 2018, 78 (13)
  • [4] Inhibition of NOX2 reduces locomotor impairment, inflammation, and oxidative stress after spinal cord injury
    Khayrullina, Guzal
    Bermudez, Sara
    Byrnes, Kimberly R.
    JOURNAL OF NEUROINFLAMMATION, 2015, 12
  • [5] NOX2 inhibition reduces oxidative stress and prolongs survival in murine KRAS-induced myeloproliferative disease
    Aydin, Ebru
    Hallner, Alexander
    Wiktorin, Hanna Grauers
    Staffas, Anna
    Hellstrand, Kristoffer
    Martner, Anna
    ONCOGENE, 2019, 38 (09) : 1534 - 1543
  • [6] NOX2 inhibition reduces oxidative stress and prolongs survival in murine KRAS-induced myeloproliferative disease
    Ebru Aydin
    Alexander Hallner
    Hanna Grauers Wiktorin
    Anna Staffas
    Kristoffer Hellstrand
    Anna Martner
    Oncogene, 2019, 38 : 1534 - 1543
  • [7] Nox2 Is Determinant for Ischemia-Induced Oxidative Stress and Arterial Vasodilatation: A Pilot Study in Patients With Hereditary Nox2 Deficiency
    Violi, F.
    Sanguigni, V.
    Loffredo, L.
    Carnevale, R.
    Buchetti, B.
    Finocchi, A.
    Tesauro, M.
    Rossi, P.
    Pignatelli, P.
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2006, 26 (08) : E131 - U12
  • [8] Obesity and Hypercholesterolemia are Associated with NOX2 Generated Oxidative Stress and Arterial Dysfunction
    Loffredo, Lorenzo
    Martino, Francesco
    Carnevale, Roberto
    Pignatelli, Pasquale
    Catasca, Elisa
    Perri, Ludovica
    Calabrese, Cinzia M.
    Palumbo, Maria Michela
    Baratta, Francesco
    Del Ben, Maria
    Angelico, Francesco
    Violi, Francesco
    JOURNAL OF PEDIATRICS, 2012, 161 (06): : 1004 - 1009
  • [9] NOX2 Inhibition Reverses Atrial Remodeling Caused by Increased Oxidative Stress and Reduces AF in Diet Induced Obese Mice
    Sridhar, Arvind
    Pavel, Mahmud Arif
    Ly, Olivia T.
    Chen, Hanna
    Barney, Miles
    Gonzalez, Francisco
    Perike, Srikanth
    McCauley, Mark
    Rehman, Jalees
    Darbar, Dawood
    CIRCULATION, 2022, 146
  • [10] Oxidative Stress and Gut-Derived Lipopolysaccharides in Neurodegenerative Disease: Role of NOX2
    Loffredo, Lorenzo
    Ettorre, Evaristo
    Zicari, Anna Maria
    Inghilleri, Maurizio
    Nocella, Cristina
    Perri, Ludovica
    Spalice, Alberto
    Fossati, Chiara
    De Lucia, Maria Caterina
    Pigozzi, Fabio
    Cacciafesta, Mauro
    Violi, Francesco
    Carnevale, Roberto
    OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2020, 2020