Search Results - "Tong, Xiaoyong"
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Cross-Talk between Mechanosensitive Ion Channels and Calcium Regulatory Proteins in Cardiovascular Health and Disease
Published in International journal of molecular sciences (16-08-2021)“…Mechanosensitive ion channels are widely expressed in the cardiovascular system. They translate mechanical forces including shear stress and stretch into…”
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Autophagy and oxidative stress in cardiovascular diseases
Published in Biochimica et biophysica acta (01-02-2015)“…Autophagy is a highly conserved degradation process by which intracellular components, including soluble macromolecules (e.g. nucleic acids, proteins,…”
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Editorial: Mechanism and therapeutic potential of macrophages in metabolic and cardiovascular diseases
Published in Frontiers in immunology (19-12-2023)Get full text
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Editorial: Bioactive substances-mediated targeted therapy of cardio-cerebrovascular diseases
Published in Frontiers in pharmacology (02-02-2023)Get full text
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Vascular Oxidative Stress: The Common Link in Hypertensive and Diabetic Vascular Disease
Published in Journal of cardiovascular pharmacology (01-04-2010)“…Vascular disease in hypertension and diabetes is associated with increased oxidants. The oxidants arise from NADPH oxidase, xanthine oxidase, and mitochondria…”
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The Therapeutic Strategies Targeting Mitochondrial Metabolism in Cardiovascular Disease
Published in Pharmaceutics (01-12-2022)“…Cardiovascular disease (CVD) is a group of systemic disorders threatening human health with complex pathogenesis, among which mitochondrial energy metabolism…”
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Inactivation of cysteine 674 in the SERCA2 accelerates experimental aortic aneurysm
Published in Journal of molecular and cellular cardiology (01-02-2020)“…Sarcoplasmic/endoplasmic reticulum Ca2+ ATPase 2 (SERCA2) is vital to maintain intracellular calcium homeostasis. SERCA2 cysteine 674 (C674) is highly…”
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Upregulation of Nox4 by TGFβ1 Oxidizes SERCA and Inhibits NO in Arterial Smooth Muscle of the Prediabetic Zucker Rat
Published in Circulation research (15-10-2010)“…RATIONALE:Vascular smooth muscle cell (SMC) migration is an important pathological process in several vascular occlusive diseases, including atherosclerosis…”
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Substitution of the SERCA2 Cys674 reactive thiol accelerates atherosclerosis by inducing endoplasmic reticulum stress and inflammation
Published in British journal of pharmacology (01-10-2022)“…Background and Purpose The cysteine674 (C674) thiol of sarcoplasmic/endoplasmic reticulum Ca2+ ATPase 2 is easily and irreversibly oxidized under…”
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CDN1163 alleviates SERCA2 dysfunction-induced pulmonary vascular remodeling by inhibiting the phenotypic transition of pulmonary artery smooth muscle cells
Published in Clinical and experimental hypertension (1993) (31-12-2023)“…BACKGROUND AND PURPOSESubstitution of Cys674 (C674) in the sarcoplasmic/endoplasmic reticulum Ca2+ ATPase 2 (SERCA2) causes SERCA2 dysfunction which leads to…”
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Sodium-glucose cotransporter 2 inhibitors attenuate vascular calcification by suppressing endoplasmic reticulum protein thioredoxin domain containing 5 dependent osteogenic reprogramming
Published in Redox biology (01-07-2024)“…Vascular calcification is strongly linked to the development of major adverse cardiovascular events, but effective treatments are lacking. Sodium-glucose…”
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Glutathione Adducts on Sarcoplasmic/Endoplasmic Reticulum Ca2+ ATPase Cys-674 Regulate Endothelial Cell Calcium Stores and Angiogenic Function as Well as Promote Ischemic Blood Flow Recovery
Published in The Journal of biological chemistry (18-07-2014)“…The sarco/endoplasmic reticulum Ca2+ ATPase (SERCA) is key to Ca2+ homeostasis and is redox-regulated by reversible glutathione (GSH) adducts on the cysteine…”
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Both hydrogen peroxide and transforming growth factor beta 1 contribute to endothelial Nox4 mediated angiogenesis in endothelial Nox4 transgenic mouse lines
Published in Biochimica et biophysica acta (01-12-2014)“…Vascular endothelial cells (ECs) are responsible for post-ischemic angiogenesis, a process that is regulated by reactive oxygen species. Recent studies…”
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Endothelial Nox4-based NADPH oxidase regulates atherosclerosis via soluble epoxide hydrolase
Published in Biochimica et biophysica acta. Molecular basis of disease (01-06-2017)“…Nox4-based NADPH oxidase is a major reactive oxygen species-generating enzyme in the vasculature, but its role in atherosclerosis remains controversial. Our…”
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Nitroxyl Activates SERCA in Cardiac Myocytes via Glutathiolation of Cysteine 674
Published in Circulation research (27-03-2009)“…Nitroxyl (HNO) exerts inotropic and lusitropic effects in myocardium, in part via activation of SERCA (sarcoplasmic reticulum calcium ATPase). To elucidate the…”
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Role of smooth muscle Nox4-based NADPH oxidase in neointimal hyperplasia
Published in Journal of molecular and cellular cardiology (01-12-2015)“…Abstract Elevated levels of reactive oxygen species (ROS) in the vascular wall play a key role in the development of neointimal hyperplasia. Nox4-based NADPH…”
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Inactivation of Cys674 in SERCA2 increases BP by inducing endoplasmic reticulum stress and soluble epoxide hydrolase
Published in British journal of pharmacology (01-04-2020)“…Background and Purpose The kidney is essential in regulating sodium homeostasis and BP. The irreversible oxidation of Cys674 (C674) in the…”
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Targeting the redox regulation of SERCA in vascular physiology and disease
Published in Current opinion in pharmacology (01-04-2010)“…The sarco/endoplasmic reticulum calcium ATPase (SERCA) is essential for the control of intracellular free Ca2+ levels. Although the importance for this enzyme…”
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Pro-atherogenic role of smooth muscle Nox4-based NADPH oxidase
Published in Journal of molecular and cellular cardiology (01-03-2016)“…Abstract Nox4-based NADPH oxidase is a major reactive oxygen species-generating enzyme in the vasculature, but its role in atherosclerosis remains…”
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The substitution of SERCA2 redox cysteine 674 promotes pulmonary vascular remodeling by activating IRE1α/XBP1s pathway
Published in Acta pharmaceutica Sinica. B (01-05-2022)“…Pulmonary hypertension (PH) is a life-threatening disease characterized by pulmonary vascular remodeling, in which hyperproliferation of pulmonary artery…”
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