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Yin Hua Zhang

Seoul National University · 医学

研究室紹介

Professor Yin Hua Zhang's research lab focuses on the role of nitric oxide (NO) signaling, particularly through neuronal nitric oxide synthase (nNOS/NOS1), in cardiac function and disease. The lab investigates how NO modulates calcium handling, myocardial relaxation, and structural remodeling in both healthy and pathological hearts, with a strong emphasis on hypertension, heart failure, and pre-eclampsia. Using animal models and cellular studies, the lab explores the post-translational modifications of target proteins and the dynamic regulation of NOS isoforms under stress conditions. Their work highlights the protective roles of nNOS in maintaining cardiac homeostasis and preventing adverse remodeling.

nNOSnitric oxidecalcium handlingcardiac remodelinghypertension

Research Overview

Papers
153
Total Citations
2,107
Papers (5y)
31
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
31total
2022
2023
2024
2025
2026
Citations per year (5y)
131total
20222023202420252026

Selected Papers

15
1
Article|117 citations·2007
Reduced Phospholamban Phosphorylation Is Associated With Impaired Relaxation in Left Ventricular Myocytes From Neuronal NO Synthase–Deficient Mice
Yin Hua Zhang, Mei Hua Zhang, Claire Sears, K Emanuel, Charles Redwood, Ali El‐Armouche, Evangelia G. Kranias, Barbara Casadei
SJR Q1Circulation ResearchOA

Stimulation of nitric oxide (NO) release from the coronary endothelium facilitates myocardial relaxation via a cGMP-dependent reduction in myofilament Ca2+ sensitivity. Recent evidence suggests that NO released by a neuronal NO synthase (nNOS) in the myocardium can also hasten left ventricular relaxation; however, the mechanism underlying these findings is uncertain. Here we show that both relaxation (TR50) and the rate of [Ca2+]i transient decay (tau) are significantly prolonged in field-stimul

Cardiology and Cardiovascular MedicineMedicine
2
Review|90 citations·2014
Molecular mechanisms of neuronal nitric oxide synthase in cardiac function and pathophysiology
Yin Hua Zhang, Chun Zi Jin, Ji Hyun Jang, Yue Wang
SJR Q1The Journal of PhysiologyOA

Neuronal nitric oxide synthase (nNOS or NOS1) is the major endogenous source of myocardial nitric oxide (NO), which facilitates cardiac relaxation and modulates contraction. In the healthy heart it regulates intracellular Ca(2+), signalling pathways and oxidative homeostasis and is upregulated from early phases upon pathogenic insult. nNOS plays pivotal roles in protecting the myocardium from increased oxidative stress, systolic/diastolic dysfunction, adverse structural remodelling and arrhythmi

PhysiologyMedicine
3
Review|74 citations·2011
Sub-cellular targeting of constitutive NOS in health and disease
Yin Hua Zhang, Barbara Casadei
SJR Q1Journal of Molecular and Cellular Cardiology
PhysiologyMedicine
4
Review|73 citations·2008
Regulation of cardiac Na+–Ca2+ exchanger activity by protein kinase phosphorylation—Still a paradox?
Yin Hua Zhang, Jules C. Hancox
SJR Q1Cell Calcium
Cardiology and Cardiovascular MedicineMedicine
5
Article|41 citations·2013
Myofilament Ca2+ desensitization mediates positive lusitropic effect of neuronal nitric oxide synthase in left ventricular myocytes from murine hypertensive heart
Chun Zi Jin, Ji Hyun Jang, Hae Jin Kim, Yue Wang, In‐Chang Hwang, Sakthivel Sadayappan, Byung Mun Park, Suhn Hee Kim, Zhe Jin, Eun Yeong Seo, Kyung‐Hee Kim, Yong‐Jin Kim
SJR Q1Journal of Molecular and Cellular CardiologyOA

Neuronal nitric oxide synthase (NOS1 or nNOS) exerts negative inotropic and positive lusitropic effects through Ca(2+) handling processes in cardiac myocytes from healthy hearts. However, underlying mechanisms of NOS1 in diseased hearts remain unclear. The present study aims to investigate this question in angiotensin II (Ang II)-induced hypertensive rat hearts (HP). Our results showed that the systolic function of left ventricle (LV) was reduced and diastolic function was unaltered (echocardiog

Cardiology and Cardiovascular MedicineMedicine
6
Preprint|40 citations·2017
Nitric oxide signalling and neuronal nitric oxide synthase in the heart under stress
Yin Hua Zhang
SJR Q1F1000ResearchOA

Nitric oxide (NO) is an imperative regulator of the cardiovascular system and is a critical mechanism in preventing the pathogenesis and progression of the diseased heart. The scenario of bioavailable NO in the myocardium is complex: 1) NO is derived from both endogenous NO synthases (endothelial, neuronal, and/or inducible NOSs [eNOS, nNOS, and/or iNOS]) and exogenous sources (entero-salivary NO pathway) and the amount of NO from exogenous sources varies significantly; 2) NOSs are located at di

PhysiologyMedicine
7
Article|40 citations·2009
The role of nitric oxide and reactive oxygen species in the positive inotropic response to mechanical stretch in the mammalian myocardium
Yin Hua Zhang, Lewis Dingle, Rachel Hall, Barbara Casadei
SJR Q1Biochimica et Biophysica Acta (BBA) - BioenergeticsOA

The endothelial nitric oxide synthase (eNOS) has been implicated in the rapid (Frank-Starling) and slow (Anrep) cardiac response to stretch. Our work and that of others have demonstrated that a neuronal nitric oxide synthase (nNOS) localized to the myocardium plays an important role in the regulation of cardiac function and calcium handling. However, the effect of nNOS on the myocardial response to stretch has yet to be investigated. Recent evidence suggests that the stretch-induced release of a

PhysiologyMedicine
8
Article|40 citations·2023
Neutrophil-to-lymphocyte ratio (NLR) as a predictive index for liver and coagulation dysfunction in preeclampsia patients
Hui Xing Cui, Chen Chen, Young Mi Jung, Zhen Yi Guo, Chun Yu Dong, Seung Mi Lee, Yin Hua Zhang
SJR Q1BMC Pregnancy and ChildbirthOA

BACKGROUND: Pre-eclampsia (PE) is a pregnancy disorder that is related to an enhanced immune response. Immune cell characteristics such as neutrophil or monocyte to lymphocyte ratios (NLR, MLR) are known to be related to kidney and liver dysfunction in hypertensive patients. Here, we aimed to analyze the correlations between NLR, MLR and platelet to lymphocyte ratio (PLR) and liver, renal and coagulation functional parameters and the impacts of these immune cell profiles to the prognostic signif

Obstetrics and GynecologyMedicine
9
Review|40 citations·2016
Neuronal nitric oxide synthase in hypertension – an update
Yin Hua Zhang
SJR Q1Clinical HypertensionOA

Hypertension is a prevalent condition worldwide and is the key risk factor for fatal cardiovascular complications, such as stroke, sudden cardiac death and heart failure. Reduced bioavailability of nitric oxide (NO) in the endothelium is an important precursor for impaired vasodilation and hypertension. In the heart, NO deficiency deteriorates the adverse consequences of pressure-overload and causes cardiac hypertrophy, fibrosis and myocardial infarction which lead to fatal heart failure and sud

PhysiologyMedicine
10
Article|33 citations·2015
ROS and endothelial nitric oxide synthase (eNOS)-dependent trafficking of angiotensin II type 2 receptor begets neuronal NOS in cardiac myocytes
Ji Hyun Jang, Jung Nyeo Chun, Shigeo Godo, Guangyu Wu, Hiroaki Shimokawa, Chun Zi Jin, Ju‐Hong Jeon, Sung Joon Kim, Zhe Jin, Yin Hua Zhang
SJR Q1Basic Research in CardiologyOA
Cardiology and Cardiovascular MedicineMedicine
11
Article|33 citations·2003
A Novel, Voltage-Dependent Nonselective Cation Current Activated by Insulin in Guinea Pig Isolated Ventricular Myocytes
Yin Hua Zhang, Jules C. Hancox
SJR Q1Circulation ResearchOA

Insulin regulates cardiac metabolism and function by targeting metabolic proteins or voltage-gated ion channels. This study provides evidence for a novel, voltage-dependent, nonselective cation channel (NSCC) in the heart. Under voltage clamp at 37 degrees C and with major known conductances blocked, insulin (1 nmol/L to 1 micromol/L) activated an outwardly rectifying current (Iinsulin) in guinea pig ventricular myocytes. Iinsulin could be carried by Cs+, K+, Li+, and Na+ ions but not by NMDG+.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|29 citations·2012
Neuronal nitric oxide synthase is up-regulated by angiotensin II and attenuates NADPH oxidase activity and facilitates relaxation in murine left ventricular myocytes
Chun Zi Jin, Ji Hyun Jang, Yue Wang, Jae Gon Kim, Young Min Bae, Jun Shi, Cheng Ri, Sung Joon Kim, Yin Hua Zhang
SJR Q1Journal of Molecular and Cellular CardiologyOA
PhysiologyMedicine
13
Review|29 citations·2008
Stretch-activated non-selective cation channel: A causal link between mechanical stretch and atrial natriuretic peptide secretion
Yin Hua Zhang, Jae Boum Youm, Yung E. Earm
SJR Q1Progress in Biophysics and Molecular Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|22 citations·2020
Cardiac complex II activity is enhanced by fat and mediates greater mitochondrial oxygen consumption following hypoxic re-oxygenation
Shichao Zhu, Chen Chen, Yu Na Wu, Majid Ahmed, Ashraf Kitmitto, Adam Greenstein, Sung Joon Kim, Yong Shao, Yin Hua Zhang
SJR Q1Pflügers Archiv - European Journal of Physiology
Pathology and Forensic MedicineMedicine
15
Article|18 citations·2022
Human platelet mitochondria improve the mitochondrial and cardiac function of donor heart
Zhi Jun Lin, Soomin Kim, Hui Xing Cui, Kyuboem Han, Hong Kyu Lee, Chun‐Hyung Kim, Young Cheol Kang, Yin Hua Zhang
SJR Q1Pflügers Archiv - European Journal of Physiology
Pathology and Forensic MedicineMedicine

Research Areas

Cardiology and Cardiovascular MedicinePhysiologyMolecular BiologyObstetrics and GynecologySensory SystemsPathology and Forensic Medicine

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