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Group #1

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Direct eNAMPT Involvement in Pulmonary Hypertension and Vascular Remodeling: Transcriptional Regulation by SOX and HIF2α[1]Xiaoguang Sun, [2]Belinda L Sun, [3]Aleksandra Babicheva, [4]Rebecca Vanderpool, [5]Radu C Oita, [6]Nancy Casanova, [7]Haiyang Tang, [8]Akash Gupta, [9]Heather Lynn, [10]Geetanjali Gupta, [11]Franz Rischard, [12]Saad Sammani, [13]Carrie L Kempf, [14]Liliana Moreno-Vinasco, [15]Mohamed Ahmed, [16]Sara M Camp, [17]Jian Wang, [18]Ankit A Desai, [19]Jason X-J Yuan, [20]Joe G N Garcia [Full author list]American Journal of Respiratory Cell and Molecular Biology [missing]DOI: 10.1165/RCMB.2019-0164OC [ORCID]
PubMed: 32142369 [ORCID]
microvasculature remodeling [missing]2020-03-06
Salusin-β Promotes Vascular Calcification via Nicotinamide Adenine Dinucleotide Phosphate/Reactive Oxygen Species-Mediated Klotho Downregulation[1]Haijian Sun, [2]Feng Zhang, [3]Yu Xu, [4]Shuo Sun, [5]Huiping Wang, [6]Qiong Du, [7]Chenxin Gu, [8]Stephen M Black, [9]Ying Han, [10]Haiyang Tang [Full author list]Antioxidants & Redox Signaling [missing]DOI: 10.1089/ARS.2019.7723 [ORCID]
PubMed: 31578871 [ORCID]
niacinamide [missing]; reactive oxygen species [missing]; vascular calcification [missing]2019-12-01
Nicotinamide Phosphoribosyltransferase Promotes Pulmonary Vascular Remodeling and Is a Therapeutic Target in Pulmonary Arterial Hypertension[1]Jiwang Chen, [2]Justin R Sysol, [3]Sunit Singla, [4]Shuangping Zhao, [5]Aya Yamamura, [6]Daniela Valdez-Jasso, [7]Taimur Abbasi, [8]Krystyna M Shioura, [9]Sakshi Sahni, [10]Vamsi Reddy, ..., [13]Jaime Torres, [14]Sara M Camp, [15]Haiyang Tang, [16]Shui Q Ye, [17]Suzy Comhair, ... [Full author list]Circulation [missing]DOI: 10.1161/CIRCULATIONAHA.116.024557 [ORCID]
PubMed: 28202489 [ORCID]
niacinamide [missing]; microvasculature remodeling [missing]2017-02-15
miR-17/20 Controls Prolyl Hydroxylase 2 (PHD2)/Hypoxia-Inducible Factor 1 (HIF1) to Regulate Pulmonary Artery Smooth Muscle Cell Proliferation[1]Tianji Chen, [2]Qiyuan Zhou, [3]Haiyang Tang, [4]Melike Bozkanat, [5]Jason X-J Yuan, [6]J Usha Raj, [7]Guofei Zhou [Full author list]Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease [missing]DOI: 10.1161/JAHA.116.004510 [ORCID]
PubMed: 27919930 [ORCID]
hypoxia [missing]2016-12-05
Calcium-Sensing Receptor Regulates Cytosolic [Ca 2+ ] and Plays a Major Role in the Development of Pulmonary Hypertension[1]Kimberly A Smith, [2]Ramon J Ayon, [3]Haiyang Tang, [4]Ayako Makino, [5]Jason X-J Yuan [Full author list]Frontiers in Physiology [missing]DOI: 10.3389/FPHYS.2016.00517 [ORCID]
PubMed: 27867361 [ORCID]
arterial hypertension [missing]; pulmonary hypertension [missing]2016-11-04
Genetic Insights into Pulmonary Arterial Hypertension. Application of Whole-Exome Sequencing to the Study of Pathogenic Mechanisms[1]Haiyang Tang, [2]Ankit A Desai, [3]Jason X-J Yuan [Full author list]American Journal of Respiratory and Critical Care Medicine [missing]DOI: 10.1164/RCCM.201603-0577ED [ORCID]
PubMed: 27525458 [ORCID]
2016-08-01
Gasping for answers. Focus on "Calpain activation by ROS mediates human ether-a-go-go-related gene protein degradation by intermittent hypoxia".[1]Ramon J Ayon, [2]Haiyang Tang, [3]Jason X-J Yuan [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00017.2016 [ORCID]
PubMed: 26843530 [ORCID]
hypoxia [missing]2016-02-03
ATP promotes cell survival via regulation of cytosolic [Ca2+] and Bcl-2/Bax ratio in lung cancer cells[1]Shanshan Song, [2]Krista N Jacobson, [3]Kimberly M McDermott, [4]Sekhar P Reddy, [5]Anne E Cress, [6]Haiyang Tang, [7]Steven M Dudek, [8]Stephen M Black, [9]Joe G N Garcia, [10]Ayako Makino, [11]Jason X-J Yuan [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00092.2015 [ORCID]
PubMed: 26491047 [ORCID]
lung cancer [missing]2015-10-21
Notch Activation of Ca(2+) Signaling in the Development of Hypoxic Pulmonary Vasoconstriction and Pulmonary Hypertension[1]Kimberly A Smith, [2]Guillaume Voiriot, [3]Haiyang Tang, [4]Dustin R Fraidenburg, [5]Shanshan Song, [6]Hisao Yamamura, [7]Aya Yamamura, [8]Qiang Guo, [9]Jun Wan, [10]Nicole M Pohl, [11]Mohammad Tauseef, [12]Rolf Bodmer, [13]Karen Ocorr, [14]Patricia A Thistlethwaite, [15]Gabriel G Haddad, [16]Frank L Powell, [17]Ayako Makino, [18]Dolly Mehta, [19]Jason X-J Yuan [Full author list]American Journal of Respiratory Cell and Molecular Biology [missing]DOI: 10.1165/RCMB.2014-0235OC [ORCID]
PubMed: 25569851 [ORCID]
cell biology [missing]; arterial hypertension [missing]; hypoxia [missing]; clinical chemistry [missing]; vasoconstriction [missing]; pulmonary hypertension [missing]2015-09-01
New insights into the pathology of pulmonary hypertension: implication of the miR-210/ISCU1/2/Fe-S axis[1]Haiyang Tang, [2]Ramon J Ayon, [3]Jason X-J Yuan [Full author list]EMBO Molecular Medicine [missing]DOI: 10.15252/EMMM.201505160 [ORCID]
PubMed: 25851536 [ORCID]
pulmonary hypertension [missing]2015-04-07
Loss of microRNA-17∼92 in smooth muscle cells attenuates experimental pulmonary hypertension via induction of PDZ and LIM domain 5[1]Tianji Chen, [2]Guofei Zhou, [3]Qiyuan Zhou, [4]Haiyang Tang, [5]Joyce Christina F Ibe, [6]Hongqiang Cheng, [7]Deming Gou, [8]Ju Chen, [9]Jason X-J Yuan, [10]J Usha Raj [Full author list]American Journal of Respiratory and Critical Care Medicine [missing]DOI: 10.1164/RCCM.201405-0941OC [ORCID]
PubMed: 25647182 [ORCID]
microRNA [missing]; pulmonary hypertension [missing]2015-03-01
Upregulated expression of STIM2, TRPC6, and Orai2 contributes to the transition of pulmonary arterial smooth muscle cells from a contractile to proliferative phenotype[1]Ruby A Fernandez, [2]Jun Wan, [3]Shanshan Song, [4]Kimberly A Smith, [5]Yali Gu, [6]Mohammad Tauseef, [7]Haiyang Tang, [8]Ayako Makino, [9]Dolly Mehta, [10]Jason X-J Yuan [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00202.2014 [ORCID]
PubMed: 25673771 [ORCID]
phenotype [missing]2015-02-11
miRNA208/Mef2 and TNF-α in right ventricular dysfunction: the transition from hypertrophy to failure[1]Haiyang Tang, [2]Ruby A Fernandez, [3]Jason X-J Yuan [Full author list]Circulation Research [missing]DOI: 10.1161/CIRCRESAHA.114.305446 [ORCID]
PubMed: 25552686 [ORCID]
ventricular dysfunction [missing]2015-01-01
The sphingosine kinase 1/sphingosine-1-phosphate pathway in pulmonary arterial hypertension[1]Jiwang Chen, [2]Haiyang Tang, [3]Justin R Sysol, [4]Liliana Moreno-Vinasco, [5]Krystyna M Shioura, [6]Tianji Chen, [7]Irina Gorshkova, [8]Lichun Wang, [9]Long Shuang Huang, [10]Peter V Usatyuk, [11]Saad Sammani, [12]Guofei Zhou, [13]J Usha Raj, [14]Joe G N Garcia, [15]Evgeny Berdyshev, [16]Jason X-J Yuan, [17]Viswanathan Natarajan, [18]Roberto F Machado [Full author list]American Journal of Respiratory and Critical Care Medicine [missing]DOI: 10.1164/RCCM.201401-0121OC [ORCID]
PubMed: 25180446 [ORCID]
arterial hypertension [missing]2014-11-01
Flow shear stress enhances intracellular Ca2+ signaling in pulmonary artery smooth muscle cells from patients with pulmonary arterial hypertension[1]Shanshan Song, [2]Aya Yamamura, [3]Hisao Yamamura, [4]Ramon J Ayon, [5]Kimberly A Smith, [6]Haiyang Tang, [7]Ayako Makino, [8]Jason X-J Yuan [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00115.2014 [ORCID]
PubMed: 24920677 [ORCID]
2014-06-11
Upregulated copper transporters in hypoxia-induced pulmonary hypertension[1]Adriana M Zimnicka, [2]Haiyang Tang, [3]Qiang Guo, [4]Frank K Kuhr, [5]Myung-Jin Oh, [6]Jun Wan, [7]Jiwang Chen, [8]Kimberly A Smith, [9]Dustin R Fraidenburg, [10]Moumita S R Choudhury, [11]Irena Levitan, [12]Roberto F Machado, [13]Jack H. Kaplan, [14]Jason X-J Yuan [Full author list]PLOS One [missing]DOI: 10.1371/JOURNAL.PONE.0090544 [ORCID]
PubMed: 24614111 [ORCID]
2014-03-10
Adenosine monophosphate-activated protein kinase is required for pulmonary artery smooth muscle cell survival and the development of hypoxic pulmonary hypertension[1]Joyce Christina F Ibe, [2]Qiyuan Zhou, [3]Tianji Chen, [4]Haiyang Tang, [5]Jason X-J Yuan, [6]J Usha Raj, [7]Guofei Zhou [Full author list]American Journal of Respiratory Cell and Molecular Biology [missing]DOI: 10.1165/RCMB.2012-0446OC [ORCID]
PubMed: 23668615 [ORCID]
arterial hypertension [missing]; hypoxia [missing]; pulmonary hypertension [missing]2013-10-01
Functional characterization of voltage-dependent Ca(2+) channels in mouse pulmonary arterial smooth muscle cells: divergent effect of ROS[1]Eun A Ko, [2]Jun Wan, [3]Aya Yamamura, [4]Adriana M Zimnicka, [5]Hisao Yamamura, [6]Hae Young Yoo, [7]Haiyang Tang, [8]Kimberly A Smith, [9]Premanand C Sundivakkam, [10]Amy Zeifman, [11]Ramon J Ayon, [12]Ayako Makino, [13]Jason X-J Yuan [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00304.2012 [ORCID]
PubMed: 23426966 [ORCID]
2013-02-20

Group #2

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Echocardiographic assessment of right ventricular function in experimental pulmonary hypertension.[1]Zhongkai Zhu, [2]Dureti Godana, [3]Ailing Li, [4]Bianca Rodriguez, [5]Chenxin Gu, [6]Haiyang Tang, [7]Richard D Minshall, [8]Wei Huang, [9]Jiwang Chen [Full author list]Pulmonary circulation [missing]DOI: 10.1177/2045894019841987 [ORCID]
PubMed: 30942120 [ORCID]
2019-04-01
Pathogenic Role of mTORC1 and mTORC2 in Pulmonary Hypertension[1]Haiyang Tang, [2]Kang Wu, [3]Jian Wang, [4]Sujana Vinjamuri, [5]Yali Gu, [6]Shanshan Song, [7]Ziyi Wang, [8]Qian Zhang, [9]Angela Balistrieri, [10]Ramon J Ayon, [11]Franz Rischard, [12]Rebecca Vanderpool, [13]Jiwang Chen, [14]Guofei Zhou, [15]Ankit A Desai, [16]Stephen M Black, [17]Joe G N Garcia, [18]Jason X-J Yuan, [19]Ayako Makino [Full author list]JACC. Basic to Translational Science [missing]DOI: 10.1016/J.JACBTS.2018.08.009 [ORCID]
PubMed: 30623134 [ORCID]
pulmonary hypertension [missing]2018-12-31
Genetic determinants of risk in pulmonary arterial hypertension: international genome-wide association studies and meta-analysis[1]Christopher J Rhodes, [2]Ken Batai, [3]Marta Bleda, [4]Matthias Haimel, [5]Laura Southgate, [6]Marine Germain, [7]Michael W Pauciulo, [8]Charaka Hadinnapola, [9]Jurjan Aman, [10]Barbara Girerd, ..., [90]Olivier Sitbon, [91]Jay Suntharalingam, [92]Haiyang Tang, [93]Alexander Y Tchourbanov, [94]Thenappan Thenappan, ... [Full author list]The Lancet. Respiratory medicine [missing]DOI: 10.1016/S2213-2600(18)30409-0 [ORCID]
PubMed: 30527956 [ORCID]
genome-wide association study [missing]2018-12-05
Divergent changes of p53 in pulmonary arterial endothelial and smooth muscle cells involved in the development of pulmonary hypertension[1]Ziyi Wang, [2]Kai Yang, [3]Qiuyu Zheng, [4]Chenting Zhang, [5]Haiyang Tang, [6]Aleksandra Babicheva, [7]Qian Jiang, [8]Meichan Li, [9]Yuqin Chen, [10]Shane G Carr, ... [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00538.2017 [ORCID]
PubMed: 30358436 [ORCID]
2018-10-25
Genetic determinants of risk and survival in pulmonary arterial hypertension[0]Inês Cebola, [1]Christopher J Rhodes, [2]Ken Batai, [3]Marta Bleda, [4]Matthias Haimel, [5]Laura Southgate, [6]Marine Germain, [7]Michael Pauciulo, [8]Charaka Hadinnapola, [9]Barbara Girerd, [10]Amit Arora, ..., [90]Jay Suntharalingam, [91]Emilia M Swietlik, [92]Haiyang Tang, [93]Alexander Tchourbanov, [94]Thenappan Thenappan, ... [Full author list]DOI: 10.1101/317164 [ORCID]
2018-05-16
Endothelial HIF-2α contributes to severe pulmonary hypertension due to endothelial-to-mesenchymal transition[1]Haiyang Tang, [2]Aleksandra Babicheva, [3]Kimberly M McDermott, [4]Yali Gu, [5]Ramon J Ayon, [6]Shanshan Song, [7]Ziyi Wang, [8]Akash Gupta, [9]Tong Zhou, [10]Xutong Sun, ... [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00096.2017 [ORCID]
PubMed: 29074488 [ORCID]
endothelium [missing]2017-10-26
Targeting L-arginine-nitric oxide-cGMP pathway in pulmonary arterial hypertension.[1]Haiyang Tang, [2]Rebecca R Vanderpool, [3]Jian Wang, [4]Jason X-J Yuan [Full author list]Pulmonary circulation [missing]DOI: 10.1177/2045893217728261 [ORCID]
PubMed: 28895506 [ORCID]
2017-07-01
Capsaicin-induced Ca2+ signaling is enhanced via upregulated TRPV1 channels in pulmonary artery smooth muscle cells from patients with idiopathic PAH.[1]Shanshan Song, [2]Ramon J Ayon, [3]Aya Yamamura, [4]Hisao Yamamura, [5]Swetaleena Dash, [6]Aleksandra Babicheva, [7]Haiyang Tang, [8]Xutong Sun, [9]Arlette G Cordery, [10]Zain Khalpey, [11]Stephen M Black, [12]Ankit A Desai, [13]Franz Rischard, [14]Kimberly M McDermott, [15]Joe G N Garcia, [16]Ayako Makino, [17]Jason X-J Yuan [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00357.2016 [ORCID]
PubMed: 27979859 [ORCID]
2016-12-15
Bortezomib alleviates experimental pulmonary hypertension by regulating intracellular calcium homeostasis in PASMCs[1]Jun Zhang, [2]Wenju Lu, [3]Yuqin Chen, [4]Qian Jiang, [5]Kai Yang, [6]Meichan Li, [7]Ziyi Wang, [8]Xin Duan, [9]Lei Xu, [10]Haiyang Tang, [11]Dejun Sun, [12]Jian Wang [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00324.2015 [ORCID]
PubMed: 27413173 [ORCID]
2016-07-13
Sodium tanshinone IIA sulfonate inhibits hypoxia-induced enhancement of SOCE in pulmonary arterial smooth muscle cells via the PKG-PPAR-γ signaling axis[1]Qian Jiang, [2]Wenju Lu, [3]Kai Yang, [4]Cyrus Hadadi, [5]Xin Fu, [6]Yuqin Chen, [7]Xin Yun, [8]Jie Zhang, [9]Meichan Li, [10]Lei Xu, [11]Haiyang Tang, [12]Jason X-J Yuan, [13]Jian Wang, [14]Dejun Sun [Full author list]American Journal of Physiology - Cell Physiology [missing]DOI: 10.1152/AJPCELL.00252.2015 [ORCID]
PubMed: 27194472 [ORCID]
hypoxia [missing]2016-05-18

Group #3

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Potential Diagnostic Power of Blood Circular RNA Expression in Active Pulmonary Tuberculosis[1]Zhongqing Qian, [2]Hui Liu, [3]Musheng Li, [4]Junchao Shi, [5]Na Li, [6]Yao Zhang, [7]Xiaojie Zhang, [8]Jingzhu Lv, [9]Xueying Xie, [10]Yunfei Bai, [11]Qinyu Ge, [12]Eun-A Ko, [12-Q62577514]Eun-A Ko, [13]Haiyang Tang, [14]Ting Wang, [15]Xiaojing Wang, [16]Zhaohua Wang, [17]Tong Zhou, [18]Wanjun Gu [Full author list]EBioMedicine [missing]DOI: 10.1016/J.EBIOM.2017.12.007 [ORCID]
PubMed: 29248507 [ORCID]
tuberculosis [missing]2017-12-08
Angiotensin-(1-7) in Paraventricular Nucleus Contributes to the Enhanced Cardiac Sympathetic Afferent Reflex and Sympathetic Activity in Chronic Heart Failure Rats[1]Xingsheng Ren, [2]Feng Zhang, [3]Mingxia Zhao, [4]Zhenzhen Zhao, [5]Shuo Sun, [6]Dustin R Fraidenburg, [7]Haiyang Tang, [8]Ying Han [Full author list]Cellular Physiology and Biochemistry [missing]DOI: 10.1159/000480214 [ORCID]
PubMed: 28848201 [ORCID]
chronic heart failure [missing]2017-08-23
Expression profile of mitochondrial voltage-dependent anion channel-1 (VDAC1) influenced genes is associated with pulmonary hypertension[1]Tong Zhou, [2]Haiyang Tang, [3]Ying Han, [4]Dustin Fraidenburg, [5]Young-Won Kim, [6]Donghee Lee, [7]Jeongyoon Choi, [8]Hyoweon Bang, [9]Jae-Hong Ko [Full author list]Korean Journal of Physiology and Pharmacology [missing]DOI: 10.4196/KJPP.2017.21.3.353 [ORCID]
PubMed: 28461778 [ORCID]
2017-04-21
Pathogenic role of calcium-sensing receptors in the development and progression of pulmonary hypertension[1]Haiyang Tang, [2]Aya Yamamura, [3]Hisao Yamamura, [4]Shanshan Song, [5]Dustin R Fraidenburg, [6]Jiwang Chen, [7]Yali Gu, [8]Nicole M Pohl, [9]Tong Zhou, [10]Laura Jiménez-Pérez, [11]Ramon J Ayon, [12]Ankit A Desai, [13]David Goltzman, [14]Franz Rischard, [15]Zain Khalpey, [16]Stephan M Black, [17]Joe G N Garcia, [18]Ayako Makino, [19]Jason X J Yuan [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00050.2016 [ORCID]
PubMed: 26968768 [ORCID]
2016-03-11
Chronic hypoxia selectively enhances L- and T-type voltage-dependent Ca2+ channel activity in pulmonary artery by upregulating Cav1.2 and Cav3.2.[1]Jun Wan, [2]Aya Yamamura, [3]Adriana M Zimnicka, [4]Guillaume Voiriot, [5]Kimberly A Smith, [6]Haiyang Tang, [7]Ramon J Ayon, [8]Moumita S R Choudhury, [9]Eun-A Ko, [10]Jun Wang, [11]Chen Wang, [12]Ayako Makino, [13]Jason X-J Yuan [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00313.2012 [ORCID]
PubMed: 23686856 [ORCID]
voltage [missing]; hypoxia [missing]2013-05-17

Group #4

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Deficiency of Akt1, but not Akt2, attenuates the development of pulmonary hypertension[1]Haiyang Tang, [2]Jiwang Chen, [3]Dustin R Fraidenburg, [4]Shanshan Song, [5]Justin R Sysol, [6]Abigail R Drennan, [7]Stefan Offermanns, [8]Richard D Ye, [9]Marcelo G Bonini, [10]Richard D Minshall, [11]Joe G N Garcia, [12]Roberto F Machado, [13]Ayako Makino, [14]Jason X-J Yuan [Full author list]American Journal of Physiology - Lung Cellular and Molecular Physiology [missing]DOI: 10.1152/AJPLUNG.00242.2014 [ORCID]
PubMed: 25416384 [ORCID]
2014-11-21
Bidirectional regulation of neutrophil migration by mitogen-activated protein kinases[1]Xiaowen Liu, [2]Bo Ma, [3]Asrar B Malik, [4]Haiyang Tang, [5]Tao Yang, [6]Bo Sun, [7]Gang Wang, [8]Richard D Minshall, [9]Yan Li, [10]Yong Zhao, [11]Richard D Ye, [12]Jingsong Xu [Full author list]Nature Immunology [missing]DOI: 10.1038/NI.2258 [ORCID]
PubMed: 22447027 [ORCID]
2012-03-25
Akt isoforms differentially regulate neutrophil functions[1]Jia Chen, [2]Haiyang Tang, [3]Nissim Hay, [4]Jingsong Xu, [5]Richard D Ye [Full author list]Blood [missing]DOI: 10.1182/BLOOD-2009-11-255323 [ORCID]
PubMed: 20332370 [ORCID]
2010-03-23
A novel function of sphingosine kinase 1 suppression of JNK activity in preventing inflammation and injury[1]Anke Di, [2]Takeshi Kawamura, [3]Xiao-Pei Gao, [4]Haiyang Tang, [5]Evgeny Berdyshev, [6]Stephen M Vogel, [7]You-Yang Zhao, [8]Tiffany Sharma, [9]Kurt Bachmaier, [10]Jingsong Xu, [11]Asrar B Malik [Full author list]Journal of Biological Chemistry [missing]DOI: 10.1074/JBC.M109.075549 [ORCID]
PubMed: 20299461 [ORCID]
2010-03-18

Misc

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
ALDH2 (Aldehyde Dehydrogenase 2) Protects Against Hypoxia-Induced Pulmonary Hypertension[1]Yu Zhao, [2]Bailu Wang, [3]Jian Zhang, [4]Dayu He, [5]Qun Zhang, [6]Chang Pan, [7]Qiuhuan Yuan, [8]Yinan Shi, [9]Haiyang Tang, [10]Feng Xu, [11]Shujian Wei, [12]Yuguo Chen [Full author list]Arteriosclerosis, Thrombosis, and Vascular Biology [missing]DOI: 10.1161/ATVBAHA.119.312946 [ORCID]
PubMed: 31510791 [ORCID]
2019-09-12
A Normal Sensor Calibration Method Based on an Extended Kalman Filter for Robotic Drilling[1]Dongdong Chen, [2]Peijiang Yuan, [3]Tianmiao Wang, [4]Ying Cai, [5]Haiyang Tang [Full author list]Sensors [missing]DOI: 10.3390/S18103485 [ORCID]
PubMed: 30332810 [ORCID]
analytical chemistry [missing]2018-10-16
Pathogenic role of ion channels in pulmonary arterial hypertension.[1]Haiyang Tang, [2]Qiuyu Zheng, [3]Jian Wang [Full author list]Experimental Physiology [missing]DOI: 10.1113/EP086426 [ORCID]
PubMed: 28856806 [ORCID]
2017-09-01
Effects of chemical additives on the fermentation quality and N distribution of alfalfa silage in south of China[1]Ping Li, [2]Shuren Ji, [3]Chen Hou, [4]Haiyang Tang, [5]Qian Wang, [6]Yixin Shen [Full author list]Animal Science Journal [missing]DOI: 10.1111/ASJ.12600 [ORCID]
PubMed: 26990603 [ORCID]
2016-03-17
A process-based review of mouse models of pulmonary hypertension[1]Mita Das, [2]Joshua Fessel, [3]Haiyang Tang, [4]James West [Full author list]Pulmonary circulation [missing]DOI: 10.4103/2045-8932.105030 [ORCID]
PubMed: 23372926 [ORCID]
2012-10-01
NIR Raman spectroscopic investigation of single mitochondria trapped by optical tweezers[1]Haiyang Tang, [2]Huilu Yao, [3]Guiwen Wang, [4]Yun Wang, [5]Yong-Qing Li, [6]Meifu Feng [Full author list]Optics Express [missing]DOI: 10.1364/OE.15.012708 [ORCID]
PubMed: 19550539 [ORCID]
mitochondrion [missing]; optical tweezers [missing]2007-10-01

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NameDescriptionAuthored itemsIdentifiersEmployer(s)
Haiyang Tangresearcher (ORCID 0000-0002-1420-6697)1ORCID: 0000-0002-1420-6697
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