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For: Neves VJD, Fernandes T, Roque FR, Soci UPR, Melo SFS, Oliveira EM. Exercise training in hypertension: Role of microRNAs. World J Cardiol 2014; 6(8): 713-727 [PMID: 25228951 DOI: 10.4330/wjc.v6.i8.713]
URL: https://www.wjgnet.com/1949-8462/full/v6/i8/713.htm
Number Citing Articles
1
Tiago Fernandes, Valério G. Baraúna, Carlos E. Negrão, M. Ian Phillips, Edilamar M. Oliveira. Aerobic exercise training promotes physiological cardiac remodeling involving a set of microRNAsAmerican Journal of Physiology-Heart and Circulatory Physiology 2015; 309(4): H543 doi: 10.1152/ajpheart.00899.2014
2
Jing Li, Bradley Richmond, TingTing Hong. Cardiac T-Tubule cBIN1-Microdomain, a Diagnostic Marker and Therapeutic Target of Heart FailureInternational Journal of Molecular Sciences 2021; 22(5): 2299 doi: 10.3390/ijms22052299
3
Tiago Fernandes, Diego Lopes Barretti, M. Ian Phillips, Edilamar Menezes Oliveira. Exercise training prevents obesity-associated disorders: Role of miRNA-208a and MED13Molecular and Cellular Endocrinology 2018; 476: 148 doi: 10.1016/j.mce.2018.05.004
4
Naiara A. Herrera, Francine Duchatsch, Lidieli P. Tardelli, Thiago J. Dionísio, Carlos F. Santos, Sandra L. Amaral. Dexamethasone Does Not Inhibit Treadmill Training–Induced Angiogenesis in Myocardium: Role of MicroRNA-126 PathwayJournal of Cardiovascular Pharmacology 2020; 76(6): 708 doi: 10.1097/FJC.0000000000000924
5
Fernanda Roberta Roque, Clara Nobrega, Tiago Fernandes, Edilamar Menezes de Oliveira. Endothelium and Cardiovascular Diseases2018; : 171 doi: 10.1016/B978-0-12-812348-5.00013-1
6
Yaser Masoumi-Ardakani, Hamid Najafipour, Hamid Reza Nasri, Soheil Aminizadeh, Shirin Jafari, Daruosh Moflehi, Vickram Ramkumar. Effect of Combined Endurance Training and MitoQ on Cardiac Function and Serum Level of Antioxidants, NO, miR-126, and miR-27a in Hypertensive IndividualsBioMed Research International 2022; 2022: 1 doi: 10.1155/2022/8720661
7
Tiago Fernandes, Lilian Casaes, Úrsula Soci, Andre Silveira, João Gomes, Diego Barretti, Fernanda Roque, Edilamar Oliveira. Exercise Training Restores the Cardiac Microrna-16 Levels Preventing Microvascular Rarefaction in Obese Zucker RatsObesity Facts 2018; 11(1): 15 doi: 10.1159/000454835
8
Lin Cong, Yunpeng Bai, Zhigang Guo. The crosstalk among autophagy, apoptosis, and pyroptosis in cardiovascular diseaseFrontiers in Cardiovascular Medicine 2022; 9 doi: 10.3389/fcvm.2022.997469
9
Raquel Kindlovits, Julia Maria Cabral Relvas Jacome Bertoldi, Helena Naly Miguens Rocha, Thais Bento‐Bernardes, João Lucas Penteado Gomes, Edilamar Menezes de Oliveira, Ingrid Cristina Muniz, Juliana Frota Pereira, Caroline Fernandes‐Santos, Natália Galito Rocha, Antonio Claudio Lucas da Nóbrega, Renata Frauches Medeiros. Molecular mechanisms underlying fructose‐induced cardiovascular disease: exercise, metabolic pathways and microRNAsExperimental Physiology 2021; 106(5): 1224 doi: 10.1113/EP088845
10
Stéphano Melo, Valério Barauna, Miguel Júnior, Luiz Bozi, Lucas Drummond, Antônio Natali, Edilamar de Oliveira. Resistance Training Regulates Cardiac Function through Modulation of miRNA-214International Journal of Molecular Sciences 2015; 16(12): 6855 doi: 10.3390/ijms16046855
11
Joan Fernandez Esmerats, Jack Heath, Amir Rezvan, Hanjoong Jo. Biomedical Engineering: Frontier Research and Converging TechnologiesBiosystems & Biorobotics 2016; 9: 237 doi: 10.1007/978-3-319-21813-7_11
12
Rina Recchioni, Fiorella Marcheselli, Roberto Antonicelli, Emanuela Mensà, Raffaella Lazzarini, Antonio Domenico Procopio, Fabiola Olivieri. Epigenetic effects of physical activity in elderly patients with cardiovascular diseaseExperimental Gerontology 2017; 100: 17 doi: 10.1016/j.exger.2017.10.016
13
LIANGLEI HOU, ZHENHAO LIN, YUNJIE NI, YIHAO WU, DEZHUN CHEN, LIJUAN SONG, XIAOYAN HUANG, HUANHUAN HU, DEYE YANG. Microarray expression profiling and gene ontology analysis of long non-coding RNAs in spontaneously hypertensive rats and their potential roles in the pathogenesis of hypertensionMolecular Medicine Reports 2016; 13(1): 295 doi: 10.3892/mmr.2015.4554
14
Alex Cleber Improta-Caria, Marcela Gordilho Aras, Luca Nascimento, Ricardo Augusto Leoni De Sousa, Roque Aras-Júnior, Bruno Solano de Freitas Souza. MicroRNAs Regulating Renin–Angiotensin–Aldosterone System, Sympathetic Nervous System and Left Ventricular Hypertrophy in Systemic Arterial HypertensionBiomolecules 2021; 11(12): 1771 doi: 10.3390/biom11121771
15
Tiago Fernandes, Camila V. Gomes-Gatto, Noemy P. Pereira, Yahya R. Alayafi, Vander J. das Neves, Edilamar M. Oliveira. Exercise for Cardiovascular Disease Prevention and TreatmentAdvances in Experimental Medicine and Biology 2017; 1000: 211 doi: 10.1007/978-981-10-4304-8_13
16
Yan Liu, Kang Zhou, Jing Li, Sosse Agvanian, Ana-Maria Caldaruse, Seiji Shaw, Tara C. Hitzeman, Robin M. Shaw, TingTing Hong. In Mice Subjected to Chronic Stress, Exogenous cBIN1 Preserves Calcium-Handling Machinery and Cardiac FunctionJACC: Basic to Translational Science 2020; 5(6): 561 doi: 10.1016/j.jacbts.2020.03.006
17
Jie Yin, Hongyan Liu, Lei Huan, Suping Song, Liying Han, Faxin Ren, Zengtang Zhang, Zhiqiang Zang, Junye Zhang, Shu Wang. Role of miR-128 in hypertension-induced myocardial injuryExperimental and Therapeutic Medicine 2017; 14(4): 2751 doi: 10.3892/etm.2017.4886
18
Simona Ultimo, Giorgio Zauli, Alberto M. Martelli, Marco Vitale, James A. McCubrey, Silvano Capitani, Luca M. Neri. Cardiovascular disease-related miRNAs expression: potential role as biomarkers and effects of training exerciseOncotarget 2018; 9(24): 17238 doi: 10.18632/oncotarget.24428
19
Naiara A. Herrera, Francine Duchatsch, Lidieli P. Tardelli, Thiago J. Dionísio, Andre L. Shinohara, Carlos F. Santos, Sandra Lia Amaral. MicroRNA-126 upregulation, induced by training, plays a role in controlling microcirculation in dexamethasone treated ratsMolecular and Cellular Endocrinology 2020; 505: 110732 doi: 10.1016/j.mce.2020.110732
20
Warrick Chilton, Brendan O’Brien, Fadi Charchar. Telomeres, Aging and Exercise: Guilty by Association?International Journal of Molecular Sciences 2017; 18(12): 2573 doi: 10.3390/ijms18122573
21
Joan Fernández Esmerats, Jack Heath, Hanjoong Jo. Shear-Sensitive Genes in Aortic Valve EndotheliumAntioxidants & Redox Signaling 2016; 25(7): 401 doi: 10.1089/ars.2015.6554
22
Nicolas Villa-Roel, Kitae Ryu, Hanjoong Jo. Cardiovascular Calcification and Bone MineralizationContemporary Cardiology 2020; : 117 doi: 10.1007/978-3-030-46725-8_6
23
Sheila M. Hegde, Scott D. Solomon. Influence of Physical Activity on Hypertension and Cardiac Structure and FunctionCurrent Hypertension Reports 2015; 17(10) doi: 10.1007/s11906-015-0588-3
24
Miruna Nemecz, Nicoleta Alexandru, Gabriela Tanko, Adriana Georgescu. Role of MicroRNA in Endothelial Dysfunction and HypertensionCurrent Hypertension Reports 2016; 18(12) doi: 10.1007/s11906-016-0696-8
25
Warrick Chilton, Michelle C. Maier, Olutope Arinola Akinnibosun, Brendan J. O’Brien, Fadi J. Charchar. Epigenetics of Exercise and Sports2021; : 127 doi: 10.1016/B978-0-12-820682-9.00002-5
26
Elaina Melton, Hongyu Qiu. Interleukin-1β in Multifactorial Hypertension: Inflammation, Vascular Smooth Muscle Cell and Extracellular Matrix Remodeling, and Non-Coding RNA RegulationInternational Journal of Molecular Sciences 2021; 22(16): 8639 doi: 10.3390/ijms22168639
27
Aneta Weres, Joanna Baran, Ewelina Czenczek-Lewandowska, Justyna Leszczak, Artur Mazur. The association between steps per day and blood pressure in childrenScientific Reports 2022; 12(1) doi: 10.1038/s41598-022-05497-0
28
José V. Subiela, Sonia H. Torres, Juan B. De Sanctis, Noelina Hernández. Cardiorespiratory responses, nitric oxide production and inflammatory factors in patients with myocardial infarction after rehabilitationNitric Oxide 2018; 76: 87 doi: 10.1016/j.niox.2018.03.006
29
Jinjuan Fu, Yu Han, Jialiang Wang, Yukai Liu, Shuo Zheng, Lin Zhou, Pedro A. Jose, Chunyu Zeng. Irisin Lowers Blood Pressure by Improvement of Endothelial Dysfunction via AMPK‐Akt‐eNOS‐NO Pathway in the Spontaneously Hypertensive RatJournal of the American Heart Association 2016; 5(11) doi: 10.1161/JAHA.116.003433
30
T. A. Mangileva. The effects of heart rate, adherence to antihypertensive pharmacotherapy and physical exercise on clinical course of first grade hypertension"Arterial’naya Gipertenziya" ("Arterial Hypertension") 2020; 25(6): 665 doi: 10.18705/1607-419X-2019-25-6-665-673
31
Odilon Abrahin, Rejane Pequeno Abrahin, Evitom Corrêa de Sousa, Erik Artur Cortinhas-Alves, Dahan da Cunha Nascimento, João Farias Guerreiro. Inter-individual variations in response to aerobic and resistance training in hypertensive older adultsJournal of Hypertension 2022; 40(6): 1090 doi: 10.1097/HJH.0000000000003139
32
Eric Trillaud, Philip Klemmer, Steven K. Malin, Uta Erdbrügger. Tracking Biomarker Responses to Exercise in HypertensionCurrent Hypertension Reports 2023; 25(10): 299 doi: 10.1007/s11906-023-01252-6
33
Maricica Pacurari, Paul B. Tchounwou. Role of MicroRNAs in Renin-Angiotensin-Aldosterone System-Mediated Cardiovascular Inflammation and RemodelingInternational Journal of Inflammation 2015; 2015: 1 doi: 10.1155/2015/101527
34
Ligia M. Antunes‐Correa, Patricia F. Trevizan, Aline V.N. Bacurau, Larissa Ferreira‐Santos, João L.P. Gomes, Ursula Urias, Patricia A. Oliveira, Maria Janieire N.N. Alves, Dirceu R. de Almeida, Patricia C. Brum, Edilamar M. Oliveira, Ludhmila Hajjar, Roberto Kalil Filho, Carlos Eduardo Negrão. Effects of aerobic and inspiratory training on skeletal muscle microRNA‐1 and downstream‐associated pathways in patients with heart failureJournal of Cachexia, Sarcopenia and Muscle 2020; 11(1): 89 doi: 10.1002/jcsm.12495
35
Daijiro Hori, Brittany Dunkerly-Eyring, Yohei Nomura, Debjit Biswas, Jochen Steppan, Jorge Henao-Mejia, Hideo Adachi, Lakshmi Santhanam, Dan E. Berkowitz, Charles Steenbergen, Richard A. Flavell, Samarjit Das, Christopher Torrens. miR-181b regulates vascular stiffness age dependently in part by regulating TGF-β signalingPLOS ONE 2017; 12(3): e0174108 doi: 10.1371/journal.pone.0174108
36
Alex Improta Caria, Carolina Nonaka, Ciro Pereira, Milena Soares, Simone Macambira, Bruno Souza. Exercise Training-Induced Changes in MicroRNAs: Beneficial Regulatory Effects in Hypertension, Type 2 Diabetes, and ObesityInternational Journal of Molecular Sciences 2018; 19(11): 3608 doi: 10.3390/ijms19113608
37
Odilon Abrahin, Rejane Pequeno Abrahin, Mayko Guimarães, Vitor Bruno Teixeira de Holanda, Fernanda Andreza De Pinho Lott Figueiredo, Bruno Viana Rosa, Ivo Vieira de Sousa Neto, Nicholas Rolnick, Gislane Ferreira de Melo, Emanuelle Fernandes Prestes, Dahan da Cunha Nascimento. Blood pressure responsiveness to resistance training in the hypertensive older adult: a randomized controlled studyBlood Pressure Monitoring 2024; 29(2): 71 doi: 10.1097/MBP.0000000000000690
38
Noemy Pereira, Camila Gatto, Edilamar Menezes de Oliveira, Tiago Fernandes. Muscle Cells - Recent Advances and Future Perspectives2020;  doi: 10.5772/intechopen.86054
39
Hyo-Seong Yeo, Jae-Young Lim. Effects of different types of exercise training on angiogenic responses in the left ventricular muscle of aged ratsExperimental Gerontology 2022; 158: 111650 doi: 10.1016/j.exger.2021.111650
40
Isley Jesus, Naiara A. Herrera, Jesus C. Andreo, Carlos F. Santos, Sandra L. Amaral. Training counteracts DEX-induced microvascular rarefaction by improving the balance between apoptotic and angiogenic proteinsSteroids 2020; 156: 108573 doi: 10.1016/j.steroids.2019.108573
41
Zhou Zhang, Brian Thomas Joyce, Jacob K. Kresovich, Yinan Zheng, Jia Zhong, Ruchi Patel, Wei Zhang, Lei Liu, Chang Dou, John P. McCracken, Anaité Díaz, Valeria Motta, Marco Sanchez-Guerra, Shurui Bian, Pier Alberto Bertazzi, Joel Schwartz, Andrea A. Baccarelli, Sheng Wang, Lifang Hou, Zhanjun Jia. Blood pressure and expression of microRNAs in whole bloodPLOS ONE 2017; 12(3): e0173550 doi: 10.1371/journal.pone.0173550
42
Javier A. Benavides-Aguilar, Andrea Torres-Copado, José Isidoro-Sánchez, Surajit Pathak, Asim K. Duttaroy, Antara Banerjee, Sujay Paul. The Regulatory Role of MicroRNAs in Obesity and Obesity-Derived AilmentsGenes 2023; 14(11): 2070 doi: 10.3390/genes14112070