Células madre como alternativa al marcapaso transvenoso
Tài liệu tham khảo
Matsa, 2014, Cardiac stem cell biology: Glimpse of the past, present, and future, Circ Res, 114, 21, 10.1161/CIRCRESAHA.113.302895
Kusumoto, 2018, 2018 ACC /AHA /HRS Guideline on the Evaluation and Management of Patients With Bradycardia and Cardiac Conduction Delay A Report of the American College of Cardiology /American Heart Association Task Force on Clinical Practice Guidelines and the Heart.
Vogler, 2013, Bradiarritmias y bloqueos de la conducción, Rev Cardiol Esp., 65, 656, 10.1016/j.recesp.2012.01.025
Castelnuovo, 2005, The effectiveness and cost-effectiveness of dual-chamber pacemakers compared with single-chamber pacemakers for bradycardia due to atrioventricular block or sick sinus syndrome: systematic review and economic evaluation, Health Technol Assess (Rockv)., 9
Lemcke, 2018, Recent Progress in Stem Cell Modification for Cardiac Regeneration, Stem Cells Int., 2018, 1, 10.1155/2018/1909346
Haddad, 2006, The evolution of pacemakers, IEEE Eng Med Biol Mag., 25, 38, 10.1109/MEMB.2006.1636350
Kar, 2005, Electricity and the heart, J Assoc Physicians India., 53, 1055
Aquilina, 2006, A brief history of cardiac pacing, Images Paediatr Cardiol., 8, 17
Bestetti, 2014, Development of Anatomophysiologic Knowledge regarding the Cardiovascular System: From Egyptians to Harvey, Arq Bras Cardiol., 10.5935/abc.20140148
Tjong, 2017, Permanent Leadless Cardiac Pacemaker Therapy, Circulation., 135, 1458, 10.1161/CIRCULATIONAHA.116.025037
Cingolani, 2017, Next-generation pacemakers: from small devices to biological pacemakers, Nat Rev Cardiol., 15, 139, 10.1038/nrcardio.2017.165
Van Eif, 2018, Transcriptional regulation of the cardiac conduction system, Nat Rev Cardiol., 10.1038/s41569-018-0031-y
Vedantham, 2015, New Approaches to Biological Pacemakers: Links to Sinoatrial Node Development, Trends Mol Med., 21, 749, 10.1016/j.molmed.2015.10.002
Barbuti, 2015, Stem Cell-Derived Nodal-Like Cardiomyocytes as a Novel Pharmacologic Tool: Insights from Sinoatrial Node Development and Function, Pharmacol Rev., 67, 368, 10.1124/pr.114.009597
van Weerd, 2016, The formation and function of the cardiac conduction system, Development., 143, 197, 10.1242/dev.124883
Herreros, 2011, Regeneración celular cardíaca, Cirugía Cardiovasc., 18, 207, 10.1016/S1134-0096(11)70056-0
Chauveau, 2014, Stem cell–based biological pacemakers from proof of principle to therapy: a review, Cytotherapy., 16, 873, 10.1016/j.jcyt.2014.02.014
Cambria, 2017, Translational cardiac stem cell therapy: advancing from first-generation to next-generation cell types, NPJ Regen Med., 2, 17, 10.1038/s41536-017-0024-1
Ahmad, 2017, Is biological repair of Heart on the Horizon?, Pakistan J Med Sci., 33
Yoshida, 2017, Induced Pluripotent Stem Cells 10 Years Later, Circ Res., 120, 1958, 10.1161/CIRCRESAHA.117.311080
Zhang, 2017, Construction of vascularized pacemaker tissues by seeding cardiac progenitor cells and endothelial progenitor cells into Matrigel, Life Sci., 179, 139, 10.1016/j.lfs.2017.05.007
Li, 2018, Transcription factor TBX18 promotes adult rat bone mesenchymal stem cell differentiation to biological pacemaker cells, Int J Mol Med., 41, 845
Pokushalov, 2013, Stem Cell Therapy for Electrophysiological Disorders, Curr Cardiol Rep., 15, 408, 10.1007/s11886-013-0408-9
Ratcliffe, 2013, Current status and perspectives on stem cell-based therapies undergoing clinical trials for regenerative medicine: case studies, Br Med Bull., 108, 73, 10.1093/bmb/ldt034
Banerjee, 2018, Clinical Studies of Cell Therapy in Cardiovascular Medicine, Circ Res., 123, 266, 10.1161/CIRCRESAHA.118.311217
Brand, 2016, Tbx18 and the generation of a biological pacemaker Are we there yet?, J Mol Cell Cardiol., 97, 263, 10.1016/j.yjmcc.2016.06.006
Meyers, 2016, Reprogramming the conduction system: Onward toward a biological pacemaker, Trends Cardiovasc Med., 26, 14, 10.1016/j.tcm.2015.03.015
Takahashi, 2015, Regeneration of the Cardiac Conduction System by Adipose Tissue-Derived Stem Cells, Circ J., 79, 2703, 10.1253/circj.CJ-15-0400
Hu, 2018, Shox2: The Role in Differentiation and Development of Cardiac Conduction System, Tohoku J Exp Med., 244, 177, 10.1620/tjem.244.177
Schmitteckert, 2017, Murine transgenic embryonic stem cell lines for the investigation of sinoatrial node-related molecular pathways, Stem Cell Res., 25, 278, 10.1016/j.scr.2017.07.011
Hofshi, 2011, A combined gene and cell therapy approach for restoration of conduction, Hear Rhythm., 8, 121, 10.1016/j.hrthm.2010.10.011
Marelli, 1992, Cell transplantation for myocardial repair: an experimental approach, Cell Transplant., 1, 383, 10.1177/096368979200100602
Leier, 2017, Advancements in Pacemaker Technology: The Leadless Device, Crit Care Nurse., 37, 58, 10.4037/ccn2017453
Madhavan, 2017, Advances and Future Directions in Cardiac Pacemakers, J Am Coll Cardiol [Internet]., 69, 211, 10.1016/j.jacc.2016.10.064