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Research Article

Effects of epidermal growth factor on proliferation and migration of cardiosphere-derived cells expanded from adult human heart

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Pages 157-165 | Received 17 Sep 2009, Accepted 25 Nov 2009, Published online: 19 Feb 2010

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Maria Rosaria De Pascale, Nunzia Della Mura, Michele Vacca & Claudio Napoli. (2020) Useful applications of growth factors for cardiovascular regenerative medicine. Growth Factors 38:1, pages 35-63.
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Jinryong Park, Jeongeun Lee, Ki-Duk Song, Sung-Jo Kim, Dae Cheol Kim, Sang Cheol Lee, Young June Son, Hyun Woo Choi & Kwanseob Shim. (2021) Growth factors improve the proliferation of Jeju black pig muscle cells by regulating myogenic differentiation 1 and growth-related genes. Animal Bioscience 34:8, pages 1392-1402.
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Chandrasekharan C. KarthaChandrasekharan C. Kartha. 2021. Cardiomyocytes in Health and Disease. Cardiomyocytes in Health and Disease 169 183 .
Pawan KC, Mickey Shah, Rubia Shaik, Yi Hong & Ge Zhang. (2020) Preseeding of Mesenchymal Stem Cells Increases Integration of an iPSC-Derived CM Sheet into a Cardiac Matrix. ACS Biomaterials Science & Engineering 6:12, pages 6808-6818.
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K. V. Dergilev, Iu. D. Vasilets, Z. I. Tsokolaeva, E. S. Zubkova & E. V. Parfenova. (2020) Perspectives of cell therapy for myocardial infarction and heart failure based on cardiosphere cells. Terapevticheskii arkhiv 92:4, pages 111-120.
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Carmel Ashur & William H. Frishman. (2018) Cardiosphere-Derived Cells and Ischemic Heart Failure. Cardiology in Review 26:1, pages 8-21.
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Ahmed Ibrahim & Eduardo Marbán. (2016) Exosomes: Fundamental Biology and Roles in Cardiovascular Physiology. Annual Review of Physiology 78:1, pages 67-83.
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Fenghua Zeng & Raymond C. Harris. (2014) Epidermal growth factor, from gene organization to bedside. Seminars in Cell & Developmental Biology 28, pages 2-11.
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Rachel Ruckdeschel Smith. 2014. Manual of Research Techniques in Cardiovascular Medicine. Manual of Research Techniques in Cardiovascular Medicine 95 103 .
José Marín-García. 2014. Post-Genomic Cardiology. Post-Genomic Cardiology 783 833 .
Alexander T. Akhmedov & José Marín-García. (2012) Myocardial regeneration of the failing heart. Heart Failure Reviews 18:6, pages 815-833.
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Isotta Chimenti, Elvira Forte, Francesco Angelini, Elisa Messina & Alessandro Giacomello. (2013) Biochemistry and biology: Heart-to-heart to investigate cardiac progenitor cells. Biochimica et Biophysica Acta (BBA) - General Subjects 1830:2, pages 2459-2469.
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Zhuzhi Wen, Zun Mai, Haifeng Zhang, Yangxin Chen, Dengfeng Geng, Shuxian Zhou & Jingfeng Wang. (2012) Local activation of cardiac stem cells for post‐myocardial infarction cardiac repair. Journal of Cellular and Molecular Medicine 16:11, pages 2549-2563.
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Raffaella Mormile, Giorgio Vittori, Mario De Michele, Umberto Squarcia & Federico Quaini. (2011) Postnatal regression of hypertrophic cardiomyopathy in infants of diabetic mothers: A crosstalk between Hox genes and epidermal growth factor (EGF) gene polymorphism?. International Journal of Cardiology 150:3, pages 340.
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K. Malliaras & E. Marban. (2011) Cardiac cell therapy: where we've been, where we are, and where we should be headed. British Medical Bulletin 98:1, pages 161-185.
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Sveva Bollini, Nicola Smart & Paul R. Riley. (2011) Resident cardiac progenitor cells: At the heart of regeneration. Journal of Molecular and Cellular Cardiology 50:2, pages 296-303.
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Leonardo Solmesky, Sharon Lefler, Jasmine Jacob-Hirsch, Shlomo Bulvik, Gideon Rechavi & Miguel Weil. (2010) Serum Free Cultured Bone Marrow Mesenchymal Stem Cells as a Platform to Characterize the Effects of Specific Molecules. PLoS ONE 5:9, pages e12689.
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Ieva Antanavičiūtė, Dainius Pauža, Kristina Rysevaitė, Vaidas Vysockas, Raimundas Meškauskas, Andrejus Surovas, Renata Gasparavičiūtė & Adas Darinskas. (2010) Fate of artificial tissue scaffolds implanted into the rabbit epimyocardDirbtinio Audinio Karkasų, Implantuotų į Triušio Epimiokardą, Išlikimas. Biologija 56:1, pages 36-40.
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