146
Views
31
CrossRef citations to date
0
Altmetric
Review

Myocardial repair: from salvage to tissue reconstruction

, , &
Pages 669-686 | Published online: 10 Jan 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Naseer Iqbal, Abdul Samad Khan, Anila Asif, Muhammad Yar, John W. Haycock & Ihtesham Ur Rehman. (2019) Recent concepts in biodegradable polymers for tissue engineering paradigms: a critical review. International Materials Reviews 64:2, pages 91-126.
Read now
Marie Delgaudine, Bernard Lambermont, Patrizio Lancellotti, Véronique Roelants, Stéphan Walrand, Jean-Louis Vanoverschelde, Luc Pierard, André Gothot & Yves Beguin. (2011) Effects of granulocyte–colony-stimulating factor on progenitor cell mobilization and heart perfusion and function in normal mice. Cytotherapy 13:2, pages 237-247.
Read now

Articles from other publishers (29)

Vineeta Sharma, Sanat Kumar Dash, Kavitha Govarthanan, Rekha Gahtori, Nidhi Negi, Mahmood Barani, Richa Tomar, Sudip Chakraborty, Santosh Mathapati, Dillip Kumar Bishi, Poonam Negi, Kamal Dua, Sachin Kumar Singh, Rohit Gundamaraju, Abhijit Dey, Janne Ruokolainen, Vijay Kumar Thakur, Kavindra Kumar Kesari, Niraj Kumar Jha, Piyush Kumar Gupta & Shreesh Ojha. (2021) Recent Advances in Cardiac Tissue Engineering for the Management of Myocardium Infarction. Cells 10:10, pages 2538.
Crossref
Øystein Arlov, Dominic Rütsche, Maryam Asadi Korayem, Ece Öztürk & Marcy Zenobi‐Wong. (2021) Engineered Sulfated Polysaccharides for Biomedical Applications. Advanced Functional Materials 31:19, pages 2010732.
Crossref
Anne-Sophie Colombe & Guillaume Pidoux. (2021) Cardiac cAMP-PKA Signaling Compartmentalization in Myocardial Infarction. Cells 10:4, pages 922.
Crossref
Archita Sharma, Pooja Sharma & Sangita Roy. (2021) Elastin-inspired supramolecular hydrogels: a multifaceted extracellular matrix protein in biomedical engineering. Soft Matter 17:12, pages 3266-3290.
Crossref
Sergio Mateos, José Lifante, Chunyan Li, Erving C. Ximendes, Tamara Muñoz‐Ortiz, Jingke Yao, María Fuente‐Fernández, Ángel Luis García Villalón, Miriam Granado, Irene Zabala Gutierrez, Jorge Rubio‐Retama, Daniel Jaque, Dirk H. Ortgies & Nuria Fernández. (2020) Instantaneous In Vivo Imaging of Acute Myocardial Infarct by NIR‐II Luminescent Nanodots. Small 16:29, pages 1907171.
Crossref
Israel Gonzalez de Torre, Matilde Alonso & Jose-Carlos Rodriguez-Cabello. (2020) Elastin-Based Materials: Promising Candidates for Cardiac Tissue Regeneration. Frontiers in Bioengineering and Biotechnology 8.
Crossref
Bin Jiang, Li Yan, James G. Shamul, Maxwell Hakun & Xiaoming He. (2020) Stem Cell Therapy of Myocardial Infarction: A Promising Opportunity in Bioengineering. Advanced Therapeutics 3:3, pages 1900182.
Crossref
Dirk H. Ortgies, Ángel Luis García-Villalón, Miriam Granado, Sara Amor, Emma Martín Rodríguez, Harrisson D. A. Santos, Jingke Yao, Jorge Rubio-Retama & Daniel Jaque. (2019) Infrared fluorescence imaging of infarcted hearts with Ag2S nanodots. Nano Research 12:4, pages 749-757.
Crossref
Clive J. Curley, Eimear B. Dolan, Matthias Otten, Svenja Hinderer, Garry P. Duffy & Bruce P. Murphy. (2018) An injectable alginate/extra cellular matrix (ECM) hydrogel towards acellular treatment of heart failure. Drug Delivery and Translational Research 9:1, pages 1-13.
Crossref
Mostafa Cheraghi, Babak Negahdari, Hadis Daraee & Ali Eatemadi. (2017) Heart targeted nanoliposomal/nanoparticles drug delivery: An updated review. Biomedicine & Pharmacotherapy 86, pages 316-323.
Crossref
Emil Ruvinov & Smadar Cohen. (2016) Alginate biomaterial for the treatment of myocardial infarction: Progress, translational strategies, and clinical outlook. Advanced Drug Delivery Reviews 96, pages 54-76.
Crossref
Inbar Budniatzky & Lior Gepstein. (2014) Concise Review: Reprogramming Strategies for Cardiovascular Regenerative Medicine: From Induced Pluripotent Stem Cells to Direct Reprogramming. Stem Cells Translational Medicine 3:4, pages 448-457.
Crossref
Michal Shevach, Neta Soffer-Tsur, Sharon Fleischer, Assaf Shapira & Tal Dvir. (2014) Fabrication of omentum-based matrix for engineering vascularized cardiac tissues. Biofabrication 6:2, pages 024101.
Crossref
Emil Ruvinov, Yulia Shandalov, Shulamit Levenberg & Smadar Cohen. 2014. Tissue Engineering. Tissue Engineering 627 683 .
Emil Ruvinov & Smadar Cohen. 2014. Adult and Pluripotent Stem Cells. Adult and Pluripotent Stem Cells 83 111 .
Tomer BronshteinGigi Chi Ting Au-YeungUdi SarigEvelyne Bao-Vi NguyenPriyadarshini S. MhaisalkarFreddy Yin Chiang BoeySubbu S. VenkatramanMarcelle Machluf. (2013) A Mathematical Model for Analyzing the Elasticity, Viscosity, and Failure of Soft Tissue: Comparison of Native and Decellularized Porcine Cardiac Extracellular Matrix for Tissue Engineering. Tissue Engineering Part C: Methods 19:8, pages 620-630.
Crossref
Jaco H. Houtgraaf, Renate De Jong, Kim Monkhorst, Dennie Tempel, Esther Van De Kamp, Wijnand K. Den Dekker, Kushan Kazemi, Imo Hoefer, Gerard Pasterkamp, Andrew L. Lewis, Peter W. Stratford, Christine Wallrapp, Felix Zijlstra & Henricus J. Duckers. (2013) Feasibility of Intracoronary GLP-1 Eluting CellBead ™ Infusion in Acute Myocardial Infarction . Cell Transplantation 22:3, pages 535-543.
Crossref
Y. Sapir, B. Polyak & S. Cohen. 2013. Nanomaterials in Tissue Engineering. Nanomaterials in Tissue Engineering 244 275 .
Emil Ruvinov, Yulia Sapir & Smadar CohenEmil Ruvinov, Yulia Sapir & Smadar Cohen. 2012. Cardiac Tissue Engineering. Cardiac Tissue Engineering 7 25 .
Emil Ruvinov, Yulia Sapir & Smadar CohenEmil Ruvinov, Yulia Sapir & Smadar Cohen. 2012. Cardiac Tissue Engineering. Cardiac Tissue Engineering 1 6 .
Emil Ruvinov, Yulia Sapir & Smadar Cohen. 2012. Cardiac Tissue Engineering. Cardiac Tissue Engineering.
Tal Dvir, Michael Bauer, Avi Schroeder, Jonathan H. Tsui, Daniel G. Anderson, Robert Langer, Ronglih Liao & Daniel S. Kohane. (2011) Nanoparticles Targeting the Infarcted Heart. Nano Letters 11:10, pages 4411-4414.
Crossref
Emil Ruvinov, Tamar Harel-Adar & Smadar Cohen. (2011) Bioengineering the Infarcted Heart by Applying Bio-inspired Materials. Journal of Cardiovascular Translational Research 4:5, pages 559-574.
Crossref
Zhaoyang Ye, Yan Zhou, Haibo Cai & Wensong Tan. (2011) Myocardial regeneration: Roles of stem cells and hydrogels. Advanced Drug Delivery Reviews 63:8, pages 688-697.
Crossref
Michal Shachar, Orna Tsur-Gang, Tal Dvir, Jonathan Leor & Smadar Cohen. (2011) The effect of immobilized RGD peptide in alginate scaffolds on cardiac tissue engineering. Acta Biomaterialia 7:1, pages 152-162.
Crossref
Emil Ruvinov & Smadar Cohen. 2011. Active Implants and Scaffolds for Tissue Regeneration. Active Implants and Scaffolds for Tissue Regeneration 289 328 .
Emil Ruvinov, Jonathan Leor & Smadar Cohen. (2010) The effects of controlled HGF delivery from an affinity-binding alginate biomaterial on angiogenesis and blood perfusion in a hindlimb ischemia model. Biomaterials 31:16, pages 4573-4582.
Crossref
Shengwen Calvin Li, Lang Wang, Hong Jiang, Julyana Acevedo, Anthony Christopher Chang & William Gunter Loudon. (2009) Stem cell engineering for treatment of heart diseases: Potentials and challenges. Cell Biology International 33:3, pages 255-267.
Crossref
Todd N McAllisterNathalie DusserreMarcin Maruszewski & Nicolas L’Heureux. (2008) Cell-based therapeutics from an economic perspective: primed for a commercial success or a research sinkhole?. Regenerative Medicine 3:6, pages 925-937.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.