Poor cell engraftment rate is one of the primary factors limiting the effectiveness of cell transfer therapy for cardiac repair. Recent studies have shown that the combination of cell-based therapy and tissue engineering technology can improve stem cell engraftment and promote the therapeutic effects of the treatment for myocardial infarction. This mini-review summarizes the recent progress in cardiac tissue engineering of cardiovascular cells from differentiated human pluripotent stem cells (PSCs), highlights their therapeutic applications for the treatment of myocardial infarction, and discusses the present challenges of cardiac tissue engineering and possible future directions from a clinical perspective
Cardiovascular diseases represent the major cause of morbidity and mortality worldwide. Multiple stu...
Myocardial infarction (MI) affects millions of people worldwide. MI causes massive cardiac cell deat...
During the past decades, stem cell-based therapy has acquired a promising role in regenerative medic...
The human heart has the least regenerative capabilities among tissues and organs, and heart disease ...
Heart failure (HF) is the leading cause of death worldwide. The most effective HF treatment is heart...
Despite advances in cardiovascular biology and medical therapy, heart disorders are the leading caus...
Despite advances in cardiovascular biology and medical therapy, heart disorders are the leading caus...
Cardiovascular disease remains the leading cause of death and disability in advanced countries. Stem...
Cardiac regeneration is a critical endeavor in the treatment of heart diseases, aimed at repairing a...
Stem cells are able to divide repeatedly and produce both new stem cells and differentiated cells, t...
Regenerative therapies including stem cell treatments hold promise to allow curing patients affected...
For nearly a decade, researchers have investigated the possibility of cell transplantation for cardi...
Cardiovascular disease (CVD) is the leading causes of morbidity and death globally. In particular, a...
Heart regeneration via stem cell therapy could improve the functional outcome for millions of patien...
Cell therapies have gained increasing interest and developed in several approaches related to the tr...
Cardiovascular diseases represent the major cause of morbidity and mortality worldwide. Multiple stu...
Myocardial infarction (MI) affects millions of people worldwide. MI causes massive cardiac cell deat...
During the past decades, stem cell-based therapy has acquired a promising role in regenerative medic...
The human heart has the least regenerative capabilities among tissues and organs, and heart disease ...
Heart failure (HF) is the leading cause of death worldwide. The most effective HF treatment is heart...
Despite advances in cardiovascular biology and medical therapy, heart disorders are the leading caus...
Despite advances in cardiovascular biology and medical therapy, heart disorders are the leading caus...
Cardiovascular disease remains the leading cause of death and disability in advanced countries. Stem...
Cardiac regeneration is a critical endeavor in the treatment of heart diseases, aimed at repairing a...
Stem cells are able to divide repeatedly and produce both new stem cells and differentiated cells, t...
Regenerative therapies including stem cell treatments hold promise to allow curing patients affected...
For nearly a decade, researchers have investigated the possibility of cell transplantation for cardi...
Cardiovascular disease (CVD) is the leading causes of morbidity and death globally. In particular, a...
Heart regeneration via stem cell therapy could improve the functional outcome for millions of patien...
Cell therapies have gained increasing interest and developed in several approaches related to the tr...
Cardiovascular diseases represent the major cause of morbidity and mortality worldwide. Multiple stu...
Myocardial infarction (MI) affects millions of people worldwide. MI causes massive cardiac cell deat...
During the past decades, stem cell-based therapy has acquired a promising role in regenerative medic...