The adult human heart possesses a limited regenerative potential following an ischemic event, and undergoes a number of pathological changes in response to injury. Although cardiac regeneration has been documented in zebrafish and neonatal mouse hearts, it is currently unknown whether the immature human heart is capable of undergoing complete regeneration. Combined progress in pluripotent stem cell differentiation and tissue engineering has facilitated the development of human cardiac organoids (hCOs), which resemble fetal heart tissue and can be used to address this important knowledge gap. This study aimed to characterize the regenerative capacity of immature human heart tissue in response to injury. Following cryoinjury with a dry ice pr...
The adult mammalian heart is incapable of regeneration following cardiac injury, leading to a declin...
The ability of human pluripotent stem cells to form all cells of the body has provided many opportun...
In recent years, different studies have revealed that adult mammalian cardiomyocytes have the capaci...
The adult human heart possesses a limited regenerative potential following an ischemic event, and un...
microRNAs are post-transcriptional regulators of gene expression that have been shown to be central ...
Myocardial infarction is a primary contributor towards the global burden of cardiovascular disease. ...
While a regenerative response is limited in the mammalian adult heart, it has been recently shown th...
Heart diseases are a very common health problem in developed as well as developing countries. In par...
Despite current treatment therapy, heart failure remains the leading cause of mortality in the Weste...
In mammals, enlargement of the heart during embryonic development is primarily dependent on the incr...
There is an urgent need to develop new therapeutic strategies to stimulate cardiac repair after dama...
The cellular and molecular mechanisms that are responsible for the poor regenerative capacity of the...
After myocardial infarction (MI) the human heart is unable to regenerate lost tissue, leading to sca...
Cardiac regeneration is a homeostatic cardiogenic process by which the sections of malfunctioning ad...
We recently identified a brief time period during postnatal development when the mammalian heart ret...
The adult mammalian heart is incapable of regeneration following cardiac injury, leading to a declin...
The ability of human pluripotent stem cells to form all cells of the body has provided many opportun...
In recent years, different studies have revealed that adult mammalian cardiomyocytes have the capaci...
The adult human heart possesses a limited regenerative potential following an ischemic event, and un...
microRNAs are post-transcriptional regulators of gene expression that have been shown to be central ...
Myocardial infarction is a primary contributor towards the global burden of cardiovascular disease. ...
While a regenerative response is limited in the mammalian adult heart, it has been recently shown th...
Heart diseases are a very common health problem in developed as well as developing countries. In par...
Despite current treatment therapy, heart failure remains the leading cause of mortality in the Weste...
In mammals, enlargement of the heart during embryonic development is primarily dependent on the incr...
There is an urgent need to develop new therapeutic strategies to stimulate cardiac repair after dama...
The cellular and molecular mechanisms that are responsible for the poor regenerative capacity of the...
After myocardial infarction (MI) the human heart is unable to regenerate lost tissue, leading to sca...
Cardiac regeneration is a homeostatic cardiogenic process by which the sections of malfunctioning ad...
We recently identified a brief time period during postnatal development when the mammalian heart ret...
The adult mammalian heart is incapable of regeneration following cardiac injury, leading to a declin...
The ability of human pluripotent stem cells to form all cells of the body has provided many opportun...
In recent years, different studies have revealed that adult mammalian cardiomyocytes have the capaci...