MicroRNAs play pivotal roles in cardiac disease, and their therapeutic modulation raises exciting and unique opportunities, as well as challenges in the path toward clinical development and implementation. In this review, we provide a detailed overview of recent studies highlighting the important role of microRNAs in heart failure (HF) and the potential use of microRNA-based technology for diagnosis, prevention, and treatment of HF. We will focus on the strategies presently used for microRNA-based therapy by discussing their use and drawbacks, as well as the challenges and future directions for their development in the context of human HF
Abstract: Heart failure is a leading cause of death in industrialized nations especially in an aging...
Heart failure is one of the common end stages of cardiovascular diseases, the leading cause of death...
Heart failure (HF) disease progression is related to numerous adaptive processes including cardiac f...
MicroRNAs play pivotal roles in cardiac disease, and their therapeutic modulation raises exciting an...
Abstract Heart failure is a common and disabling disease with high mortality that carries substantia...
Heart failure (HF) is the end result of a diverse set of causes such as genetic cardiomyopathies, co...
MicroRNAs (miRNAs) are increasingly recognized to play important roles in cardiovascular diseases, i...
MiRNA-regulated processes are pivotal in cardiovascular homeostasis and disease. These short non-cod...
Heart failure (HF) imposes significant economic and public health burdens upon modern society. It is...
MicroRNAs (miRNAs) are increasingly recognized to play important roles in cardiovascular diseases, i...
Heart failure still represents a real challenge both in everyday practice and research, due to the c...
A number of microRNAs are involved in the pathophysiological events associated with heart disease. I...
Heart failure (HF) describes a group of manifestations caused by the failure of heart function as a ...
Heart failure represents the common end-point of a wide range of heart diseases. We are still far fr...
With 550 000 new cases diagnosed annually and $37 billion spent per year,1 heart failure (HF) with r...
Abstract: Heart failure is a leading cause of death in industrialized nations especially in an aging...
Heart failure is one of the common end stages of cardiovascular diseases, the leading cause of death...
Heart failure (HF) disease progression is related to numerous adaptive processes including cardiac f...
MicroRNAs play pivotal roles in cardiac disease, and their therapeutic modulation raises exciting an...
Abstract Heart failure is a common and disabling disease with high mortality that carries substantia...
Heart failure (HF) is the end result of a diverse set of causes such as genetic cardiomyopathies, co...
MicroRNAs (miRNAs) are increasingly recognized to play important roles in cardiovascular diseases, i...
MiRNA-regulated processes are pivotal in cardiovascular homeostasis and disease. These short non-cod...
Heart failure (HF) imposes significant economic and public health burdens upon modern society. It is...
MicroRNAs (miRNAs) are increasingly recognized to play important roles in cardiovascular diseases, i...
Heart failure still represents a real challenge both in everyday practice and research, due to the c...
A number of microRNAs are involved in the pathophysiological events associated with heart disease. I...
Heart failure (HF) describes a group of manifestations caused by the failure of heart function as a ...
Heart failure represents the common end-point of a wide range of heart diseases. We are still far fr...
With 550 000 new cases diagnosed annually and $37 billion spent per year,1 heart failure (HF) with r...
Abstract: Heart failure is a leading cause of death in industrialized nations especially in an aging...
Heart failure is one of the common end stages of cardiovascular diseases, the leading cause of death...
Heart failure (HF) disease progression is related to numerous adaptive processes including cardiac f...