The greatest challenge of scientific research is to understand the causes and consequences of disease. In recent years, great efforts have been devoted to unraveling the basic mechanisms of atherosclerosis (the underlying pathology of cardiovascular disease), which remains a major cause of morbidity and mortality worldwide. Because of the complex and multifactorial pathophysiology of cardiovascular disease, different research techniques have increasingly been combined to unravel genetic aspects, molecular pathways, and cellular functions involved in atherogenesis, vascular inflammation, and dyslipidemia to gain a multifaceted picture addressing this complexity. Thanks to the rapid evolution of high-throughput technologies, we are now able t...
Background—Atherosclerosis is a complex disease requiring improvements in diagnostic techniques and ...
BACKGROUND: Atherosclerosis affects aorta, coronary, carotid, and iliac arteries most frequently tha...
Systems biology aims to understand the nonlinear interactions of multiple biomolecular components th...
The greatest challenge of scientific research is to understand the causes and consequences of diseas...
Recent rapid advances in genomic tools and techniques hold great promise for transforming the practi...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Atherosclerosis (AS) is a lipid-induced, chronic inflammatory, autoimmune disease affecting multiple...
BACKGROUND: Atherosclerosis is a leading cause of vascular disease worldwide. During the past severa...
Aims: Atherosclerosis is an inflammator y disease which molecular mechanisms are not been completely ...
Aims: Atherosclerosis is an in\ufb02ammator y disease which molecular mechanisms are not been comple...
Background. As a multifaceted disease, atherosclerosis is often characterized by the formation and a...
Despite the success of focused, reductionist approaches in characterizing the pathophysiology of car...
Background. Coronary artery atherosclerosis is a chronic inflammatory disease. This study aimed to i...
Atherosclerosis is a typical complex multi-factorial disease and many molecules at different levels ...
Background—Atherosclerosis is a complex disease requiring improvements in diagnostic techniques and ...
BACKGROUND: Atherosclerosis affects aorta, coronary, carotid, and iliac arteries most frequently tha...
Systems biology aims to understand the nonlinear interactions of multiple biomolecular components th...
The greatest challenge of scientific research is to understand the causes and consequences of diseas...
Recent rapid advances in genomic tools and techniques hold great promise for transforming the practi...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Atherosclerotic cardiovascular disease is the top cause of mortality worldwide and has imposed a mul...
Atherosclerosis (AS) is a lipid-induced, chronic inflammatory, autoimmune disease affecting multiple...
BACKGROUND: Atherosclerosis is a leading cause of vascular disease worldwide. During the past severa...
Aims: Atherosclerosis is an inflammator y disease which molecular mechanisms are not been completely ...
Aims: Atherosclerosis is an in\ufb02ammator y disease which molecular mechanisms are not been comple...
Background. As a multifaceted disease, atherosclerosis is often characterized by the formation and a...
Despite the success of focused, reductionist approaches in characterizing the pathophysiology of car...
Background. Coronary artery atherosclerosis is a chronic inflammatory disease. This study aimed to i...
Atherosclerosis is a typical complex multi-factorial disease and many molecules at different levels ...
Background—Atherosclerosis is a complex disease requiring improvements in diagnostic techniques and ...
BACKGROUND: Atherosclerosis affects aorta, coronary, carotid, and iliac arteries most frequently tha...
Systems biology aims to understand the nonlinear interactions of multiple biomolecular components th...