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Published on: February 20, 2019
Identification of Important Genes Associated with the Development of Atherosclerosis
1Department of Nursing, Ryazan State Medical University Named After Academician I.P. Pavlov, Russian Federation.
Insights
Atherosclerosis, a complex vascular disease, involves lipid metabolism, inflammation, and hemodynamics. Understanding genetic factors and their interplay with these mechanisms is key for improved diagnosis and patient management.
Area of Science:
- Cardiovascular Science
- Pathophysiology
- Genetics
Background:
- Atherosclerosis is a leading cause of disability and mortality.
- It is a complex, long-term vascular disease.
- Key mechanisms include lipid metabolism disorders, inflammation, and altered hemodynamics.
Purpose of the Study:
- To explore the multifaceted mechanisms of atherogenesis.
- To investigate the role of genetic and epigenetic factors in atherosclerosis.
- To understand the interrelations between lipid metabolism, inflammation, and hemodynamics.
Main Methods:
- Review of current scientific evidence on atherogenesis.
- Analysis of genetic and epigenetic influences.
- Examination of the interplay between hemodynamic changes, lipid metabolism, and inflammation.
Main Results:
- Evidence highlights the significant role of genetic and epigenetic factors in atherosclerosis predisposition.
- Lipid metabolism, inflammation, and hemodynamics are interconnected mechanisms in atherogenesis.
- These factors influence the development and clinical outcomes of the disease.
Conclusions:
- Further research into these interconnected mechanisms is crucial.
- Improved understanding can enhance diagnostic and therapeutic strategies for atherosclerosis patients.
Abstract:
Atherosclerosis is one of the most important medical problems due to its prevalence and significant contribution to the structure of temporary and permanent disability and mortality. Atherosclerosis is a complex chain of events occurring in the vascular wall over many years. Disorders of lipid metabolism, inflammation, and impaired hemodynamics are important mechanisms of atherogenesis. A growing body of evidence strengthens the understanding of the role of genetic and epigenetic factors in individual predisposition and development of atherosclerosis and its clinical outcomes. In addition, hemodynamic changes, lipid metabolism abnormalities, and inflammation are closely related and have many overlapping links in regulation. A better study of these mechanisms may improve the quality of diagnosis and management of such patients.
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