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Precision Medicine and the future of Cardiovascular Diseases: A Clinically Oriented Comprehensive Review
Yashendra Sethi1,2, Neil Patel1,3, Nirja Kaka1,3
1PearResearch, Dehradun 248001, India.
Insights
Precision medicine revolutionizes cardiovascular disease care by integrating
Area of Science:
- Cardiovascular Medicine and Precision Health
Background:
- Cardiovascular diseases (CVDs) represent a significant global health burden, with prevalence and disability-adjusted life years (DALY) nearly doubling.
- The shift from infectious to non-infectious diseases necessitates advanced approaches to manage the growing impact of CVDs.
Purpose of the Study:
- To review clinically relevant precision medicine tools for evidence-based, individualized management of high-burden cardiac diseases.
- To highlight the integration of 'omics' data for deep phenotyping and personalized cardiovascular therapies.
Main Methods:
- Review of evolving precision medicine tools and 'omics' technologies (genomics, proteomics, metabolomics, etc.) in cardiology.
- Analysis of research identifying novel genes, biomarkers, and proteins for early diagnosis and targeted treatment of heart diseases.
Main Results:
- Precision medicine enables targeted cardiovascular therapies through deep phenotyping.
- Identified novel genetic and molecular targets facilitate early diagnosis, precise intervention, and reduced side effects.
- Precision medicine offers a personalized alternative to standardized treatment approaches for cardiovascular conditions.
Conclusions:
- Precision medicine is poised to transform cardiovascular medicine, offering more efficient and patient-centric management.
- Addressing economic, cultural, technical, and socio-political barriers is crucial for widespread implementation of precision cardiology.
Abstract:
Cardiac diseases form the lion's share of the global disease burden, owing to the paradigm shift to non-infectious diseases from infectious ones. The prevalence of CVDs has nearly doubled, increasing from 271 million in 1990 to 523 million in 2019. Additionally, the global trend for the years lived with disability has doubled, increasing from 17.7 million to 34.4 million over the same period. The advent of precision medicine in cardiology has ignited new possibilities for individually personalized, integrative, and patient-centric approaches to disease prevention and treatment, incorporating the standard clinical data with advanced "omics". These data help with the phenotypically adjudicated individualization of treatment. The major objective of this review was to compile the evolving clinically relevant tools of precision medicine that can help with the evidence-based precise individualized management of cardiac diseases with the highest DALY. The field of cardiology is evolving to provide targeted therapy, which is crafted as per the "omics", involving genomics, transcriptomics, epigenomics, proteomics, metabolomics, and microbiomics, for deep phenotyping. Research for individualizing therapy in heart diseases with the highest DALY has helped identify novel genes, biomarkers, proteins, and technologies to aid early diagnosis and treatment. Precision medicine has helped in targeted management, allowing early diagnosis, timely precise intervention, and exposure to minimal side effects. Despite these great impacts, overcoming the barriers to implementing precision medicine requires addressing the economic, cultural, technical, and socio-political issues. Precision medicine is proposed to be the future of cardiovascular medicine and holds the potential for a more efficient and personalized approach to the management of cardiovascular diseases, contrary to the standardized blanket approach.
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