Integrating -Omic Technologies across Modality, Space, and Time to Decipher Remodeling in Cardiac Disease
- Open Access
- 01-12-2025
- Regenerative Medicine (SM Wu, Section Editor)
- Authors
- John F. Mulvey
- Emily L. Meyer
- Mikkel Skjoldan Svenningsen
- Alicia Lundby
- Published in
- Current Cardiology Reports | Issue 1/2025
Abstract
Purpose of Review
Despite significant efforts to understand pathophysiological processes underlying cardiac diseases, the molecular causes for the most part remain unresolved. Rapid advancements in -omics technologies, and their application in cardiac research, offer new insight into cardiac remodeling in disease states. This review aims to provide an accessible overview of recent advances in omics approaches for studying cardiac remodeling, catering to readers without extensive prior expertise.
Recent Findings
We provide a methodologically focused overview of current methods for performing transcriptomics and proteomics, including their extensions for single-cell and spatial measurements. We discuss approaches to integrate data across modalities, resolutions and time. Key recent applications within the cardiac field are highlighted.
Summary
Each -omics modality can provide insight, yet each existing experimental method has technical or conceptual limitations. Integrating data across multiple modalities can leverage strengths and mitigate weaknesses, ultimately enhancing our understanding of cardiac pathophysiology.
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- Title
- Integrating -Omic Technologies across Modality, Space, and Time to Decipher Remodeling in Cardiac Disease
- Authors
-
John F. Mulvey
Emily L. Meyer
Mikkel Skjoldan Svenningsen
Alicia Lundby
- Publication date
- 01-12-2025
- Publisher
- Springer US
- Published in
-
Current Cardiology Reports / Issue 1/2025
Print ISSN: 1523-3782
Electronic ISSN: 1534-3170 - DOI
- https://doi.org/10.1007/s11886-025-02226-7
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