A critical appreciation of pathway analysis in atherosclerotic disease. Cellular phenotypic plasticity as an illustrative example

Publication date

2024-03

Authors

Wesseling, Marian
Diez Benavente, ErnestORCID 0000-0002-4313-4290
Mokry, MichalORCID 0000-0002-5298-4852ISNI 0000000387648231
den Ruijter, Hester M.ORCID 0000-0001-9762-014XISNI 0000000392927067
Pasterkamp, GerardISNI 0000000397161080

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Document Type

Article

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cc_by

Abstract

The rapid advancements in genome-scale (omics) techniques has created significant opportunities to investigate complex disease mechanisms in tissues and cells. Nevertheless, interpreting -omics data can be challenging, and pathway enrichment analysis is a frequently used method to identify candidate molecular pathways that drive gene expression changes. With a growing number of -omics studies dedicated to atherosclerosis, there has been a significant increase in studies and hypotheses relying on enrichment analysis. This brief review discusses the benefits and limitations of pathway enrichment analysis within atherosclerosis research. We highlight the challenges of identifying complex biological processes, such as cell phenotypic switching, within -omics data. Additionally, we emphasize the need for more comprehensive and curated gene sets that reflect the biological complexity of atherosclerosis. Pathway enrichment analysis is a valuable tool for gaining insights into the molecular mechanisms of atherosclerosis. Nevertheless, it is crucial to remain aware of the intrinsic limitations of this approach. By addressing these weaknesses, enrichment analysis in atherosclerosis can lead to breakthroughs in identifying the mechanisms of disease progresses, the identification of key driver genes, and consequently, advance personalized patient care.

Keywords

Atherosclerosis, Cellular plasticity, Pathway analyses, Molecular Medicine, Physiology, Pharmacology, Journal Article

Citation

Wesseling, M, Diez-Benavente, E, Mokry, M, den Ruijter, H M & Pasterkamp, G 2024, 'A critical appreciation of pathway analysis in atherosclerotic disease. Cellular phenotypic plasticity as an illustrative example', Vascular pharmacology, vol. 154, 107286, pp. 1-5. https://doi.org/10.1016/j.vph.2024.107286