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Related Concept Videos

Ischemic Heart Disease: Overview01:17

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Ischemic heart disease occurs when the heart's blood supply dwindles, causing an ominous lack of oxygen and nutrients. This deficiency, stemming from reduced or obstructed blood flow, spells danger, leading to heart muscle damage and dysfunction.
Atherosclerosis, the primary malefactor, orchestrates this dangerous condition. It manifests as the accumulation of fatty deposits, akin to insidious plaques, within arterial walls. As time elapses, these plaques metamorphose, hardening and...
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Related Experiment Video

Updated: Aug 29, 2025

Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
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Multi-omics research strategies in ischemic stroke: A multidimensional perspective.

Wentao Li1, Chongyu Shao2, Huifen Zhou2

  • 1School of Pharmaceutical Sciences, Zhejiang Chinese Medical University, Hangzhou 310053, China.

Ageing Research Reviews
|September 10, 2022
PubMed
Summary

Discovering biomarkers for ischemic stroke (IS) is crucial. Integrating multiple omics data, like genomics and proteomics, offers a deeper understanding of stroke mechanisms and potential treatments.

Keywords:
BiomarkersIschemic strokeMachine learningMechanismsMulti-omicsSystems biology

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Area of Science:

  • Neurology
  • Genomics
  • Proteomics
  • Metabolomics
  • Systems Biology

Background:

  • Ischemic stroke (IS) is a complex neurological disorder with significant mortality and disability.
  • Current understanding of IS molecular mechanisms is limited, and effective clinical biomarkers are lacking.

Purpose of the Study:

  • To explore the potential of high-throughput omics approaches for IS biomarker discovery.
  • To explain the pathological mechanisms of IS through integrated multi-omics analysis.
  • To discuss strategies for multi-omics data integration and its application in IS research.

Main Methods:

  • Review of advances in genomics, transcriptomics, proteomics, and metabolomics.
  • Discussion of integrated analysis of multi-omics data.
  • Application of systems biology principles to IS research.

Main Results:

  • Single-omics approaches provide limited insights into complex diseases like IS.
  • Multi-omics integration reveals interactions across molecular levels, offering a comprehensive view.
  • Integrative omics approaches are vital for identifying IS biomarkers and understanding pathogenesis.

Conclusions:

  • Multi-omics integration is essential for advancing the understanding of ischemic stroke.
  • This approach holds promise for identifying novel therapeutic targets and clinical biomarkers for IS.
  • Systems biology combined with integrative omics can significantly improve IS management.