Phenotyping cardiogenic shock: an insight from the gulf cardiogenic shock registry

Ahmed Elmahrouk1,2, Amin Daoulah1, Ahmed Jamjoom1

  • 1King Faisal Specialist Hospital and Research Centre - Jeddah, Jeddah, Saudi Arabia.

Insights

Machine learning identified four distinct cardiogenic shock (CS) phenotypes. These phenotypes show varied mortality rates, enabling better risk stratification and personalized treatment for CS patients.

Area of Science:

  • Cardiology
  • Machine Learning
  • Medical Informatics

Background:

  • Cardiogenic shock (CS) is a critical condition with high mortality and diverse clinical presentations.
  • A uniform management strategy may not be optimal for all CS patients.

Purpose of the Study:

  • To identify distinct clinical phenotypes of CS using unsupervised machine learning.
  • To characterize the mortality and SCAI stages associated with each identified CS phenotype.

Main Methods:

  • Retrospective analysis of 1,513 CS patients from the Gulf registry.
  • Unsupervised machine learning (agglomerative hierarchical clustering) applied to seven key variables.
  • Phenotypes validated against in-hospital mortality and SCAI Shock Stage.

Main Results:

  • Four distinct CS phenotypes were identified with significant differences in mortality.
  • Phenotype 1 (Compensated Low-Risk) had 22.4% mortality; Phenotype 2 (Metabolic Dysfunction) had 41.9% mortality.
  • Phenotype 3 (Multi-organ Failure) had 78.4% mortality; Phenotype 4 (Elderly Decompensated) had 60.7% mortality.

Conclusions:

  • Unsupervised machine learning successfully identified four prognostically significant CS phenotypes.
  • These data-driven phenotypes offer a novel framework for risk stratification beyond traditional systems.
  • The identified phenotypes may aid in developing personalized therapeutic strategies for cardiogenic shock.
Abstract

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