Glucose variability and mortality in patients hospitalized with acute myocardial infarction

Kasia J Lipska1, Lakshmi Venkitachalam, Kensey Gosch

  • 1Department of Internal Medicine, Yale University, New Haven, CT, USA. kasia.lipska@yale.edu

Abstract

Insights

Glucose variability (GV) during acute myocardial infarction (AMI) is linked to higher mortality in initial analyses. However, GV does not independently predict in-hospital mortality after accounting for mean blood glucose and other patient factors.

Area of Science:

  • Cardiology
  • Endocrinology
  • Critical Care Medicine

Background:

  • Mean blood glucose (BG) during acute myocardial infarction (AMI) predicts mortality.
  • Glucose variability (GV) may also impact outcomes in critically ill patients.
  • The independent prognostic value of GV during AMI is not well understood.

Purpose of the Study:

  • To investigate whether glucose variability (GV) independently predicts in-hospital mortality in patients with AMI.
  • To compare the prognostic value of different GV metrics against mean BG.

Main Methods:

  • Analysis of 18,563 AMI patients with ≥3 BG readings in the first 48 hours.
  • Comparison of five GV metrics (range, SD, MAGE, MAG, ADRR) using logistic regression.
  • Sequential adjustment for mean BG, hypoglycemia, and patient characteristics.

Main Results:

  • In unadjusted analyses, greater GV (e.g., range, ADRR) was associated with higher mortality.
  • The association between GV and mortality was no longer significant after multivariable adjustment.
  • Mean BG remained a significant predictor of survival across all models.

Conclusions:

  • Greater GV is associated with increased mortality risk in unadjusted analyses of AMI patients.
  • GV is not independently predictive of mortality after controlling for mean BG and other factors.
  • GV does not appear to offer additional prognostic value beyond established risk factors during AMI.

Related Concept Videos

Glucose Homeostasis: Regulation of Blood Glucose01:02

Glucose Homeostasis: Regulation of Blood Glucose

Carbohydrates consumed through foods are converted into glucose, a crucial energy source for the body. In the prandial state, high blood glucose levels stimulate the secretion of insulin from the pancreas. Insulin inhibits hepatic glucose production and stimulates glucose uptake and metabolism by muscle and adipose tissue. The excess glucose is converted into glycogen and stored in the liver and muscles.
During fasting, when blood glucose levels are low, the pancreas secretes glucagon. it...
Acute Coronary Syndrome III: Diagnostic Studies01:30

Acute Coronary Syndrome III: Diagnostic Studies

Diagnosing acute coronary syndrome or ACS begins with a thorough patient history. Notable symptoms include central, crushing chest pain radiating to the left arm, neck, jaw, or back, along with shortness of breath, sweating (diaphoresis), nausea, vomiting, dizziness, and palpitations.It is crucial to note any history of cardiac illnesses and assess risk factors, including age, gender, smoking, hypertension, diabetes, hyperlipidemia, and a sedentary lifestyle.During physical examination, vital...
Hyperglycemia01:29

Hyperglycemia

Hyperglycemia is an abnormally high blood glucose level. It is diagnosed by fasting glucose ≥126 mg/dL, 2-hour oral glucose tolerance test (or OGTT) ≥200 mg/dL, random glucose ≥200 mg/dL with symptoms, or HbA1c ≥6.5%. However, HbA1c results may be unreliable in certain conditions, such as anemia or hemoglobinopathies, and the diagnosis should be confirmed unless classic symptoms are present. Postprandial hyperglycemia is typically considered significant when glucose levels exceed 180 mg/dL two...
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations01:19

Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations

The pathophysiology of Acute Coronary Syndrome [ACD] involves several key processes:The main underlying cause of ACD is atherosclerosis, a chronic inflammatory disease characterized by the buildup of lipid-laden plaques within the coronary arteries.As the atherosclerotic plaque grows in the coronary artery, it may become unstable due to the formation of a lipid-rich core and a thin fibrous cap. Inflammatory cells within the plaque, such as macrophages, secrete enzymes that degrade the...
Ischemic Heart Disease: Overview01:17

Ischemic Heart Disease: Overview

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 narrowing...
Acute Coronary Syndrome I: Introduction01:30

Acute Coronary Syndrome I: Introduction

Acute Coronary Syndrome (ACS) encompasses a spectrum of heart conditions caused by sudden obstruction of coronary arteries, typically resulting from the rupture of an atherosclerotic plaque and subsequent thrombus (blood clot) formation. This obstruction can lead to partial or complete blockage of blood flow, causing varying degrees of myocardial ischemia or infarction.ACS includes the following clinical entities:Unstable Angina (UA)Non-ST-Elevation Myocardial Infarction (NSTEMI)ST-Elevation...