Associations between long-term fine particulate matter exposure and hospital procedures in heart failure patients

Samantha Catalano1, Joshua Moyer2, Anne Weaver2

  • 1Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.

Plos One
|May 3, 2023
PubMed
Abstract

Insights

Long-term exposure to fine particulate matter (PM2.5) increases the need for diagnostic tests in heart failure patients. This finding highlights potential drivers of healthcare costs associated with air pollution.

Area of Science:

  • Environmental Health
  • Cardiology
  • Public Health

Background:

  • Ambient fine particulate matter (PM2.5) is a global health concern linked to morbidity and mortality.
  • Understanding PM2.5's health effects through hospital procedures, especially in chronic disease populations, is crucial but understudied.
  • This study focuses on the impact of PM2.5 on hospital procedures in individuals with heart failure.

Purpose of the Study:

  • To investigate the association between annual average PM2.5 exposure and hospital procedures among heart failure patients.
  • To provide insights into patient morbidity and healthcare costs related to PM2.5 exposure.

Main Methods:

  • A retrospective cohort of 15,979 heart failure patients was analyzed using electronic health records.
  • Daily modeled PM2.5 data (1x1 km resolution) was used to estimate annual average exposure at diagnosis.
  • Quasi-Poisson models adjusted for demographic and socioeconomic factors to assess PM2.5's impact on procedure frequency.

Main Results:

  • A 1 μg/m3 increase in annual average PM2.5 was associated with a significant rise in specific diagnostic tests.
  • Notable increases included glycosylated hemoglobin tests (10.8%), prothrombin time tests (15.8%), and stress tests (6.84%).
  • Sensitivity analyses confirmed the stability of these findings.

Conclusions:

  • Long-term PM2.5 exposure is linked to an increased demand for diagnostic testing in heart failure patients.
  • These associations offer a novel perspective on heart failure patient morbidity.
  • The findings suggest PM2.5 exposure may be a significant factor contributing to healthcare costs.

Related Concept Videos

Heart Failure V: Medical Management01:30

Heart Failure V: Medical Management

Medical Management of Acute Decompensated Heart Failure (ADHF)The primary goals of therapy for patients hospitalized with acute decompensated heart failure (ADHF) include:Relieving symptomsOptimizing volume statusSupporting oxygenation and ventilationMaintaining cardiac output (CO) and end-organ perfusionIdentifying and addressing the cause of ADHFPreventing complicationsProviding patient education on factors precipitating HF exacerbationPlanning for dischargeOngoing monitoring and assessment...
17
Heart Failure III: Clinical Manifestations01:26

Heart Failure III: Clinical Manifestations

Heart failure (HF) manifests primarily as dyspnea, fatigue, and fluid retention, resulting in peripheral and pulmonary edema. Symptoms may vary depending on which ventricle is more affected, left or right.Left-Sided Heart FailureAlso known as left ventricular failure, this condition results from the left ventricle's inability to fill or eject sufficient blood into the systemic circulation. It leads to pulmonary congestion, which occurs when the left ventricle fails to eject blood effectively...
29
Heart Failure VII: Nursing Interventions01:30

Heart Failure VII: Nursing Interventions

The first step in nursing management of a patient with heart failure involves thoroughly assessing the patient's medical history.Subjective Data: Obtain the patient's medical history of coronary artery disease, hypertension, myocardial infarction, and symptoms like dyspnea, orthopnea, and paroxysmal nocturnal dyspnea.Objective Data: Conduct a physical examination to identify findings such as jugular vein distention, pulmonary crackles, tachycardia, murmurs, peripheral edema, and vital signs,...
128
Heart Failure II: Pathophysiology01:29

Heart Failure II: Pathophysiology

Systolic Heart Failure and Compensatory MechanismsSystolic heart failure (also termed HFrEF, Heart Failure with Reduced Ejection Fraction) is the most prevalent type of heart filure. It results in a decreased volume of blood being pumped from the ventricle. The aortic arch and carotid sinuses have baroreceptors that detect reduced blood pressure, triggering the sympathetic nervous system (SNS) to release epinephrine and norepinephrine. Initially, this response aims to boost heart rate and...
19
Heart Failure VI: Adjunct Therapies01:22

Heart Failure VI: Adjunct Therapies

Additional therapies for treating patients with heart failure (HF) may include procedural interventions, supplemental oxygen, the management of sleep disorders, and nutritional therapy.Procedural InterventionsImplantable Cardioverter-Defibrillator: For patients at risk of life-threatening arrhythmias due to severe left ventricular dysfunction, an Implantable Cardioverter-Defibrillator (ICD) can detect and terminate these arrhythmias, preventing sudden cardiac death and improving survival rates.
19
Pathophysiology of Heart Failure01:17

Pathophysiology of Heart Failure

Heart failure (HF) is a progressive syndrome involving ventricles that leads to inadequate cardiac output. It can be classified based on location and output or ejection fraction. Ejection fraction (EF) is an essential measurement in the diagnosis and surveillance of HF. Reduced EF corresponds to systolic heart failure (HFrEF). However, HF with preserved ejection fraction (HFpEF) is becoming increasingly prevalent. Also known as diastolic HF, this form of HF is related to aging. The...
1.7K