Repeated PM2 .5 Inhalation Exposure Drives a Duration-Dependent Transition From Mitochondrial Adaptation to

Bhavana Sivakumar1, Gino A Kurian2

  • 1Department of Radiology and Imaging Sciences, Indiana University School of Medicine, Indianapolis, Indiana, USA.

Environmental Toxicology
|August 19, 2026
PubMed

Insights

Repeated exposure to fine particulate matter (PM2.5) causes lasting heart mitochondrial damage after 14 days. Short-term PM2.5 exposure leads to temporary stress that recovers, unlike longer exposures.

Area of Science:

  • Environmental Health
  • Toxicology
  • Cardiovascular Science

Background:

  • Fine particulate matter (PM2.5) is a known cardiovascular toxicant.
  • The duration of PM2.5 exposure that causes persistent mitochondrial injury is not well understood.

Purpose of the Study:

  • To investigate the duration-dependent effects of PM2.5 exposure on cardiac mitochondria.
  • To determine the threshold for PM2.5 exposure that induces sustained mitochondrial dysfunction and cardiovascular impairment.

Main Methods:

  • Female Wistar rats were exposed to PM2.5 (250 μg/m³, 3 h/day) for 1, 7, 14, or 21 days.
  • Evaluated cardiac mitochondrial bioenergetics, redox balance, quality control, and ex vivo cardiac function.
  • Conducted washout validation to assess recovery.

Main Results:

  • Short-term exposure (1-7 days) caused transient mitochondrial oxidative stress and adaptive responses, with full recovery after a 24-h washout.
  • Sustained mitochondrial dysfunction, including impaired respiration, ATP synthesis, and DNA depletion, was evident after 14 days of exposure.
  • Cardiac functional deficits induced after ≥14 days persisted even after a 24-h washout.

Conclusions:

  • A duration-dependent transition exists where PM2.5 exposure shifts cardiac mitochondria from transient stress to persistent injury.
  • Repeated PM2.5 exposure for 14 days or longer induces non-recoverable mitochondrial and cardiac dysfunction.
  • These findings provide a mechanistic basis for understanding PM2.5 cardiovascular hazard characterization based on exposure duration.