Environment international

A new two-part AhR process linked to heart aging caused by 6PPDQ

Updated

Abstract

6PPDQ exposure at 2 μg/L in zebrafish and 500 μg/L in cardiomyocytes induces cardiac senescence.

  • 6PPDQ triggers cardiac senescence via activation of the aryl hydrocarbon receptor (AhR) through a kynurenine pathway.
  • Increased levels of reactive oxygen species and DNA damage are observed, leading to cellular senescence indicated by elevated markers such as p21 and p16.
  • The canonical genomic pathway involves AhR upregulating Cyp1a1, resulting in cellular damage and impaired cardiac function.
  • A non-genomic pathway activates signaling through Src kinase and PI3K/AKT, affecting the nuclear translocation of transcription factor EB (TFEB).
  • Disruption of autophagy and lysosomal biogenesis is indicated by lysosomal depletion and accumulation of p62, accelerating cardiac aging.
  • Inhibition of AhR reduces DNA damage and restores autophagic flux, alleviating senescence effects caused by 6PPDQ.

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