MiR-200a-3p Aggravates DOX-Induced Cardiotoxicity by Targeting PEG3 Through SIRT1/NF-κB Signal Pathway

Qinghua Fu1, Hongwei Pan2, Yi Tang2

  • 1Department of Cardiovasology, Hunan Provincial People's Hospital, Changsha, Hunan, 410000, People's Republic of China. 56071317@qq.com.

Cardiovascular Toxicology
|February 27, 2021
PubMed

Insights

MicroRNA-200a-3p (miR-200a-3p) can mitigate doxorubicin-induced cardiotoxicity by targeting PEG3. This study reveals miR-200a-3p

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cardiology

Background:

  • Doxorubicin (DOX) is a vital chemotherapy agent with dose-limiting cardiotoxicity.
  • Mechanisms to counteract DOX-induced cardiotoxicity remain largely unexplored.
  • MicroRNAs (miRNAs) are emerging as key regulators in cellular processes and disease.

Purpose of the Study:

  • To investigate the role of miR-200a-3p in doxorubicin-induced cardiotoxicity.
  • To elucidate the underlying molecular mechanisms involving PEG3 and the SIRT1/NF-κB pathway.
  • To explore miR-200a-3p as a potential therapeutic target for mitigating DOX side effects.

Main Methods:

  • Establishment of DOX-induced myocardial injury rat models.
  • Administration of miR-200a-3p inhibitors and assessment of cardiac function and biomarkers (LDH, CK-MB, LVEDP, LVSP).
  • In vitro studies using DOX-treated cardiomyocytes with PEG3 knockdown/transfection and dual luciferase reporter assays to confirm target interaction.

Main Results:

  • DOX treatment significantly impaired heart function and increased myocardial injury markers in rats.
  • miR-200a-3p expression was upregulated in DOX-induced cardiotoxicity.
  • Inhibition of miR-200a-3p partially attenuated DOX-induced cardiotoxicity, while PEG3 modulation affected cardiomyocyte viability in vitro.
  • miR-200a-3p directly targets PEG3, influencing the SIRT1/NF-κB pathway to regulate cardiomyocyte proliferation, apoptosis, and inflammation.

Conclusions:

  • miR-200a-3p plays a protective role against DOX-induced cardiotoxicity.
  • The mechanism involves miR-200a-3p targeting PEG3, thereby modulating the SIRT1/NF-κB signaling pathway.
  • miR-200a-3p represents a promising therapeutic strategy for managing chemotherapy-induced heart damage.

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