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March 31, 2026Human Cell0 citations

Herbacetin alleviates acute doxorubicin cardiotoxicity via regulating the ERK1/2-FOXO3a signaling pathway

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SBSijia BianXLX. Z. LiPZPeiyan Zhu

Key Result

Herbacetin mitigated acute doxorubicin cardiotoxicity in vitro and in a rat model by regulating the ERK1/2-FOXO3a signaling pathway.

Key Points

  • The aim is to evaluate herbacetin's protective effects against doxorubicin-induced cardiotoxicity and elucidate the underlying mechanisms.
  • In vitro experiments assessed cell survival and mitochondrial integrity in DOX-treated cardiomyocytes.
  • An acute DOX cardiotoxicity rat model was employed to evaluate cardiac function and remodeling effects.
  • RNA sequencing analyzed signaling pathways altered by herbacetin treatment.
  • HBT improved cardiac function and reversed remodeling in DOX-treated rats.
  • HBT reduced mitochondrial ROS and DNA damage in DOX-treated cardiomyocytes.
  • FOXO3a levels were restored by HBT after DOX treatment, indicating its crucial role in cardioprotection.

Structured PICO

Does Herbacetin alleviate acute doxorubicin cardiotoxicity in cardiomyocytes and rat models?

P
Population
In vitro H9c2 cardiomyocytes and an acute doxorubicin (DOX) cardiotoxicity rat model
I
Intervention
Herbacetin (HBT)
C
Comparator
PBS (control) and DOX alone
O
Outcome
Cardioprotective effects including cell survival, DNA damage, mitochondrial ROS, mitochondrial integrity, cardiac function, and cardiac remodelingsurrogate

Herbacetin mitigates acute doxorubicin cardiotoxicity by regulating the ERK1/2-FOXO3a signaling pathway, highlighting its potential as a novel therapeutic agent.

Abstract

Doxorubicin (DOX) is a commonly prescribed chemotherapeutic regimen, but its practice is challenged by cardiotoxicity risks. Herbacetin (HBT), a bioactive flavonoid compound, has demonstrated anti-oxidative, anti-inflammation, and anti-tumor properties. This study aimed to evaluate the protective effects of HBT against DOX cardiotoxicity along with the underlying mechanisms. In vitro, HBT enhanced cell survival, prevented DNA damage, reduced mitochondrial ROS, and maintained mitochondrial integrity in DOX-treated cardiomyocytes. Using an acute DOX cardiotoxicity rat model, HBT prevented DOX-induced declined cardiac function and reversed cardiac remodeling depicted by increased cell size. RNA sequence analysis of PBS-, DOX-, and DOX + HBT-treated H9c2 cardiomyocytes suggested the involvement of the MAPK signaling pathway in cardioprotective effects of HBT. Specifically, the level of phosphorylated ERK1/2 was increased in DOX-treated cardiomyocytes, which declined in the presence of HBT. The decreased level of FOXO3a (downstream factor of ERK1/2) by DOX was further restored by HBT. Lastly, the knockdown of FOXO3a abrogated the cardioprotective benefits of HBT. Our data suggest that HBT mitigates acute DOX cardiotoxicity via regulating the ERK1/2-FOXO3a signaling pathway, highlighting its potential as a novel therapeutic agent against DOX cardiotoxicity.

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Cite This Study

Bian et al. (2026) studied Doxorubicin cardiotoxicity. Herbacetin (HBT) vs. Doxorubicin alone / PBS was evaluated on Cardioprotective effects (cell survival, DNA damage, mitochondrial ROS, cardiac function, cardiac remodeling). Herbacetin mitigated acute doxorubicin cardiotoxicity in vitro and in a rat model by regulating the ERK1/2-FOXO3a signaling pathway.

synapsesocial.com/papers/6a025ca3edf6f48138594822https://doi.org/10.1007/s13577-026-01362-8
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