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February 26, 2026Pharmaceuticals0 citationsOpen Access

Yixinjiedu Formula Attenuates Pressure Overload-Induced Cardiac Dysfunction by Suppressing Ferroptosis and Restoring Mitophagy via the PINK1/Parkin Axis

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KXKang XieHZHaowen ZhuangXDXin Dong

Key Result

Yixinjiedu formula improved cardiac function and reduced hypertrophy in TAC mice by suppressing ferroptosis and restoring mitophagy via PINK1/Parkin.

Key Points

  • This research investigates how Yixinjiedu formula (YXJDF) affects cardiac function during pressure overload, focusing on ferroptosis and mitophagy mechanisms.
  • Used a transverse aortic constriction (TAC) mouse model to assess cardiac function.
  • Employed angiotensin II-induced HL-1 cardiomyocytes to evaluate drug effects.
  • Conducted histological, biochemical, and molecular analyses to measure ferroptosis and mitophagy.
  • Applied network pharmacology to identify potential targets.
  • Performed LC-MS/MS profiling and molecular docking to analyze YXJDF constituents.
  • YXJDF significantly improved cardiac function in TAC mice, reducing hypertrophy and fibrosis.
  • The formula suppressed ferroptosis, indicated by decreased lipid peroxidation and increased GPX4 and FTH1 levels.
  • Mitophagy was restored with elevated PINK1 and Parkin levels and improved autophagic flux metrics.
  • Network pharmacology identified PINK1 as a critical target, supported by in vivo and in vitro experiments.
  • LC-MS/MS identified 20 key compounds in YXJDF with strong binding to PINK1.

Structured PICO

Does Yixinjiedu formula improve cardiac function and attenuate injury in pressure overload-induced heart failure models?

P
Population
Transverse aortic constriction (TAC) mouse model and angiotensin II-induced HL-1 cardiomyocytes
I
Intervention
Yixinjiedu formula (YXJDF)
O
Outcome
Cardiac function, myocardial hypertrophy, fibrosis, ferroptosis, and mitophagysurrogate

Yixinjiedu formula ameliorates pressure overload-induced cardiac injury in preclinical models by restoring PINK1/Parkin-mediated mitophagy and suppressing ferroptosis.

Abstract

Background: Pressure overload-induced heart failure (HF) involves cardiac remodeling, ferroptosis, and impaired mitophagy. Yixinjiedu formula (YXJDF), a traditional Chinese medicine, shows cardiovascular protective effects, but its underlying mechanisms remain largely unclear. This study aims to evaluate the cardioprotective effect of YXJDF in pressure overload-induced HF and explore its regulatory role in ferroptosis and mitophagy. Methods: A transverse aortic constriction (TAC) mouse model and angiotensin II-induced HL-1 cardiomyocytes were used to assess the therapeutic effects of YXJDF. Cardiac function, ferroptosis, and mitophagy were evaluated using histological, biochemical, molecular, and imaging analyses. Autophagic flux was assessed using lysosomal inhibition. Network pharmacology was applied to identify potential targets, while LC-MS/MS profiling and molecular docking were used to characterize major constituents of YXJDF and predict target interactions. Results: In TAC mice, YXJDF significantly improved cardiac function and attenuated myocardial hypertrophy and fibrosis. YXJDF suppressed ferroptotic injury, as evidenced by reduced lipid peroxidation, restoration of GPX4 and FTH1 expression, and normalization of antioxidant capacity. Mitophagy was restored, as indicated by increased PINK1 and Parkin expression, enhanced LC3-II accumulation, and reduced p62 and TOM20 levels, and as confirmed by autophagic flux analysis. Consistent protective effects on ferroptosis and mitophagy were observed in angiotensin II-induced cardiomyocytes. Network pharmacology analysis identified PINK1 as a key target, which was validated by in vivo and in vitro experiments. LC-MS/MS identified 20 major chemical constituents in YXJDF, and molecular docking showed strong binding affinity between several compounds (e.g., calycosin, salvianolic acid A) and PINK1. Conclusions: YXJDF ameliorates pressure overload-induced cardiac injury by restoring PINK1/Parkin-mediated mitophagy and suppressing ferroptosis. These findings reveal a multi-target mechanism underlying the therapeutic potential of YXJDF in HF.

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Cite This Study

Xie et al. (2026) studied this question. Yixinjiedu formula improved cardiac function and reduced hypertrophy in TAC mice by suppressing ferroptosis and restoring mitophagy via PINK1/Parkin.

synapsesocial.com/papers/699fe3f995ddcd3a253e8160https://doi.org/10.3390/ph19030360
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