Si-Miao-Yong-An Decoction Protects Against Cardiac Hypertrophy and Dysfunction by Inhibiting Platelet Aggregation and

Congping Su1, Qing Wang1, Huimin Zhang1

  • 1School of Traditional Chinese Medicine, Beijing University of Chinese Medicine, Beijing, China.

Frontiers in Pharmacology
|October 18, 2019
PubMed

Insights

Si-Miao-Yong-An decoction (SMYAD) effectively treats heart hypertrophy in mice by inhibiting platelet aggregation and activation. This traditional Chinese medicine preserves cardiac function and reduces heart enlargement, offering a potential therapeutic strategy for heart failure.

Area of Science:

  • Cardiovascular Research
  • Pharmacology
  • Traditional Chinese Medicine

Background:

  • Pressure overload leads to cardiac hypertrophy, a precursor to heart failure.
  • Traditional Chinese Medicine (TCM) formulations are increasingly investigated for cardiovascular benefits.

Purpose of the Study:

  • To investigate the efficacy of Si-Miao-Yong-An decoction (SMYAD) in ameliorating pressure overload-induced cardiac hypertrophy.
  • To elucidate the underlying mechanisms of SMYAD's cardioprotective effects.

Main Methods:

  • Cardiac hypertrophy was induced in C57BL/6 mice via transverse aortic constriction (TAC).
  • Mice received SMYAD or captopril treatment for 4 weeks, with cardiac function assessed by echocardiography.
  • Cardiac hypertrophy markers (mRNA and histology) and platelet-related protein expression (CD41, CD61, P-selectin) were quantified.

Main Results:

  • TAC mice exhibited significant cardiac hypertrophy and reduced left ventricular ejection fraction.
  • SMYAD treatment preserved cardiac function, attenuated hypertrophy, and decreased myocyte cross-sectional area.
  • SMYAD significantly downregulated the expression of platelet aggregation (CD41, CD61) and activation (P-selectin) markers.

Conclusions:

  • SMYAD effectively ameliorates pressure overload-induced cardiac hypertrophy and dysfunction in mice.
  • The therapeutic effects of SMYAD are attributed to the inhibition of platelet aggregation and activation.
  • Targeting platelet pathways may represent a novel therapeutic approach for heart failure using SMYAD.

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