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Updated: Jan 22, 2026

Acute Myocardial Infarction in Rats
Published on: February 16, 2011
Targeting the PI3K/STAT3 axis modulates age-related differences in macrophage phenotype in rats with myocardial
Chih-Chan Lin1, Syue-Yi Chen2, Hsiao-Yin Lien3
1Department of Medical Research, Chi-Mei Medical Center, Tainan, Taiwan.
Abstract:
Ageing is associated with impaired repair mechanisms in cardiovascular diseases. Macrophages contribute to cardiac fibrosis after myocardial infarction (MI). The phosphatidyl-inositol-3-kinase (PI3K) pathway has been shown to play a role in cardiac remodelling after MI. It remained unclear whether n-butylidenephthalide, a major component of Angelica sinensis, can attenuate cardiac fibrosis by regulating the PI3K/signal transducer and activator of transcription 3 (STAT3)-mediated macrophage phenotypes in ageing rats after MI. Twenty-four hours after ligation of the left anterior descending artery, young (2-month-old) and ageing (18-month-old) male Wistar rats were treated with either vehicle or n-butylidenephthalide for 4 weeks. There were similar infarct sizes in both age groups. Compared with young rats, ageing rats exhibited significant increased cardiac fibrosis after MI, which can be attenuated after administering n-butylidenephthalide. MI was associated with decreased activities of PI3K and STAT3 in ageing rats compared with young rats. In both age groups, n-butylidenephthalide effectively provided a significant increase of STAT3 phosphorylation, STAT3 activity, STAT3 nuclear translocation, myocardial IL-10 levels and the percentage of M2c macrophage and a decrease of myofibroblast infiltration. The effects of n-butylidenephthalide on increased IL-10 levels were reversed by LY294002 or S3I-201. Furthermore, LY294002 abolished the STAT3 phosphorylation, whereas PI3K activity was not affected following the inhibition of STAT3. In conclusions, the host environment is responsible for ageing-related myofibroblast dysregulation in response to MI which can be improved by administering n-butylidenephthalide via macrophage differentiation towards M2 phenotype by targeting the PI3K/STAT3 axis.
Insights
N-butylidenephthalide, derived from Angelica sinensis, reduces cardiac fibrosis in aging rats post-myocardial infarction (MI) by modulating macrophage phenotypes via the PI3K/STAT3 pathway, improving heart repair.
Area of Science:
- Cardiovascular Biology
- Aging Research
- Pharmacology
Background:
- Aging impairs cardiovascular repair mechanisms, exacerbating cardiac fibrosis after myocardial infarction (MI).
- Macrophages play a critical role in post-MI cardiac fibrosis.
- The phosphatidyl-inositol-3-kinase (PI3K)/signal transducer and activator of transcription 3 (STAT3) pathway is implicated in cardiac remodeling post-MI.
Purpose of the Study:
- To investigate if n-butylidenephthalide, a component of Angelica sinensis, can reduce cardiac fibrosis in aging rats after MI.
- To determine if n-butylidenephthalide regulates PI3K/STAT3-mediated macrophage phenotypes in aging rats post-MI.
Main Methods:
- Young and aging Wistar rats underwent myocardial infarction (MI) induction via LAD ligation.
- Rats were treated with vehicle or n-butylidenephthalide for 4 weeks.
- Cardiac fibrosis, macrophage phenotypes (M2c), PI3K/STAT3 pathway activity, and IL-10 levels were assessed.
Main Results:
- Aging rats showed increased cardiac fibrosis post-MI compared to young rats, which was attenuated by n-butylidenephthalide.
- N-butylidenephthalide increased STAT3 phosphorylation, activity, nuclear translocation, IL-10 levels, and M2c macrophage percentage, while decreasing myofibroblast infiltration.
- The PI3K/STAT3 pathway was crucial for n-butylidenephthalide's effects on IL-10 and macrophage differentiation.
Conclusions:
- The aging environment contributes to cardiac fibrosis post-MI.
- N-butylidenephthalide administration improves cardiac repair in aging rats by promoting M2 macrophage differentiation via the PI3K/STAT3 pathway.
- Targeting the PI3K/STAT3 axis with n-butylidenephthalide offers a potential therapeutic strategy for age-related cardiac dysfunction post-MI.
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