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Updated: Oct 4, 2025

A Modified Technique for Transverse Aortic Constriction in Mice
Published on: August 18, 2022
Hdac8 Inhibitor Alleviates Transverse Aortic Constriction-Induced Heart Failure in Mice by Downregulating Ace1
Tingwei Zhao1,2, Hae Jin Kee1,2, Seung-Jung Kee3
1Heart Research Center of Chonnam National University Hospital, Gwangju 61469, Republic of Korea.
Insights
The HDAC8 inhibitor PCI34051 improved cardiac and lung function in a mouse model of heart failure. This study highlights HDAC8 as a potential therapeutic target for heart failure and associated lung conditions.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Pharmacology
Background:
- Heart failure involves renin-angiotensin-aldosterone system activation, impacting cardiac hypertrophy and hypertension.
- Previous studies showed Hdac8 inhibition mitigates cardiac hypertrophy and hypertension.
- This study investigates the effects and mechanisms of the Hdac8 inhibitor PCI34051 in pressure overload-induced heart failure.
Purpose of the Study:
- To evaluate the therapeutic effects of the selective Hdac8 inhibitor PCI34051 on pressure overload-induced heart failure.
- To elucidate the regulatory mechanisms of PCI34051 in heart failure, including its impact on inflammation and fibrosis.
- To assess the role of Hdac8 in the renin-angiotensin-aldosterone system and related pathways.
Main Methods:
- Transverse aortic constriction (TAC) model in mice to induce pressure overload.
- Administration of PCI34051 and assessment of cardiac and lung hypertrophy via weight ratios and cardiomyocyte size.
- Echocardiography to evaluate cardiac function (ejection fraction, fractional shortening).
- Analysis of gene/protein expression related to Hdac8, renin-angiotensin system, inflammation (Rela, Nfkbia), and fibrosis (Tgfb1, Smad2/3).
- In vitro studies using Hdac8 knockdown/overexpression in cardiomyocytes and cardiac fibroblasts.
Main Results:
- PCI34051 treatment improved cardiac and lung function and reduced hypertrophy in TAC mice.
- Hdac8 expression was upregulated in cardiac and pulmonary tissues of TAC mice.
- PCI34051 mitigated inflammation by downregulating Rela and upregulating Nfkbia, particularly in cardiomyocytes.
- PCI34051 alleviated cardiac fibrosis by downregulating fibrosis-related genes via the Tgfb1-Smad2/3 pathway.
- Hdac8 and Ace1 were identified as promoters of inflammation and fibrosis.
Conclusions:
- PCI34051 treatment significantly enhanced cardiac and lung function in a mouse model of heart failure.
- HDAC8 inhibition represents a promising therapeutic strategy for heart failure.
- HDAC8 may be a novel therapeutic target for heart failure, especially when accompanied by pathological lung conditions.
Background:
Heart failure is characterized by activation of the renin-angiotensin-aldosterone system, which is involved in the regulation of cardiac hypertrophy and hypertension. Recently, we reported that Hdac8 inhibition alleviates isoproterenol-induced and angiotensin II-induced cardiac hypertrophy or hypertension in mice. Here, the effect and regulatory mechanisms of the Hdac8 selective inhibitor PCI34051 on pressure overload-induced heart failure were examined.
Methods And Results:
At week 6 posttransverse aortic constriction (TAC), mice were administered with PCI34051 (3, 10, or 30 mg/kg bodyweight/day) for 2 weeks. The therapeutic effects of PCI34051 on TAC-induced cardiac and lung hypertrophy were determined by examining the heart weight-to-bodyweight and lung weight-to-bodyweight ratios and the cross-sectional cardiomyocyte area. Echocardiography analysis revealed that PCI34051 mitigated TAC-induced decreased ejection fraction and fractional shortening. Additionally, the expression of Hdac8 was upregulated in the cardiac and pulmonary tissues of TAC mice. The expression levels of Ace1 and Agtr1 were upregulated, whereas those of Ace2 and Agtr2 were downregulated in TAC mice. PCI34051 treatment or Hdac8 knockdown alleviated inflammation as evidenced by Rela downregulation and Nfkbia upregulation in mice, as well as in cardiomyocytes, but not in cardiac fibroblasts. Hdac8 overexpression-induced Rela pathway activation was downregulated in Ace1 knockdown cells. Picrosirius red staining, real-time polymerase chain reaction, and western blotting analyses revealed that PCI34051 alleviated fibrosis and downregulated fibrosis-related genes. Moreover, PCI34051 or Hdac8 knockdown in rat cardiac fibroblasts alleviated cardiac fibrosis through the Tgfb1-Smad2/3 pathway. The results of overexpression and knockdown experiments revealed that Hdac8 and Ace1 promote inflammation and fibrosis.
Conclusions:
Treatment with PCI34051 enhanced cardiac and lung functions in the TAC-induced heart failure mouse model. These data suggest that HDAC8 is a potential novel therapeutic target for heart failure accompanied by pathological lung diseases.
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