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Updated: Nov 9, 2025

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Pgc-1α Promotes Phosphorylation, Inflammation, and Apoptosis in H9c2 Cells During the Early Stage of
Qun Huang1, De-Hong Liu2, Chang-Feng Chen1
1Emergency Department, Shenzhen Second People's Hospital, Shenzhen University First Affiliated Hospital, No.3002 Sungang West Road, Shenzhen, 518035, Guangdong, People's Republic of China.
Insights
Peroxisome proliferator-activated receptor-γ coactivator 1α (Pgc-1α) influences septic heart dysfunction by modulating inflammatory factors and apoptosis. Pgc-1α overexpression exacerbates inflammation but reduces early apoptosis, while its inhibition promotes apoptosis.
Area of Science:
- Molecular Biology
- Cellular Biology
- Cardiovascular Research
Background:
- Severe sepsis-induced cardiac dysfunction contributes significantly to mortality.
- The precise molecular mechanisms driving septic cardiomyopathy remain incompletely understood.
- Investigating key regulatory pathways is crucial for understanding cardiac response to sepsis.
Purpose of the Study:
- To elucidate the role of peroxisome proliferator-activated receptor-γ coactivator 1α (Pgc-1α) in septic cardiac dysfunction.
- To examine the impact of Pgc-1α modulation on inflammatory responses and apoptosis in a cellular model of sepsis.
Main Methods:
- H9c2 cells were stimulated with lipopolysaccharide (LPS) to mimic sepsis.
- Quantitative PCR (qPCR), ELISA, and Western blotting (WB) were employed to assess gene/protein expression and signaling.
- Lentivirus-mediated overexpression and siRNA-mediated suppression of Pgc-1α were utilized for functional studies.
Main Results:
- LPS stimulation increased Pgc-1α expression, inflammatory cytokine levels (IL-1β, IL-6, TNF-α), and NF-κB pathway activation (p-p65).
- Pgc-1α overexpression enhanced LPS-induced inflammation and p-p65 levels but inhibited early apoptosis (cleaved-caspase-3).
- Pgc-1α suppression attenuated LPS-induced inflammation and p-p65 activation while promoting apoptosis.
Conclusions:
- Pgc-1α plays a dual role in sepsis-induced cellular responses, promoting inflammatory signaling while inhibiting early apoptosis.
- Modulation of Pgc-1α activity represents a potential therapeutic target for septic cardiomyopathy.
- Understanding Pgc-1α's intricate involvement is key to developing strategies against septic cardiac dysfunction.
Abstract:
Cardiac dysfunction in severe sepsis is associated with increased mortality. However, the molecular mechanisms underlying septic heart dysfunction remain unclear. Expression of peroxisome proliferator-activated receptor-γ coactivator 1α (Pgc-1α), concentrations of inflammatory factors, and activation of the nuclear factor kappa-B (NF-κB) signaling pathway were examined in H9c2 cells after a 24-h lipopolysaccharide (LPS) stimulation period using qPCR, enzyme-linked immunosorbent assays (ELISAs), and western blots (WBs), respectively. Pgc-1α was overexpressed and suppressed in cells using a lentivirus vector and siRNA, respectively. The effects of Pgc-1α dysfunction on the release of inflammatory factors and apoptosis were analyzed. Pgc-1α expression was increased after LPS induction for 0.5 h and returned to the pre-induction level at 2 h. Levels of IL-1β, IL-6, and TNF-α increase after LPS induction for 0.5 h and accumulated in the culture supernatants over time. The WBs revealed the highest Pgc-1α and phospho (p)-p65 protein levels after LPS induction for 0.5 h, followed by a decrease; moreover, the cleaved-caspase-3 level increased after LPS induction for 0.5 h and increased gradually thereafter. A functional analysis of Pgc-1α revealed that overexpression of this protein enhanced LPS-induced inflammatory factors and p-p65 levels and inhibited apoptosis during the early stage after LPS induction (0.5 and 4 h). In contrast, the inhibition of Pgc-1α expression inhibited the LPS expression-associated increases in inflammatory factors and p-p65 and promoted apoptosis. Pgc-1α promoted LPS-induced p65 phosphorylation and inflammatory factor release while inhibiting apoptosis.
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