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Updated: Jul 17, 2026

Isolation and Functional Analysis of Mitochondria from Cultured Cells and Mouse Tissue
Published on: March 23, 2015
Mitochondrial membrane potential and apoptosis peripheral blood monocytes in severe human sepsis
C Adrie1, M Bachelet, M Vayssier-Taussat
1Laboratory of Respiratory Physiology and Medical Intensive Care Unit, APHP, Cochin Port-Royal Hospital, Paris, France. christophe.adrie@wanadoo.fr
Unlabelled:
Reduced mitochondrial membrane potential (Delta(Psi)m), which is considered as an initial and irreversible step towards apoptosis, as well as cell death regulating proteins, such as Fas, Hsp70, or Bcl-2, may play an important role in sepsis. We studied the relationship between sepsis severity and peripheral blood monocyte Delta(Psi)m, cell death (necrosis and apoptosis), soluble Fas ligand, Hsp70, and Bcl-2 expression over time in 18 patients with sepsis, and compared these data with those of a group of 17 healthy control subjects. All measurements were performed within 3 d of the onset of severe sepsis (T1), then 7 to 10 d later (T2), and finally at hospital discharge (T3). Delta(Psi)m was expressed as the percent monocytes with altered Delta(Psi)m (%Delta(Psi)m). Patients with sepsis had greater %Delta(Psi)m at T1 and T2 but not at T3 (14.6 +/- 2.6% and 15.9 +/- 2%, respectively, versus control 6.6 +/- 0.2%, p < 0.01). Septic patients exhibited greater cell death in their monocytes and had greater Hsp70 expression only at T1. Bcl-2 levels were similar in septic and control subjects. Comparing survivors with non-survivors of sepsis, nonsurvivors had a greater %Delta(Psi)m at T1 (26.4 +/- 5.3% versus 10.1 +/- 2.7%, p < 0.01) and a significant decrease in Bcl-2 expression, whereas no difference was found in Hsp70 levels. These results indicate that mitochondrial dysfunction and subsequent cell death occur in severe sepsis and suggest that %Delta(Psi)m is a marker of severity in human sepsis.
Keywords:
mitochondria; apoptosis; sepsis; heat-shock protein 70; proto-oncogene protein c-Bcl-2
Insights
Mitochondrial dysfunction and cell death are key in severe sepsis. Altered mitochondrial membrane potential (%Delta(Psi)m) in monocytes indicates sepsis severity and predicts outcomes.
Area of Science:
- Cellular Biology
- Immunology
- Pathophysiology
Background:
- Sepsis involves complex cellular responses, including apoptosis and mitochondrial dysfunction.
- Mitochondrial membrane potential (Delta(Psi)m) and cell death regulators like Fas, Hsp70, and Bcl-2 are implicated in sepsis pathogenesis.
Purpose of the Study:
- To investigate the relationship between sepsis severity and monocyte mitochondrial membrane potential, cell death, and specific protein expressions over time.
- To compare these parameters in septic patients versus healthy controls and analyze differences between sepsis survivors and non-survivors.
Main Methods:
- Peripheral blood monocytes from 18 sepsis patients and 17 controls were analyzed for %Delta(Psi)m, cell death, soluble Fas ligand, Hsp70, and Bcl-2 at three time points.
- Measurements were taken within 3 days of sepsis onset (T1), 7-10 days later (T2), and at hospital discharge (T3).
Main Results:
- Septic patients showed significantly higher %Delta(Psi)m at T1 and T2 compared to controls.
- Increased monocyte cell death and Hsp70 expression were observed in sepsis patients at T1.
- Non-survivors exhibited higher %Delta(Psi)m at T1 and reduced Bcl-2 expression compared to survivors.
Conclusions:
- Severe sepsis is characterized by mitochondrial dysfunction and increased monocyte cell death.
- %Delta(Psi)m in monocytes serves as a potential marker for sepsis severity and patient prognosis.
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