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Updated: Jul 11, 2026

Assessment of Open Probability of the Mitochondrial Permeability Transition Pore in the Setting of Coenzyme Q Excess
Published on: June 1, 2022
Mitochondrial respiration and membrane potential after low-flow ischemia are not affected by ischemic preconditioning
Kerstin Boengler1, Petra Gres, Giuliano Dodoni
1Institut für Pathophysiologie, Zentrum für Innere Medizin, Universitätsklinikum Essen, Hufelandstr. 55, 45122 Essen, Germany.
Abstract:
Mitochondrial function following prolonged ischemia and subsequent reperfusion is better preserved by ischemic preconditioning (IP). In the present study, we analyzed whether or not IP has an impact on mitochondrial function at the end of a sustained ischemic period. Göttinger minipigs were subjected to 90-min low-flow ischemia without (n=5) and with (n=5) a preconditioning cycle of 10-min ischemia and 15-min reperfusion. Mitochondria were isolated from the ischemic or preconditioned anterior wall (AW) and the control posterior wall (PW) at the end of ischemia. Basal mitochondrial respiration was not different between AW and PW. The ADP-stimulated (state 3) respiration in AW mitochondria compared to PW mitochondria was equally decreased in non-preconditioned and preconditioned pigs. The uncoupled respiration as well as the membrane potential (rhodamine 123 fluorescence) were not significantly different between groups. However, the recovery of the membrane potential (Delta rhodamine 123 fluorescence/s) after the addition of ADP was delayed in mitochondria obtained from AW compared to PW, both in non-preconditioned and in preconditioned pig hearts. Neither the amount of marker proteins for complexes of the electron transport chain nor the level of reactive oxygen species were affected by ischemia without or with IP. State 3 respiration and recovery of membrane potential were impaired in pig mitochondria after 90 min of low-flow ischemia. IP did not improve mitochondrial function during ischemia. Therefore, the preservation of mitochondrial function by IP may occur during reperfusion rather than during the sustained ischemic period.
Insights
Ischemic preconditioning (IP) did not improve mitochondrial function during a sustained ischemic period in pigs. The protective effects of IP on mitochondrial function may occur during reperfusion, not during ischemia itself.
Area of Science:
- Cardiovascular Science
- Mitochondrial Biology
- Ischemia-Reperfusion Injury
Background:
- Ischemic preconditioning (IP) is known to preserve mitochondrial function after ischemia and reperfusion.
- However, its effect on mitochondrial function during a sustained ischemic period remains unclear.
Purpose of the Study:
- To investigate the impact of IP on mitochondrial function at the end of a prolonged ischemic period.
- To determine if IP offers protection to mitochondria during sustained ischemia.
Main Methods:
- Göttinger minipigs underwent 90-minute low-flow ischemia, with or without a preconditioning protocol.
- Mitochondria were isolated from ischemic and control myocardial regions at the end of ischemia.
- Mitochondrial respiration, membrane potential, electron transport chain proteins, and reactive oxygen species were assessed.
Main Results:
- Basal and ADP-stimulated (state 3) respiration were reduced in ischemic mitochondria compared to controls, irrespective of preconditioning.
- Mitochondrial membrane potential recovery was delayed in ischemic mitochondria, with no significant difference between preconditioned and non-preconditioned groups.
- Electron transport chain protein levels and reactive oxygen species were unaffected by ischemia or IP.
Conclusions:
- IP does not appear to preserve mitochondrial function during a sustained ischemic period.
- The protective effects of IP on mitochondrial function may be primarily exerted during the subsequent reperfusion phase.
- These findings suggest a temporal dissociation between IP's effects during ischemia and reperfusion.

