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Updated: Aug 21, 2026

Understanding the Changes in Mitochondrial Morphology through Dynamic and Three-dimensional Fluorescence Micrographs
Published on: August 15, 2025
Morphology of mitochondrial permeability transition: morphometric volumetry in apoptotic cells
Antonio Sesso1, Márcia M Marques, Maria M T Monteiro
1Laboratory of Immunopathology, Institute of Tropical Medicine, University of São Paulo, Av. Enéas de Carvalho Aguiar, 500 Prédio II 2o andar, CEP 05403-000 São Paulo, SP, Brazil. antses88@uol.com.br
Abstract:
Here we report on the mitochondrial permeability transition (MPT), which refers to the morphology of mitochondria whose inner membrane has lost its selective permeability. In all types of apoptotic cells so far examined, we found outer mitochondrial membranes that had been ruptured. These mitochondria present a swollen matrix covered by an inner membrane herniating into the cytoplasm through the breached outer membrane. Similarly ruptured outer mitochondrial membranes have been reported in studies on mitochondrial fractions induced to undergo MPT, carried out by others. Our observations were made on five types of rat tissue cells and six different cultured cell lines in the early stages of apoptosis. Samples from the cell lines HL-60, HeLa, WEHI-164, and a special batch of PC-12 cells were subjected to various apoptogenic agents and analyzed morphometrically. Nonapoptotic companion cells with unaltered nuclear structure (CUNS) were also analyzed. The mitochondrial volume in microm(3) and the volume fraction of the cytoplasm occupied by mitochondria in cells with typical nuclear signs of apoptosis and also in CUNS were evaluated. The volume of the mitochondria with ruptured membrane represents at least 69% (47-89%) of the total mitochondrial volume of the apoptotic cells. Thus, a considerable fraction of the cellular mitochondrial mass is or was in the state of permeability transition and probably involved in enhancement of the apoptotic program. In all samples, a fraction of the cells with normal nuclei possessed mitochondria with breached outer membranes as described above. In these cells, MPT occurred before the appearance of the typical nuclear phenotype of the apoptotic cells.
Insights
Mitochondrial permeability transition (MPT) involves ruptured outer mitochondrial membranes in apoptotic cells. This process, observed before nuclear changes, suggests MPT significantly contributes to apoptosis.
Area of Science:
- Cell Biology
- Apoptosis Research
- Mitochondrial Dynamics
Background:
- Mitochondrial permeability transition (MPT) is a critical event in apoptosis.
- Understanding MPT's morphological changes is key to deciphering apoptotic mechanisms.
Purpose of the Study:
- To investigate the morphological characteristics of mitochondria during apoptosis.
- To determine the extent and timing of mitochondrial permeability transition (MPT) in relation to nuclear events.
Main Methods:
- Morphometric analysis of mitochondria in various rat tissue cells and cultured cell lines undergoing apoptosis.
- Comparison of apoptotic cells with nonapoptotic companion cells (CUNS).
- Evaluation of mitochondrial volume and cytoplasmic volume fraction.
Main Results:
- Ruptured outer mitochondrial membranes were consistently observed in apoptotic cells.
- Mitochondria with breached outer membranes constituted at least 69% of the total mitochondrial volume in apoptotic cells.
- MPT was detected in cells prior to the appearance of typical nuclear apoptotic phenotypes.
Conclusions:
- Mitochondrial permeability transition (MPT) is a significant event in apoptosis, involving substantial mitochondrial mass.
- MPT precedes the characteristic nuclear changes of apoptosis, indicating its early role in the process.
- These findings highlight the crucial involvement of mitochondria in regulating and executing the apoptotic program.

