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Internalization of isolated functional mitochondria: involvement of macropinocytosis
Tomoya Kitani1, Daisuke Kami, Satoaki Matoba
1Department of Cardiovascular Medicine, Graduate School of Medical Science, Kyoto Prefectural University School of Medicine, Kyoto, Japan.
Abstract:
In eukaryotic cells, mitochondrial dysfunction is associated with a variety of human diseases. Delivery of exogenous functional mitochondria into damaged cells has been proposed as a mechanism of cell transplant and physiological repair for damaged tissue. We here demonstrated that isolated mitochondria can be transferred into homogeneic and xenogeneic cells by simple co-incubation using genetically labelled mitochondria, and elucidated the mechanism and the effect of direct mitochondrial transfer. Intracellular localization of exogenous mitochondria was confirmed by PCR, real-time PCR, live fluorescence imaging, three-dimensional reconstruction imaging, continuous time-lapse microscopic observation, flow cytometric analysis and immunoelectron microscopy. Isolated homogeneic mitochondria were transferred into human uterine endometrial gland-derived mesenchymal cells in a dose-dependent manner. Moreover, mitochondrial transfer rescued the mitochondrial respiratory function and improved the cellular viability in mitochondrial DNA-depleted cells and these effects lasted several days. Finally, we discovered that mitochondrial internalization involves macropinocytosis. In conclusion, these data support direct transfer of exogenous mitochondria as a promising approach for the treatment of various diseases.
Insights
Researchers show isolated mitochondria can be transferred into cells, restoring function and improving viability. This mitochondrial transfer, occurring via macropinocytosis, offers a promising therapeutic approach for diseases linked to mitochondrial dysfunction.
Area of Science:
- Cell Biology
- Mitochondrial Medicine
- Regenerative Medicine
Background:
- Mitochondrial dysfunction is implicated in numerous human diseases.
- Exogenous mitochondria delivery is a potential strategy for cell and tissue repair.
Purpose of the Study:
- To demonstrate the direct transfer of isolated mitochondria into cells.
- To elucidate the mechanism and effects of this mitochondrial transfer.
- To assess the therapeutic potential of exogenous mitochondria.
Main Methods:
- Genetically labeled mitochondria were co-incubated with recipient cells.
- Intracellular localization confirmed via PCR, real-time PCR, live imaging, 3D reconstruction, time-lapse microscopy, flow cytometry, and immunoelectron microscopy.
- Mitochondrial function and cellular viability assays were performed.
Main Results:
- Isolated mitochondria successfully transferred into human mesenchymal cells in a dose-dependent manner.
- Mitochondrial transfer restored respiratory function and improved viability in depleted cells.
- Mitochondrial internalization was identified to occur through macropinocytosis.
Conclusions:
- Direct transfer of exogenous mitochondria is feasible and effective.
- This method can rescue cellular function and viability.
- Exogenous mitochondrial transfer presents a promising therapeutic avenue for mitochondrial-related diseases.
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