Mitochondria and the complex endomembrane system are hallmarks of eukaryotic cells. To date, it has been difficult to manipulate organelle structures within single live cells. We developed a FluidFM-based approach to extract, inject, and transplant organelles from and into living cells with subcellular spatial resolution. The technology combines atomic force microscopy, optical microscopy, and nanofluidics to achieve force and volume control with real-time inspection. We developed dedicated probes that allow minimally invasive entry into cells and optimized fluid flow to extract specific organelles. When extracting single or a defined number of mitochondria, their morphology transforms into a pearls-on-a-string phenotype due to locally appl...
Mitochondrial DNA (mtDNA) with deleterious mutations can cause severe inherited diseases due to defe...
Using nanofluidic channels in PDMS of cross section 500 nm × 2 μm, we demonstrate the trapping and i...
Stem cells (SC) are largely known for their potential to restore damaged tissue through various know...
Quantitative control of mitochondria transfer between live cells is a promising approach for genetic...
Mitochondria, often considered simple cellular powerhouses that generate ATP by oxidative phosphoryl...
Mitochondria are organelles that play a key role in cellular energy metabolism through oxida-tive ph...
Intercellular mitochondrial transfer is the acquisition of exogenous mitochondria by one cell from a...
Mitochondrion is a membrane-enclosed organelle found in most eukaryotic cells, which plays a vital r...
The hypothesis of mitochondrial transfer between eukaryotic animal cells is intriguing, although its...
Over the past decade and a half, evidence for transfer of whole mitochondria between mammalian cells...
International audienceMitochondria play a central role for cell metabolism, energy production and co...
Mitochondria are organelles that play a vital role in cellular survival by supplying ATP and metabol...
Generating mammalian cells with desired mitochondrial DNA (mtDNA) sequences is enabling for studies ...
Abstract Background Mitochondrial dysfunction is involved in several diseases ranging from genetic m...
We have developed a new method for introducing large numbers of isolated mitochondria into tissue cu...
Mitochondrial DNA (mtDNA) with deleterious mutations can cause severe inherited diseases due to defe...
Using nanofluidic channels in PDMS of cross section 500 nm × 2 μm, we demonstrate the trapping and i...
Stem cells (SC) are largely known for their potential to restore damaged tissue through various know...
Quantitative control of mitochondria transfer between live cells is a promising approach for genetic...
Mitochondria, often considered simple cellular powerhouses that generate ATP by oxidative phosphoryl...
Mitochondria are organelles that play a key role in cellular energy metabolism through oxida-tive ph...
Intercellular mitochondrial transfer is the acquisition of exogenous mitochondria by one cell from a...
Mitochondrion is a membrane-enclosed organelle found in most eukaryotic cells, which plays a vital r...
The hypothesis of mitochondrial transfer between eukaryotic animal cells is intriguing, although its...
Over the past decade and a half, evidence for transfer of whole mitochondria between mammalian cells...
International audienceMitochondria play a central role for cell metabolism, energy production and co...
Mitochondria are organelles that play a vital role in cellular survival by supplying ATP and metabol...
Generating mammalian cells with desired mitochondrial DNA (mtDNA) sequences is enabling for studies ...
Abstract Background Mitochondrial dysfunction is involved in several diseases ranging from genetic m...
We have developed a new method for introducing large numbers of isolated mitochondria into tissue cu...
Mitochondrial DNA (mtDNA) with deleterious mutations can cause severe inherited diseases due to defe...
Using nanofluidic channels in PDMS of cross section 500 nm × 2 μm, we demonstrate the trapping and i...
Stem cells (SC) are largely known for their potential to restore damaged tissue through various know...