Excellent spatial and temporal resolution and physico-chemical properties of ultramicroélectrodes (UME) induce high detection sensitivity, thus being particularly well adapted to the study of biological mechanisms of secretion from a single cell. In the " semi-artificial synapse " configuration, the short distance between the transmitting cell and the UME causes appropriate local concentration to be electrochemically detected. UME allows the detection of minute amount of electroactive molecules in real time. This analytical technique was used, completed or adapted to study two major biological phenomena: vesicular exocytosis and cellular oxidative stress. Amperometric investigations of exocytosis, a key mechanism involved in cell communicat...
Exocytosis, the fusion of intracellular vesicles with the membrane and subsequent release of vesicul...
A method for monitoring the biological exocytotic phenomena on a microfluidic system was proposed. A...
Biological intercellular communication necessitates rapid and efficient processes. Cells must be abl...
Excellent spatial and temporal resolution and physico-chemical properties of ultramicroélectrodes (U...
Vesicular exocytosis is a ubiquitous way for intercellular communications. TIRFM (total internal ref...
The work described in this thesis has the focus on the development of new analytical tools to study ...
With intrinsic benefits of electrochemistry and unprecedented progress in instrumentation, microelec...
Les microélectrodes permettent la détection directe de faibles quantités (atto à femtomoles) de biom...
For the analytical study of single cells or small groups of cells, it is of the utmost importance to...
Nitric oxide (NO*) and peroxynitrite (ONOO−) are involved in several pathologies, including cancer, ...
Leur excellente résolution spatiale et leurs propriétés particulières rendent les ultramicroélectrod...
Extracellular communication relies on signaling molecules for cellular survival, division, different...
International audienceIn this work, Fluorescent False Neurotransmitter 102 (FFN102), a synthesized a...
Unraveling the mechanistic details of neurotransmitter exocytosis is arguably among the most importa...
International audienceIn the framework of artificial or synthetic cell development, giant liposomes ...
Exocytosis, the fusion of intracellular vesicles with the membrane and subsequent release of vesicul...
A method for monitoring the biological exocytotic phenomena on a microfluidic system was proposed. A...
Biological intercellular communication necessitates rapid and efficient processes. Cells must be abl...
Excellent spatial and temporal resolution and physico-chemical properties of ultramicroélectrodes (U...
Vesicular exocytosis is a ubiquitous way for intercellular communications. TIRFM (total internal ref...
The work described in this thesis has the focus on the development of new analytical tools to study ...
With intrinsic benefits of electrochemistry and unprecedented progress in instrumentation, microelec...
Les microélectrodes permettent la détection directe de faibles quantités (atto à femtomoles) de biom...
For the analytical study of single cells or small groups of cells, it is of the utmost importance to...
Nitric oxide (NO*) and peroxynitrite (ONOO−) are involved in several pathologies, including cancer, ...
Leur excellente résolution spatiale et leurs propriétés particulières rendent les ultramicroélectrod...
Extracellular communication relies on signaling molecules for cellular survival, division, different...
International audienceIn this work, Fluorescent False Neurotransmitter 102 (FFN102), a synthesized a...
Unraveling the mechanistic details of neurotransmitter exocytosis is arguably among the most importa...
International audienceIn the framework of artificial or synthetic cell development, giant liposomes ...
Exocytosis, the fusion of intracellular vesicles with the membrane and subsequent release of vesicul...
A method for monitoring the biological exocytotic phenomena on a microfluidic system was proposed. A...
Biological intercellular communication necessitates rapid and efficient processes. Cells must be abl...