© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).Neurons rely mostly on mitochondria for the production of ATP and Ca2+ homeostasis. As sub-compartmentalized cells, they have different pools of mitochondria in each compartment that are maintained by a constant mitochondrial turnover. It is assumed that most mitochondria are generated in the cell body and then travel to the synapse to exert their functions. Once damaged, mitochondria have to travel back to the cell body for degradation. However, in long cells, like motor neurons, this constant travel back...
Mitochondrial electron transport generates the ATP that is essential for the excitability and surviv...
Neurons are large eukaryotic cells with high metabolic demands. Intracellular transport plays an imp...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...
Neurons rely mostly on mitochondria for the production of ATP and Ca2+ homeostasis. As sub-compartme...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons are post-mitotic cells that must function throughout the life of an organism. The high energ...
AbstractMitochondrial dysfunction has severe cellular consequences, and is linked to aging and neuro...
Mitochondria are widely distributed via regulated transport in neurons, but their sites of biogenesi...
Mitochondria are the power houses of the cell, but unlike the static structures portrayed in textboo...
AbstractCells precisely regulate mitochondrial movement in order to balance energy needs and avoid c...
Mitochondria play a multidimensional role in the function and the vitality of the neurological syste...
Mitochondria are organelles with recognized key roles in cellular homeostasis, including bioenergeti...
Mitochondria maintain a diversity of roles central to the array of neuronal functions and survival, ...
Neurons are large eukaryotic cells with high metabolic demands. Intracellular transport plays an imp...
Mitochondrial electron transport generates the ATP that is essential for the excitability and surviv...
Neurons are large eukaryotic cells with high metabolic demands. Intracellular transport plays an imp...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...
Neurons rely mostly on mitochondria for the production of ATP and Ca2+ homeostasis. As sub-compartme...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons critically depend on mitochondria for ATP production and Ca2+ buffering. They are highly com...
Neurons are post-mitotic cells that must function throughout the life of an organism. The high energ...
AbstractMitochondrial dysfunction has severe cellular consequences, and is linked to aging and neuro...
Mitochondria are widely distributed via regulated transport in neurons, but their sites of biogenesi...
Mitochondria are the power houses of the cell, but unlike the static structures portrayed in textboo...
AbstractCells precisely regulate mitochondrial movement in order to balance energy needs and avoid c...
Mitochondria play a multidimensional role in the function and the vitality of the neurological syste...
Mitochondria are organelles with recognized key roles in cellular homeostasis, including bioenergeti...
Mitochondria maintain a diversity of roles central to the array of neuronal functions and survival, ...
Neurons are large eukaryotic cells with high metabolic demands. Intracellular transport plays an imp...
Mitochondrial electron transport generates the ATP that is essential for the excitability and surviv...
Neurons are large eukaryotic cells with high metabolic demands. Intracellular transport plays an imp...
Mitochondria play many important biological roles, including ATP production, lipid biogenesis, ROS r...