David G Nicholls, Sabino Vesce, Liana Kirk, Susan Chalmers
Index: Cell Calcium 34 , 407-424, (2003)
Full Text: HTML
The mitochondrion has moved to the center stage in the drama of the life and death of the neuron. The mitochondrial membrane potential controls the ability of the organelle to generate ATP, generate reactive oxygen species and sequester Ca(2+) entering the cell. Each of these processes interact, and their deconvolution is far from trivial. The cultured cerebellar granule cell provides a model in which knowledge gained from studies on isolated mitochondria can be applied to study the role played by the organelles in the maintenance of Ca(2+) homeostasis in the cell under resting, stimulated and pathophysiological conditions. In particular, mitochondria play a complex role in the response of the neuron to excitotoxic stimulation of NMDA and AMPA-kainate selective glutamate receptors. One goal of research in this area is to provide clues as to possible ways in which modulators of mitochondrial function may be used as neuroprotective agents, since mitochondrial Ca(2+) accumulation seems to play a key role in glutamate excitotoxicity.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
Kainic acid hydrate
CAS:58002-62-3 |
C10H15NO4 |
MicroRNA-124 and -137 cooperativity controls caspase-3 activ...
2015-01-01 [Sci. Rep. 5 , 12448, (2015)] |
Nodule excitability in an animal model of periventricular no...
2015-04-01 [Epilepsia 56(4) , 626-35, (2015)] |
Plasticity of calcium signaling cascades in human embryonic ...
2013-05-15 [Stem Cells Dev. 22(10) , 1506-21, (2013)] |
CNS oxidative stress associated with the kainic acid rodent ...
2000-03-01 [Epilepsy Res. 39 , 63-71, (2000)] |
Neuroprotection requires the functions of the RNA-binding pr...
2015-05-01 [Cell Death Differ. 22(5) , 703-18, (2015)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved