Glial cells play an active role in the homeostatic regulation of the central nervous system (CNS). Astrocytes, the most abundant glial cell types in the brain, provide mechanical and metabolic support for neurons. The regulation of astrocyte apoptosis, therefore, is important for physiological and pathological processes in the CNS. Melatonin is a neurohormone that regulates target cells via binding to specific high-affinity plasma membrane receptors, MT1/MT2. In addition to regulating circadian rhythms, melatonin has recently attracted much interest for its potential regulation of cell apoptosis. We recently showed that melatonin antagonizes apoptosis on U937 cells via intersecting signal transduction events involving binding to MT1/MT2 and...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
In the present study, we examined the molecular mechanism by which homocysteine causes neuronal cell...
Glial cells play an active role in the homeostatic regulation of the central nervous system (CNS). A...
Glial cells play an active role in the homeostatic regulation of the central nervous system (CNS). A...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
As a potent free radical scavenger and antioxidant, melatonin protects brain tissue against ischemia...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
In the present study, we examined the molecular mechanism by which homocysteine causes neuronal cell...
Glial cells play an active role in the homeostatic regulation of the central nervous system (CNS). A...
Glial cells play an active role in the homeostatic regulation of the central nervous system (CNS). A...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability ...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
Among the non-neurological functions of melatonin, much attention is being directed to the ability o...
As a potent free radical scavenger and antioxidant, melatonin protects brain tissue against ischemia...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
We have recently shown that melatonin antagonizes damage-induced apoptosis by interaction with the M...
In the present study, we examined the molecular mechanism by which homocysteine causes neuronal cell...