Saturday, 19 March 2011

Alzheimer


Alzheimer

http://lansbury.bwh.harvard.edu/

http://lansbury.bwh.harvard.edu/alzheimer_disease.htm


http://lansbury.bwh.harvard.edu/ad_reviews_2005.htm



What causes neuronal death in Alzheimer's disease





Secret to Amyloid Formation




Inside the Brain: Unraveling the Mystery of Alzheimer's Disease [HQ]



Tuesday, 15 March 2011

L-Glutamic Acid

L-Glutamate is the most abundant amino acids in the mammalian central nervous systems (CNS) where serving as an excitatory neurotransmitter. 

Chemical Structure: Glutamic Acid - Compound Summary



Glutamate: its role in learning, memory, and the aging brain   


l-Glutamate is the most abundant of a group of endogenous amino acids in the mammalian central nervous system which presumably function as excitatory neurotransmitters and under abnormal conditions may behave as neurotoxins. As neurotransmitters, these compounds are thought to play an important role in functions of learning and memory. As neurotoxins, they are believed to be involved in the pathogenesis of a variety of neurodegenerative disorders in which cognition is impaired. Moreover, brain structures which are considered anatomical substrata for learning and memory may be particularly vulnerable to the neurotoxic actions of these excitatory amino acids, especially in the elderly who are also the segment of the population most susceptible to impairments of mnemonic function. This paper is a review of data concerning the role of excitatory amino acids in the processes of learning and memory and in the pathogenesis and treatment of disorders thereof.





Molecular neurobiology: proceedings of the second NIMH conference








Mechanism of Glutamate Excitotoxicity



FundScience - Glutamate Transporter




Neurotransmitter Synapse 3D Animation