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1.
An. acad. bras. ciênc ; 72(1): 34-7, mar. 2000.
Article in English | LILACS | ID: lil-259475

ABSTRACT

In this article are described dendritic structures containing photoactive groups at the surface or in the core. The observed supramolecular effects can be attributed to the nature of the photoactive group and their location in the dendritic architecture. The peripheric azobenzene groups in these dendrimeric compounds can be regarded as single residues that retain the spectroscopic and photochemical properties of free azobenzene moiety. The E and Z forms of higher generation dendrimer, functionalized with azobenzene groups, show different host ability towards eosin dye, suggesting the possibility of using such dendrimer in photocontrolled host-guest systems. The photophysical properties of many dendritic-bipyridine ruthenium complexes have been investigated. Particularly in aerated medium more intense emission and a longer excited-state lifetime are observed as compared to the parent unsubstituted bipyridine ruthenium complexes. These differences can be attributed to a shielding effect towards dioxygen quenching originated by the dendritic branches


Subject(s)
Azo Compounds/chemistry , Dendrites/chemistry , Ruthenium Compounds/chemistry , Dendrites/physiology , Photochemistry
2.
Braz. j. med. biol. res ; 30(5): 555-60, May 1997.
Article in English | LILACS | ID: lil-196667

ABSTRACT

The fundamental role of N-methyl-D-aspartate (NMDA) receptors in many cortical functions has been firmly defined, as has its involvement in a number of neurological and psychiatric diseases. However, until recently very little was known about the anatomical localization od NMDA receptors in the cerebral cortex of mammals. The recent application of molecular biological techniques to the study of NMDA receptors has provided specific tolls which have greatly expanded our understading of the localization of NMDA receptors in the cerebral cortex. In particular, immunocytochemical studies on the distribution of cortical NMDA receptors have shown NMDA receptors are preferentially localized on dendritic spines, have disclosed an unknown fraction of presynaptic NMDA receptors on both excitatory and inhibitory axon terminals, and demonstrated that cortical astrocytes do express NMDA receptors. These studies suggest that the effects induced by the activation of NMDA receptors are not due solely to the opening of NMDA channels on neuronal postsynaptic membranes, as previously assumed, but that the activation of presynaptic and glial NMDA receptors may mediate part of these effects.


Subject(s)
Astrocytes/chemistry , Cerebral Cortex/chemistry , Dendrites/chemistry , In Vitro Techniques , N-Methylaspartate/chemistry , Pyramidal Cells/chemistry , Receptors, N-Methyl-D-Aspartate/isolation & purification , Receptors, N-Methyl-D-Aspartate/chemistry
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