A great deal of information is available on the pathology of human alcoholism, yet the precise mechanisms of ethanol action are very poorly understood. The cytotoxic effects following chronic alcohol exposure may be due to ethanol directly, or the result of exposure to one of the metabolites of alcohol oxidation. In the primary pathway of alcohol metabolism, acetaldehyde is produced from ethanol through the action of the enzyme alcohol dehydrogenase (ADH). The acetaldehyde is then further oxidized to the harmless metabolite acetate through the action of acetaldehyde dehydrogenase. At present, acetaldchyde is believed to be the toxic element responsible for much of the complex pathology associated with alcoholism. We have utilized immunocytochemistry procedures to identify ADH within selected regions of the rat brain that are known to be damaged in Wernicke's encephalopathy of alcoholism (18-20). We hypothesize that the local production of acetaldehyde in these locations is responsible for the subsequent CNS symptomology. We have localized ADH using normal animals that have never been given alcohol. The goal of this proposal is to investigate the effects of both acute and chronic alcohol administration on the distribution of ADH. We plan to examine this enzyme in the brain as well as in other organs known to be included in the pathology of alcoholism, such as the testes, stomach, intestines, kidney, and spleen. Included in this project will be the construction of an """"""""ADH map"""""""" of the central nervous system which pinpoints the response of the brain to acute and chronic alcohol exposure.

Project Start
Project End
Budget Start
Budget End
Support Year
14
Fiscal Year
1993
Total Cost
Indirect Cost
Name
San Jose State University
Department
Type
DUNS #
City
San Jose
State
CA
Country
United States
Zip Code
95112
Saleh, Nidal; Moore 2nd, Barry; Srebro, Monika et al. (2015) Acid/base-triggered switching of circularly polarized luminescence and electronic circular dichroism in organic and organometallic helicenes. Chemistry 21:1673-81
Saleh, Nidal; Srebro, Monika; Reynaldo, Thibault et al. (2015) enantio-Enriched CPL-active helicene-bipyridine-rhenium complexes. Chem Commun (Camb) 51:3754-7
Zhang, Xiao-Peng; Chang, Victoria Y; Liu, Jian et al. (2015) Potential switchable circularly polarized luminescence from chiral cyclometalated platinum(II) complexes. Inorg Chem 54:143-52
Sundar, M Shyam; Talele, Harish R; Mande, Hemant M et al. (2014) Synthesis of enantiomerically pure helicene like bis-oxazines from atropisomeric 7,7'-dihydroxy BINOL: Preliminary measurements of the circularly polarized luminescence. Tetrahedron Lett 55:1760-1764
Sánchez-Carnerero, Esther M; Moreno, Florencio; Maroto, Beatriz L et al. (2014) Circularly polarized luminescence by visible-light absorption in a chiral O-BODIPY dye: unprecedented design of CPL organic molecules from achiral chromophores. J Am Chem Soc 136:3346-9
Shen, Chengshuo; Anger, Emmanuel; Srebro, Monika et al. (2014) Straightforward access to mono- and bis-cycloplatinated helicenes that display circularly polarized phosphorescence using crystallization resolution methods. Chem Sci 5:1915-1927
Tohgha, Urice; Deol, Kirandeep K; Porter, Ashlin G et al. (2013) Ligand induced circular dichroism and circularly polarized luminescence in CdSe quantum dots. ACS Nano 7:11094-102
Brunet, Ernesto; Jimenez, Laura; de Victoria-Rodriguez, Maria et al. (2013) The use of lanthanide luminescence as a reporter in the solid state: Desymmetrization of the prochiral layers of ýý-zirconium phosphate/phosphonate and circularly polarized luminescence. Microporous Mesoporous Mater 169:222-234
Bozoklu, Gulay; Gateau, Christelle; Imbert, Daniel et al. (2012) Metal-controlled diastereoselective self-assembly and circularly polarized luminescence of a chiral heptanuclear europium wheel. J Am Chem Soc 134:8372-5
Carey, Clayton M; Bueno, Raymund; Gutierrez, Daniel A et al. (2012) Recombinant rubistatin (r-Rub), an MVD disintegrin, inhibits cell migration and proliferation, and is a strong apoptotic inducer of the human melanoma cell line SK-Mel-28. Toxicon 59:241-8

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