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Hepatic encephalopathy brain neurotoxicity

Because the CNS is sensitive to ammonia, its metabolism in the brain and the neurotoxicity associated with hyperammonia and hepatic encephalopathy (the proximate source of damage in the latter is also ammonia) is reviewed here. Hepatic encephalopathy (HE) or congenital and acquired hyperammonemia result in excessive ammonia accumulation within the CNS. The condition is due... [Pg.47]

With respect to the correlation between liver disorders and the functions of the brain, discussion currently focuses on five hypotheses concerning the development of hepatic encephalopathy (7.) intoxication hypothesis, (2.) neurotransmitter hypothesis, (2.) deficiency hypothesis, (4.) synergistic neurotoxicity, and (J.) hypothesis of primary gliopathy. [Pg.265]

Neurotoxicity can also occur as a result of indirect effects. For example, damage to hepatic, renal, circulatory, or pancreatic structures may result in secondary effects on the function and structure of the nervous system, such as encephalopathy or polyneuropathy. Secondary effects would not cause a substance to be considered neurotoxic, though at high enough doses, neurotoxicity could be evident. Thus, for the purpose of this review, a substance is defined as neurotoxic when it or its metabolites produce adverse effects as a result of direct interactions with the nervous system. It should be noted, nevertheless, that some chemicals may have multiple modes of action and affect the nervous system directly and indirectly. For example, several halogenated compounds (e.g., polychlorinated biphenyls (PCB), polybrominated diphenyl ethers (PBDE)) may interact directly with brain cells, and also affect the development of the nervous system by altering thyroid hormone homeostasis.7 8... [Pg.136]


See other pages where Hepatic encephalopathy brain neurotoxicity is mentioned: [Pg.90]    [Pg.1131]    [Pg.351]    [Pg.404]    [Pg.172]   
See also in sourсe #XX -- [ Pg.596 ]




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