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Hyperammonemia, or high ammonia levels, is a metabolic disturbance characterised by an excess of ammonia in the blood. Severe hyperammonemia is a dangerous condition that may lead to brain injury and death. It may be primary or secondary. Ammonia is a substance that contains nitrogen. It is a product of the catabolism of protein.
Carbamoyl phosphate synthetase I deficiency (CPS I deficiency) [1] is an autosomal recessive metabolic disorder that causes ammonia to accumulate in the blood due to a lack of the enzyme carbamoyl phosphate synthetase I. Ammonia, which is formed when proteins are broken down in the body, is toxic if the levels become too high.
[2] [6] It may be supported by blood ammonia levels, an electroencephalogram, or computer tomography (CT scan) of the brain. [4] [6] Hepatic encephalopathy is possibly reversible with treatment. [1] This typically involves supportive care and addressing the triggers of the event. [4] Lactulose is frequently used to decrease ammonia levels. [1]
Protein toxicity is the effect of the buildup of protein metabolic waste compounds, like urea, uric acid, ammonia, and creatinine.Protein toxicity has many causes, including urea cycle disorders, genetic mutations, excessive protein intake, and insufficient kidney function, such as chronic kidney disease and acute kidney injury.
A lot of water is needed for the excretion of ammonia, about 0.5 L of water is needed per 1 g of nitrogen to maintain ammonia levels in the excretory fluid below the level in body fluids to prevent toxicity. [citation needed] Thus, the marine organisms excrete ammonia directly into the water and are called ammonotelic. [2]
Adults with high blood ammonia levels: disorientation, confusion, slurred speech, unusual and extreme combativeness or agitation, stroke-like symptoms, lethargy and delirium. Many may be seen by neurologists or psychiatrists because of psychiatric symptoms, including schizophrenia and bipolar disorder.
Hyperammonemia occurs when the body produces excess ammonia. This ammonia primarily exists as ammonium ion that has a concentration less than or around 35 μmol/L in normal referenced serum levels. [3] Excess ammonia is processed in the liver through the urea cycle to produce urea. [3]
This biochemical phenotype (increased ammonia, low citrulline and increased orotic acid) is classic for OTC deficiency, but can also be seen in neonatal presentations of ornithine aminotransferase deficiency. [4] Only severely affected males consistently demonstrate this classic biochemical phenotype. [citation needed]
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