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Biomedical subjects

P Parvy

Publications and source records attributed to P Parvy.

At least 19 recordsLinked to original sources

Clinical aspects of mitochondrial disorders.

Mitochondrial disorders have long been regarded as neuromuscular diseases only. In fact, owing to the ubiquitous nature of the oxidative phosphorylation, a broad spectrum of clinical features should be expected in mitochondrial disorders. Here, we present eight puzzling observations which give support to the view that a disorder of oxidative phosphorylation can give rise to any symptom in any organ or tissue with any apparent mode of inheritance. Consequently, we suggest giving consideration to the diagnosis of a mitochondrial disorder when dealing with an unexplained association of symptoms, with an early onset and a rapidly progressive course involving seemingly unrelated organs. Determination of lactate/pyruvate and ketone body molar ratios in plasma can help to select patients at risk for this condition.

Child, Preschool

[Amino acids and trisomy 21].

The relative concentrations of plasmatic and urinary amino acids were analysed in 79 trisomic-21 patients, 322 mentally retarded non-trisomic patients, and 206 controls. No true amino acidopathy was found in 21-trisomy, but in plasma a deficit of serine and an excess of cysteine and lysine are highly significant. Excesses of cysteine, methionine, tyrosine, and methyl-histidine are also typical in urine. The increased activity of superoxide-dismutase, cystathionine-beta-synthase, and purine synthesis enzymes, together with the sensitivity to methotrexate, atropine, and dysthyroidism, are in accordance with this shift of equilibrium. A nutritional compensation seems worth investigating.

Amino Acids

[Hyperlysinemia and hyperammonemia].

A quite important increase of plasma lysine was often reported in different cases of hyperammonemia. This retrospective study of patients with different types of hyperammonemia shows that hyperlysinemia is not automatically associated to hyperammonemia (lysinemia is expressed as the percent of total aminoacidemia). Hyperlysinemia was observed with neonatal propionic and methylmalonic acidurias. Reye's syndrome and to a less extent with ornithine transcarbamylase deficiency.

Ammonia

[A decision tree for abnormalities of plasma and urine lysine level].

Variations of plasma lysine were divided in four situations: decreased, slightly decreased to normal, normal to slightly increased and always very increased. From each of these situations, and with the concentrations of urinary lysine; a flow chart is proposed for aminoacidopathies and organic acidurias in which lysine metabolism is primarily or secondarily disturbed.

Decision Trees

[Methodological errors in amino acid assay in biological fluids].

Numerous methodological errors have been observed in the measurement of free-amino acids in the biological fluids. Some of them are related to the presence or the formation of amino acids or ninhydrin-positive compounds in tubes or anticoagulants used for the blood sampling. Hemolysis or blood clotting modify the concentration of some amino acids in plasma. A special error observed with the capillary blood is related to the amino acids present on area of the skin. Bacterial contamination of urines or buffers used for the analysis can also modify the results of the amino acids assays.

Amino Acids

Early alterations of plasma free amino acids in chronic renal failure.

In order to assess the influence of renal failure and nutritional status on the fasting concentrations of free plasma amino acids, we studied 81 ambulatory adult patients with varying degrees of chronic renal failure. Each of the patients was in good general and nutritional condition. Compared to 33 healthy controls, patients with mild renal failure (Ccr greater than 25 ml/mn) exhibited significantly (p less than 0.01, Student's t test) raised concentrations of cystine, citrulline, ornithine, taurine and 3-methyl-histidine and low level of serine. Concentrations of cystine, citrulline, and 3-methyl-histidine in plasma but not of taurine or ornithine rose in parallel with the progression of renal failure. A significant, but moderate decrease in valine, leucine and isoleucine concentrations was observed in patients with the most marked degree of renal failure (Ccr less than 10 ml/mn). We conclude that changes in the plasma concentration of several non essential amino acids are already present in the early stage of renal failure in patients with no sign of protein malnutrition: these may result from altered metabolic pathways of amino acids related to uremia and/or nephron loss per se whereas the moderate decrease in branched-chain amino acids that is observed only in the advanced stage of renal failure may be, at least in part, nutritional in origin.

Adult

Glycine/serine ratio and the prenatal diagnosis of non-ketotic hyperglycinaemia.

We describe our experience of prenatal diagnosis of non-ketotic hyperglycinaemia in four at-risk pregnancies using the glycine/serine ratio in amniotic fluid obtained between 18 and 20 weeks of gestation. All glycine levels were in the normal range. Serine levels were normal in two patients and borderline in the others. Glycine/serine ratios were normal in two patients, moderately increased in one patient (+3 SD), and highly increased in one patient (+8 SD). All the children were perfectly normal at birth. Because of this false-positive prediction and the false-negative prediction recently reported, we suggest that this unreliable method should not be used.

Amino Acid Metabolism, Inborn Errors

[Cri-du-chat disease: plasma and urinary amino acids].

Ten cases of cri du chat disease due to a del(5)(p14p15) were observed. A highly significant excess of the plasmatic and urinary relative amount of asparagine + aspartate was detected. A highly significant excess of the relative amount of histidine was also noted in the urine but not in the plasma. Excess of asparagine + aspartate could be related to a disorder of purine metabolism. The urinary excess of histidine could be related to a disorder of the aminoacid catabolism.

Adolescent

Clinical approach to inherited metabolic diseases in the neonatal period: a 20-year survey.

Every newborn with unexplained neurological deterioration, ketosis, metabolic acidosis or hypoglycaemia should be suspected of having an inherited error of intermediary metabolism. Many of these conditions can be diagnosed clinically with the aid of simple laboratory investigations. Since a substantial number of these diseases respond well to treatment but may otherwise be fatal, and in order to assure adequate prenatal diagnosis in subsequent pregnancies, a high index of suspicion and rapid diagnosis are necessary in the face of the clinical presentations described. According to three major clinical presentations observed in 218 neonates with inborn errors of intermediary metabolism (neurological distress 'intoxication' type, neurological distress 'energy-deficiency' type and hypoglycaemia with liver dysfunction) and according to the proper use of few laboratory investigations, we propose a method of diagnosis which groups these children into five categories. Initial therapy, and sophisticated investigations can be planned on the basis of this grouping.

Energy Metabolism