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Glutaric acidemia, type I, missed by newborn screening in an infant with dystonia following promethazine administration.

We report a child initially diagnosed with promethazine-induced dystonia despite a lack of response to diphenhydramine therapy. On further evaluation, the child was diagnosed with glutaric acidemia, type I (GA-I), an autosomal recessive inborn error of metabolism caused by the deficiency of glutaryl-CoA dehydrogenase. The characteristic clinical feature of GA-I is an acute encephalopathic and neurologic crisis typically occurring during a catabolic state. Despite slow improvement, many patients do not fully recover from a neurologic crisis, and residual neurologic morbidity can be significant. Although newborn screening using tandem mass spectrometry is expected to enable presymptomatic diagnosis of GA-I, this patient was not detected by newborn screening with tandem mass spectrometry. Therefore, a high suspicion of GA-I must be maintained in the evaluation of childhood dystonia, even when newborn screening results are reportedly normal.

Consanguinity↗

Unique electroencephalographic change of acute encephalopathy in glutaric aciduria type 1.

We report the peculiar serial electroencephalographic (EEG) findings in a 7-year-old boy with glutaric aciduria type 1 during an episode of acute encephalopathy. The patient developed Reye-like syndrome triggered by cellulitis. Cranial magnetic resonance imaging demonstrated diffuse softening of cerebral hemisphere. The EEG on the day following onset of acute encephalopathy showed suppression burst pattern including continuous 14-15 Hz rhythmic waves at first. Then, periodic synchronous discharge appeared and lasted for about 40 minutes. Periodic synchronous discharge finally disappeared and nearly total electrocerebral silence continued. There have been no reports indicating such a change of EEG in a short period. The serial EEG changes probably reflect the process of electrical death of neurons in cerebral hemispheres.

Acute Disease↗

Glutaric aciduria type II: autopsy study of a case with electron-transferring flavoprotein dehydrogenase deficiency.

An autopsy study of glutaric aciduria type II in a 62-day-old Japanese boy is presented. The diagnosis was made by analysis of organic acids in the urine. Immunoblot analysis of liver homogenate confirmed the diagnosis, revealing absence of electron-transferring flavoprotein dehydrogenase. The major findings were fatty changes of variable degree in many organs and tissues, the most severe being found in cardiac myocytes, hepatocytes, renal tubular epithelium, and skeletal muscle fibers. Other pertinent findings included multicystic and dysplastic kidney, pulmonary alveolar proteinosis, and spongiosis and gliosis of the spinal cord. The thymus was markedly depleted, and lymphocytes in the lymph nodes were mainly B cells. Although some of these changes may have been secondary to the sepsis and immunosuppression complicating 2 months of intensive care, the abnormal organic acid metabolism with severe acidosis may have been a significant contributing factor.

Acidosis↗

Bilateral arachnoid cysts of the sylvian region in female siblings with glutaric aciduria type I. Report of two cases.

Two sisters, aged 6 and 2 1/2 years, presented with macrocephaly and delayed motor development and were found on computerized tomography to have bilateral arachnoid cysts of the sylvian region. Cystoperitoneal shunting of the larger cysts resulted in considerable neurological improvement in both children. Subsequent screening of the patients' urine for organic acids showed that the two sisters were suffering from glutaric aciduria type I (GA-I). To the best of the authors' knowledge, this is the first report to provide clear radiological and surgical evidence of the association between GA-I and bilateral arachnoid cysts of the sylvian region. The role of the shunting procedure used in these cases is discussed.

Arachnoid Cysts↗

[A case of riboflavin-responsive multiple acyl-CoA dehydrogenase deficiency (glutaric aciduria type II)].

We reported a male infant with multiple acyl CoA dehydrogenase deficiency, probably due to electron transfer flavoprotein dehydrogenase deficiency. He was noted to have severe muscle weakness, a high serum creatine kinase (CK) level up to 6920 IU/L, lipid storage myopathy and fatty liver at 6 months of age. A GC/MS analysis of urinary organic acids showed excess excretion of dicarboxylic acids, including glutaric, 2-hydroxyglutaric, adipic, suberic, sebacic, malonic, ethylmalonic and methylsuccinic acids. On a urinary acylglycine analysis, hexanoylglycine and suberylglycine were increased, but not isovalerylglycine, in amount. No ketosis was noted. The muscle pathology showed increased oil-red O positive lipid droplets of various sizes indicative of lipid storage myopathy. There was diffuse decrease in the activity of cytochrome c oxidase. No ragged-red fibers were noted. His clinical symptoms improved remarkably after the administration of riboflavin (100 mg/day) and L-carnitine (1000 mg/day). He was then diagnosed as having probable riboflavin-responsive multiple acyl-CoA dehydrogenase deficiency. The glutaryl CoA dehydrogenase activity in lymphocytes was normal, as were the alpha- and beta-subunits of electron transfer flavoprotein. These findings led us to suspect electron transfer flavoprotein dehydrogenation deficiency. Although he had several episodes of short-term deterioration in clinical and laboratory findings, he developed normally with normal intelligent till 10 years of age.

Acyl-CoA Dehydrogenases↗

Acrodermatitis acidemica secondary to malnutrition in glutaric aciduria type I.

We encountered a patient with glutaric aciduria type I (GA-I) associated with skin lesions resembling acrodermatitis enteropathica (AE). This child was being fed with a low-protein diet when the skin disorder developed. A deficiency in plasma levels of essential amino acids, particularly isoleucine, and zinc was confirmed. Supplementation of a high-caloric, protein-rich diet together with zinc, selenium and vitamins led to a prompt improvement of the skin lesions. We assume that in our patient the skin lesions were the result of malnutrition, rather than being primarily associated with the underlying metabolic disease. To our knowledge, no other report is so far available concerning GA-I complicated by skin eruptions.

Acrodermatitis↗

Possible antineoplastic agents, part 15: synthesis, biological activity and quantitative structure activity relationship of substituted-2-(4'-methoxybenzenesulphonamido) glutaric acid analogs against Ehrlich ascites carcinoma.

Some substituted-2-(4'-methoxybenzenesulphonamido) glutaric acid analogs (5a-m, 7a-d) have been synthesized and tested for their possible antineoplastic activity against Ehrlich ascites carcinoma (EAC) in Swiss albino mice using tumour (ascitic fluid) weight as activity parameter. Some of these compounds possess encouraging antitumour activity. A QSAR study, performed by the classical Hansch method, explains the significance of hydrophobic binding and electronic influence in the mechanism of antineoplastic action in this group of compounds.

Algorithms↗

The acute toxicity, primary irritancy and skin sensitizing potential of glutaric anhydride.

Glutaric anhydride (GA), an industrial chemical, was found of moderate acute peroral lethal toxicity with LD50 values (95% confidence limits) in the rat of 1.41 (0.80-2.49) g/kg (males) and 0.54 (0.36-0.79) g/kg (females), with death being due in part to gastrointestinal irritancy. Dilution with water given by gavage after peroral dosing had no effect on lethal toxicity. Acute percutaneous LD50 values (rabbit) by 24-h occlusion were 6.25 (5.34-7.33) g/kg in males and 5.66 (3.21-9.95) g/kg in females; local skin effects included erythema, edema, necrosis and ulceration. A 6-h exposure to a statically generated saturated vapor atmosphere (rat) produced no signs of toxicity or irritancy. A 4-h, but not 1-h or 3-min occluded contact with 0.5 g of moistened GA (rabbit) produced erythema, edema and necrosis. Contamination of the eye (rabbit) with 10 mg GA produced conjunctivitis (hyperemia, chemosis and discharge) which persisted 7 to 14 d, mild iritis of 2 to 14 d duration, and mild to severe corneal injury which healed within 14 d. A maximization study in guinea pigs by the method of Magnusson and Kligman showed no potential for skin sensitization with GA. The major acute hazards of GA were by swallowing, eye contact and sustained skin contact.

Administration, Cutaneous↗

Type I glutaric aciduria: phenotypes and genotypes in 5 Taiwanese children.

We describe the clinical characteristics of 5 Taiwanese children with glutaric aciduria type I treated in a single medical center. Macrocephaly was present in 5 of these patients, psychomotor retardation in 4, and neurological regression in 2. Diagnosis was made prenatally in 1 patient due to an affected sibling. Low lysine/tryptophan formula, carnitine, and vitamin B2 were given to all patients. All patients disliked and could not adhere to the special formula and medications. Four older patients had neurological deficits prior to the start of the regimen. Among them, 1 died of sepsis and malnutrition. Only the prenatally diagnosed child did well at age 22 months. Mutational analysis, performed by polymerase chain reaction and sequencing, revealed an IVS10-2A>C defect in all 5 patients, and 2 siblings were homozygous. In addition, 2 novel mutations were detected. We conclude that GA I might not be as rare in Taiwan as previously thought. IVS10-2A>C is a common mutation in the Taiwanese population, whose genotypes are quite different from those of Caucasians.

Amino Acid Metabolism, Inborn Errors↗

Penetration of glutaric dialdehyde into human dentine as measured by changes in dentine microhardness and dentine dimensions.

Microhardness indentation lengths were measured on human dentine sections unfixed and fixed with glutaric dialdehyde (GDA) at pH 7. Fixed dentine was found to be softer than unfixed dentine. Indentation length increased by approximately 10% after fixation in a buffered 5% GDA solution at pH 7. Using this effect the variation of indentation length in the direction of the penetrating GDA as a function of fixation time was measured. Describing the penetration in the mineralized matrix as diffusion in a plane sheet, a diffusion coefficient of 0.5.10(-12); m2/s was calculated. Dimensional changes of the dentine due to fixation were also measured. Dentine was found to expand in both the direction parallel (approximately 0.4%) and perpendicular (approximately 2%) to the tubules.

Buffers↗

Molecular characterization of variant alpha-subunit of electron transfer flavoprotein in three patients with glutaric acidemia type II--and identification of glycine substitution for valine-157 in the sequence of the precursor, producing an unstable mature protein in a patient.

In our previous study of eight glutaric acidemia type II (GAII) fibroblast lines by using [35S]methionine labeling and immunoprecipitation, three of them had a defect in the synthesis of the alpha-subunit of electron transfer flavoprotein (alpha-ETF) (Ikeda et al. 1986). In one of them (YH1313) the labeling of the mature alpha-ETF was barely detectable, while that of the precursor (p) was stronger. In another (YH605) no synthesis of immunoreactive p alpha-ETF was detectable. In the third cell line (YH1391) the rate of variant p alpha-ETF synthesis was comparable to normal, but its electrophoretic mobility was slightly faster than normal. In the present study, the northern blot analysis revealed that all three mutant cell lines contained p alpha-ETF mRNA and that their size and amount were comparable to normal. In immunoblot analysis, both alpha- and beta-ETF bands were barely detectable in YH1313 and YH605 but were detectable in YH1391 in amounts comparable to normal. Sequencing of YH1313 p alpha-ETF cDNA via PCR identified a transversion of T-470 to G. We then devised a simple PCR method for the 119-bp section (T-443/G-561) for detecting this mutation. In the upstream primer, A-466 was artificially replaced with C, to introduce a BstNI site into the amplified copies in the presence of G-470 from the variant sequence. The genomic DNA analysis using this method demonstrated that YH1313 was homozygous for T----G-470 transversion. It was not detected either in two other alpha-ETF-deficient GAII or in seven control cell lines. The alpha-ETF cDNA sequence in YH605 was identical to normal.

Acidosis↗

Synthesis of a new anti-anaemic iron lysozyme glutarate complex and pharmacological studies in animals.

Iron lysozyme glutarate (ABC 1020) is a new soluble complex with an anti-anaemic activity superior to that of ferritin, ferrous sulphate and iron succinyl protein. Iron serum concentrations after treatment with ABC 1020 are higher than after ferritin and iron succinyl protein and lower than after ferrous sulphate treatment. Anaemic adult rats and rats born from dams with anaemia induced by an iron-deficient diet and by repeated bleeding showed considerable, dose-related improvement when treated with ABC 1020, which gave markedly better results than ferritin, iron succinyl protein and ferrous sulphate. Treatment with all four compounds improved the hematological and blood chemistry parameters considered, and reversed cardio- and splenomegaly. Preliminary data show that ABC 1020 is well tolerated, does not induce gastric lesions and has a high bioavailability.

Anemia, Hypochromic↗

[Modification of hemoglobin by glutaric aldehyde and electrochemical properties of the conjugates].

Electrochemical properties of macromolecules of modified haemoglobin obtained by polycondensation with glutaric aldehyde have been investigated by means of potentiometric titration, PAG-electrophoresis, ion-exchange chromatography, and (for evaluation of isoelectric point) distribution between two aqueous polymeric phases. Introduction of additional functional groups into the macromolecule is possible by using various agents blocking polycondensation, which makes it possible to change the resulting charge and the isoelectric point.

Aldehydes↗

Glutaric acidemia type II. Comparison of pathologic features in two infants.

Glutaric acidemia type II (GA II) is a metabolic disorder caused by deficiency of electron transport flavoprotein or its oxyreductase. It is characterized by acidosis, hypoglycemia, hyperammonemia, organic aciduria, and "sweat-sock" odor. Neonatal GA II differs from most inborn metabolic errors in that there are prominent congenital malformations. We recently observed two infants at autopsy with GA II whose malformations included: subcortical renal glomerular cysts, renal medullary dysplasia, cerebral pachygyria, pulmonary hypoplasia, and facial dysmorphism. In addition, there was lipid accumulation in liver, heart, and renal tubular epithelium, tissues that use fatty acids as a primary source of energy. Review of previous reports of 12 patients showed that these lesions are typical of neonatal GA II. The pattern of lesions, in particular the striking localization of renal dysplasia to the medulla, suggests that the malformations may be the consequence of an accumulation of toxic metabolites that is not corrected by placental transfer.

Brain↗

Abnormal myocardial lipid composition in an infant with type II glutaric aciduria.

We have analyzed the myocardial lipids of an infant with glutaric aciduria type II (GAII) who died from sudden cardiac failure and of five infants who died suddenly from indeterminate causes (sudden infant death syndrome, SIDS). Histology of the SIDS hearts was normal, but there was marked fatty deposition in the GAII heart. Fatty acid composition of myocardial lipids was determined by thin-layer chromatography-gas-liquid chromatography. Total lipid was elevated 20-fold in the GAII heart. Of total fatty acids, 75% was derived from phospholipids in SIDS heart and 89% from neutral lipids in GAII heart. Increased levels of free oleic acid and a 6-fold elevation in the (n-6)/(n-3) fatty acid ratio in phospholipid were noted in GAII heart compared to SIDS hearts.

Fatty Acids↗

[Structure of the Micrococcus lysodeikticus respiratory chain using low concentrations of Triton X-100 and glutaric aldehyde].

Using low (0.0025 -- 0.025%) concentrations of Triton X-100, the correlation between the decrease of NADN- and malate oxidase activities and NADH- and malate dehydrogenase release in large fragments of Micrococcus lysodeikticus membranes was established. This was accompanied by membrane suspension clearance and a decrease of microviscosity of the membrane lipid component. Using NADH-dehydrogenase, it was shown that the attachment of NADH-dehydrogenase to the membrane treated with glutaric aldehyde occurs in two steps, this being indicative of different environment of this enzyme in the membrane. The data obtained are discussed in terms of laterally heterogenous structure of the bacterial membrane with respect to the electron transport enzymes, in particular in favour of an existence of individual sites of the membrane containing dehydrogenases rather than other respiratory chain components.

Alcohol Oxidoreductases↗

Effectiveness of N-N-bis-P-chlorophenyl-3p-tolyl glutaric acid diamide (SRC-3605) as a hypocholesterolaemic compound in hypercholesterolaemic female weanling and adult rats.

SRC-3605, N-N-bis-P-chlorophenyl 3-p-tolyl glutaric acid diamide, was studied for its hypocholesterolaemic effect on serum and liver cholesterol in hypercholesterolaemic weanling and adult female rats. Weanlings were administered doses of SRC-3605 ranging from 100 to 300 mg/kg body weight for 4 or 8 consecutive days. The greatest hypocholesterolaemic effect was observed with doses of 150, 200 and 250 mg, although a progressive decreases in serum cholesterol was noted with increasing doses. Hepatic cholesterol decreases supported the serum data, but were inconsistent. Hypercholesterolaemic adult animals received 50, 100, 150 or 200 mg/kg body weight of either SRC-3605 or clofibrinic acid for 4 days. A decrease in serum cholesterol levels was observed only with the 200 mg SRC-3605. No clear-cut influence of the either compounds was found on hepatic cholesterol. The results indicated that SRC-3605 possesses the property to reduce both serum and liver cholesterol in hypocholesterolaemic weanling female rats.

Animals↗

[Complex I and IV deficits in the mitochondrial respiratory chain in two siblings with type I glutaric aciduria].

We report two brothers with a glutaric aciduria type I (GA-I) identified by Glutaryl-coenzyme A dehydrogenase deficiency in skin fibroblasts. The onset of neurologic abnormalities was at 6 and 9 months of age as an acute Reye-like presentation in one. Because of the hyperlactacidemia, hyperlactatorrachia, mitochondrial abnormalities in muscular cells and a deficiency in complex I and IV of the respiratory chain in isolated mitochondria from muscle, a presumptive diagnosis of Leigh syndrome was made. We analyze the difference between both disorders. GA-I should be suspected in patients with acute dystonia and psychomotor regression, lactic acidosis and hypodensity of the basal ganglia.

Brain↗