Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027819 (neuroblastoma)
27,800 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Uptake of biocytin and biotin was investigated in cultured transformed variants of neuronal (NB2a neuroblastoma) and glial (C6 astrocytoma) CNS cells. NB2a cells took up both compounds but biocytin was transported more efficiently than biotin in the nanomolar concentration range. In NB2a cells a single transport mechanism was found for biocytin with different kinetic parameters in the presence of high extracellular Na+ (Km 0.4 microM, Vmax 20 pmol/min/mg), K+ (Km 1.7 microM, Vmax 32 pmol/min/mg), or choline+ (Km 0.1 microM, Vmax 5 pmol/min/mg). Two transport systems (Km1 17 microM, Vmax1 53 pmol/min/mg; Km2 314 microM, Vmax2 360 pmol/min/mg) were identified for biotin with only system 1 being Na+-dependent. Biocytin uptake was competitively inhibited by excess biotin but not vice versa. Inhibition studies with structural analogs indicated different specificities for biotin and biocytin uptake. Biocytin uptake into C6 cells was hardly detectable whereas biotin was taken up by diffusion (kD 0.6 microl/min/mg) and a single saturable mechanism (Km 70 microM, Vmax 119 pmol/min/mg) at high extracellular Na+. High extracellular K+ enhanced biotin diffusion into C6 cells. Inhibition studies with structural analogs revealed a less specific biotin uptake mechanism in C6 than in NB2a cells. Biocytin normalized deficient biotin-dependent propionyl-CoA carboxylase activity within 4 h in biotin-deficient NB2a cells whereas in C6 cells reactivation was <20% thereby confirming that biocytin is only poorly transported into C6 cells. Specific biocytin uptake into NB2a cells is to our knowledge the first demonstration of a carrier-mediated transport mechanism for this compound. Neuronal biocytin uptake might contribute to the pathogenesis of biotinidase deficiency where biocytin is present in elevated levels.
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PMID:Biocytin and biotin uptake into NB2a neuroblastoma and C6 astrocytoma cells. 1179 59

The Quebec Network of Genetic Medicine (QNGM), implemented in 1971, has been an integrated program of community genetics serving the population (approximately 7.5 million) of Quebec province in Canada. QNGM reported to the Minister of Social Affairs and operated under an umbrella of universal health insurance in the province. The Network's programs have been run by members of the four university medical schools of the province under the direction of a central committee. A global annual budget was awarded to QNGM from its inception. Among its many programs, QNGM supported: (1) two newborn screening programs (using blood and urine samples) for early diagnosis, treatment and research in phenylketonuria, hereditary tyrosinemia, congenital hypothyroidism, and in a large number of other hereditary metabolic diseases; (2) follow-up of confirmatory diagnostic tests at regional centers, followed by supervision of ambulatory treatment modalities; (3) carrier screening and reproductive counseling for Tay-Sachs and beta-thalassemia diseases; (4) a spectrum of feasibility (research) studies (e.g., screening for biotinidase deficiency, neuroblastoma, hemoglobinopathies, and cystic fibrosis) to inform policy decisions. QNGM performed economic analyses of its major programs and followed prevailing ethical guidelines. Its global budget and integrated structure terminated in 1994, although some of its programs continue independently.
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PMID:Community genetics and dignity in diversity in the Quebec Network of Genetic Medicine. 1674 43

Newborn screening programs use whole blood dried on filter paper as the standard specimen. Metabolites are reasonably stable and can easily be sent to screening laboratories by regular mail. The recommended sample collection procedure is to spot native blood without anticoagulants onto the filter paper, because anticoagulants can interfere with the different laboratory methods. However, visual examination of the blood spots cannot always detect contamination. In this study, whole blood was drawn by venous puncture from a healthy volunteer, spiked with the corresponding metabolites and EDTA, and spotted onto filter paper. TSH and 17alpha-hydroxyprogesterone were determined by time resolved fluoroimmunoassays with the AutoDelfia system. Total galactose, biotinidase activity, and galactose-1-phosphate uridyltransferase activity were measured photometrically or fluorometrically. Succinyl acetone was estimated indirectly through the inhibition of porphobilinogen synthase activity (PBGS assay). EDTA, amino acids, and acylcarnitines were converted to the corresponding butyl esters, after extraction with methanol, and analysed by LC-MS/MS. EDTA contamination gives falsely elevated 17-OHP values and falsely reduced TSH and PBGS values. The inclusion of an EDTA determination in routine screening revealed that at least 0.06% of newborn screening samples were contaminated with EDTA. In conclusion, non-conformity during the pre-analytical phase is a source of false positive and false negative screening results. Determination of EDTA from NBS blood spots can reliably identify these samples and prevent screening errors.
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PMID:Determination of EDTA in dried blood samples by tandem mass spectrometry avoids serious errors in newborn screening. 1865 Nov 77

Newborns identified with profound biotinidase deficiency (BTD) by the Minnesota Newborn Screening Program (MN NBS) between 1 October 2004 and 30 May 2008 were all from new immigrant groups. Thirty-three positive cases of BTD were identified out of 264 727 infants screened by the Wolf colorimetric system during the period of this study by MN NBS. Five cases of profound BTD (0.1 to <0.6 nmol/min per ml) and 26 cases of partial BTD (0.9 to 2.3 nmol/min per ml) were later confirmed through measurement of serum biotinidase activity. The incidence of combined partial and profound BTD of 1/8540 and that of profound BTD of 1/52 945 in Minnesota are unusually high in comparison with the reported worldwide numbers of 1/61 067 for combined BTD and 1/137 401 for profound BTD. Four out of the 5 cases of profound BTD ascertained in the MN NBS cohort were of Somali ethnic background, and the remaining case was of Asian (Pakistani/Indian) ethnic background. All four Somali patients have the P497S mutation, with one of the four being homozygous for the mutation. The three compound heterozygotes all have a novel mutation (P142T) and two of them have another change (Y428Y) that has never been described. Within the last two decades, Minnesota has become home to an estimated 40 000 Somali immigrants and their children (<1% of the total Minnesota population). New population demographics prompt careful analysis of case cohorts to identify specific groups at risk for rare inborn errors of metabolism.
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PMID:High incidence of profound biotinidase deficiency detected in newborn screening blood spots in the Somalian population in Minnesota. 1975 47

In Greece, the National Newborn Screening Program was initiated in 1974 and is performed by the Institute of Child Health (ICH). However, there is a complete absence of conditions that have high rates of mortality and a relatively high prevalence listed in the Catalogue of Disorders screened by the ICH. Our laboratory has expanded the existing NBS program to include newborn screening for inborn errors of metabolism, screening for cystic fibrosis (the most common congenital disorder in the Greek population), congenital adrenal hyperplasia, and for biotinidase deficiency. From July 2007 to December 2009, 45,000 dried blood spots (DBS) were collected from infants born in Athens, Greece, and were analyzed. We present a report of our 30-month experience in the newborn screening area. The samples were tested for amino acidopathies, fatty acid oxidation disorders (FAOD), and organic acid metabolic disorders by applying flow injection analysis-electrospray ionization-tandem mass spectrometry (FIA-ESI-MS/MS); for cystic fibrosis by immunoreactive trypsinogen (IRT) measurement (time-resolved fluoroimmunoassay); for congenital adrenal hyperplasia by fluoroimmunoassay to measure the 17 hydroxy-progesterone level; and for biotinidase deficiency using a colorimetric method and a semiquantitative fluoroimmunoassay to determine biotinidase activity. Sample analysis resulted in establishing cutoff values for the respective disease markers for the first time in the Greek population. Four infants were identified with cystic fibrosis, two with congenital adrenal hyperplasia, two with phenylketonuria (PKU), one with medium-chain acyl CoA dehydrogenase deficiency (MCADD), and one with biotinidase deficiency. To the best of our knowledge, this is the first article reporting the status of expanded newborn screening in Greece.
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PMID:Expanded newborn screening in Greece: 30 months of experience. 2072 92

The approach to the child with ataxia requires a detailed history and careful general and neurological examination as well as selected blood work and brain imaging and increasingly available genetic testing for inherited ataxias that usually have an episodic or progressive presentation. The differential of acute and recurring ataxia covered in this chapter includes intoxication (e.g., antiepileptics, lead, alcohol), postinfectious cerebellitis, hemorrhage, ischemic stroke, tumor (posterior fossa or cerebellum), brainstem encephalitis, occult neuroblastoma, Miller Fisher syndrome, conversion reaction, multiple sclerosis, epileptic pseudoataxia, vasculitis (e.g., Kawasaki), metabolic etiologies (e.g., maple syrup urine disease, pyruvate dehydrogenase deficiency, ornithine transcarbamylase deficiency, biotinidase deficiency, Hartnup disease, and argininosuccinic aciduria), migraine, migraine equivalents (benign paroxysmal positional vertigo), autosomal dominant episodic ataxias (with seven types currently identified), and hypothyroidism. Cooperation with therapists and providers from other specialties including ophthalmology and genetics and metabolism is essential to caring for these children and their families.
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PMID:Ataxia. 2362 31