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Biomedical subjects

M G Blitzer

Publications and source records attributed to M G Blitzer.

At least 19 recordsLinked to original sources

Second-trimester maternal serum analyte levels associated with fetal trisomy 13.

The aim of this study was to determine whether pregnancies affected by fetal trisomy 13 are associated with second-trimester maternal serum analyte levels different from those typical of the unaffected population. Pregnancies with trisomy 13 were identified through cytogenetics laboratories. Those which had second-trimester maternal serum screening analyte measurements were further evaluated. Maternal serum analyte levels for each case and five matched controls were statistically analysed by matched ranked-sum analysis. 28 cases of fetal trisomy 13 were identified. The median AFP, uE3 and hCG levels were 1.35 MoM, 0.71 MoM and 0.90 MoM, respectively. Only uE3 levels were statistically different (p < 0.01) from those for the unaffected population. These data suggest that second-trimester maternal serum AFP, uE3 and hCG levels are not useful in detecting fetal trisomy 13 and protocols already existing for Down syndrome or trisomy 18 screening will not detect the majority of cases of this aneuploidy.

Adolescent↗

Retrospective biochemical screening of fatty acid oxidation disorders in postmortem livers of 418 cases of sudden death in the first year of life.

OBJECTIVE: Fatty acid oxidation (FAO) disorders are frequently reported as the cause of sudden and unexpected death, but their postmortem recognition remains difficult. We have devised a biochemical protocol in which informative findings in liver tissue are microvesicular steatosis, elevated concentrations of C8-C16 fatty acids, glucose depletion, and low carnitine concentration. STUDY DESIGN: We analyzed 27 cases representing five FAO disorders and compared the results with those obtained in a retrospective blinded analysis of 418 cases of sudden infant death (313 SIDS, 45 infections, and 34 accidents and abuse). RESULTS: All cases of accidents and abuse correctly tested negative. Among the others, 25 (6%) showed at least two abnormal findings. Of these, 14 closely matched the biochemical profiles seen in specific FAO disorders. These included 2 cases with medium-chain acyl-CoA dehydrogenase deficiency, 4 cases consistent with glutaric acidemia type 2, 4 cases with either very long-chain acylcoenzyme A dehydrogenase deficiency or long-chain 3-hydroxy-acyl-coenzyme A dehydrogenase deficiency, and 4 cases predicted to be affected with carnitine uptake defect. CONCLUSION: The results of this study support the view that approximately 5% of all cases of sudden infant death are likely caused by an FAO disorder.

3-Hydroxyacyl CoA Dehydrogenases↗

Molecular characterization of a unique patient with epimerase-deficiency galactosaemia.

Inherited deficiencies of UDP-galactose 4-epimerase (GALE) have been associated with two distinct phenotypes. The vast majority of North American patients are clinically asymptomatic, are identified through newborn screening programmes for classical galactosaemia, and are of African-American descent. At least two symptomatic patients have been reported, one Pakistani and the other Asian Muslim, both with severe complications in the neonatal period and subsequent mental retardation. Through newborn screening, we have identified a GALE-deficient patient who is of mixed Pakistani/caucasian ancestry. He was clinically well in the neonatal period on a lactose-containing diet, and biochemical studies, including urine reducing sugars and galactitol, were consistent with a diagnosis of peripheral GALE deficiency. Although early developmental milestones were met normally, he now shows significant developmental delays in both motor and language skills. Mutational analysis revealed this patient to be a compound heterozygote at the GALE locus, with mutations N34S and L183P identified in the patient and confirmed in the parents. This report represents the first characterization of specific mutations in a GALE-deficient patient in conjunction with biochemical and clinical phenotype, and facilitates further studies of the GALE enzyme and its role in the different clinical forms of epimerase-deficiency galactosaemia.

Child, Preschool↗

Profound biotinidase deficiency in two asymptomatic adults.

Biotinidase deficiency is an autosomal-recessive disorder of biotin recycling. Children with profound biotinidase deficiency usually have neurological and cutaneous symptoms in early childhood, but they may not develop symptoms until adolescence. We now report on a man and a woman with profound biotinidase deficiency who are asymptomatic and who were diagnosed only because their biotinidase-deficient children were identified by newborn screening. These adults have never exhibited symptoms of the disorder and are homozygous for two different mutations resulting in different aberrant enzymes. There is no evidence of an increased dietary intake of biotin to explain why they have remained asymptomatic. Although these adults may still be at risk for developing symptoms, they could represent a small group of individuals with profound biotinidase deficiency who will never develop clinical problems. Their lack of symptoms suggests that there are probably epigenetic factors that protect some enzyme-deficient individuals from developing symptoms. These individuals broaden the spectrum of expression of biotinidase deficiency.

Adult↗

46,XY,i(21q) identified by maternal serum screening.

Maternal serum screening for the detection of fetal Down syndrome has become widespread. Prenatal detection of fetal Down syndrome has important implications not only for management of the current pregnancy, but also for recurrence risk counseling for future pregnancies. We report a case of fetal Down syndrome due to an isochromosome 21q detected after maternal serum screening using alpha-fetoprotein and human chorionic gonadotropin indicated an increased risk for fetal Down syndrome in a 19-year-old pregnant woman. This confirms that maternal serum screening can detect fetal Down syndrome due to rare chromosome rearrangements and illustrates the importance of cytogenetic studies for provision of appropriate genetic counseling.

Adult↗

Risk-based prenatal screening for trisomy 18 using alpha-fetoprotein, unconjugated oestriol and human chorionic gonadotropin.

Nine centres collaborated to examine the feasibility of a screening method for trisomy 18 that was based on assigning individual risk, using a combination of maternal age and measurements of alpha-fetoprotein (AFP), unconjugated oestriol (uE3), and human chorionic gonadotropin (hCG). Second-trimester measurements of these analytes were obtained from 94 trisomy 18 pregnancies. In the 89 pregnancies without an associated open defect, the median levels for AFP, uE3, and hCG were 0.65, 0.43 and 0.36 multiples of the unaffected population median, respectively. The strongest individual predictor of risk for trisomy 18 was uE3, followed by hCG, AFP, and maternal age, in that order. Using a method of individual risk estimation that is based on the three markers and maternal age, 60 per cent of pregnancies associated with trisomy 18 would be detected at a risk cut-off level of 1:100, with a false-positive rate of about 0.2 per cent. One in nine pregnancies identified as being at increased risk for trisomy 18 would be expected to have an affected pregnancy. This risk-based screening method is more efficient than an existing method that is based on fixed analyte cut-off levels. Even though the birth prevalence of trisomy 18 is low, prenatal screening can be justified when performed in conjunction with Down syndrome screening and when a high proportion of women offered amniocentesis have an affected fetus.

Adult↗

Biochemical diagnosis of fatty acid oxidation disorders by metabolite analysis of postmortem liver.

At least 12 fatty acid oxidation disorders are known to be responsible for cases of sudden and unexpected death in early childhood. A specific diagnosis of these disorders is essential for genetic counseling and for the screening of siblings potentially at risk for life-threatening episodes of fasting intolerance. Postmortem blood and urine samples often are not available for further biochemical studies, and currently only medium-chain acyl-CoA dehydrogenase (MCAD) deficiency can be diagnosed by the molecular analysis of tissues. We developed a postmortem screening method for fatty acid oxidation disorders by the simultaneous measurement of C8-C20 fatty acids, glucose, lactate, and other metabolites from the methanol wash of a pellet obtained by ultracentrifugation of liver homogenate. Cis-4-decenoic acid was present in five confirmed cases with MCAD deficiency and in one case with glutaric aciduria type II and was absent in 97 of 100 randomly chosen sudden death cases, at least 81 of which were diagnosed as sudden infant death syndrome (SIDS). C14-C18 monounsaturated fatty acids were significantly elevated in the one examined case affected with long-chain acyl-CoA dehydrogenase (LCAD) deficiency. The metabolite profiles in two cases with carnitine uptake deficiency were less informative, but they shared with all the other disease controls a very low glucose concentration, a finding compatible with premortem hypoglycemia. This method is proposed as a simple and practical means of biochemical screening to follow up the postmortem finding of liver fat infiltration.

Acyl-CoA Dehydrogenase↗

Intrafamilial variability in Hurler syndrome and Sanfilippo syndrome type A: implications for evaluation of new therapies.

Intrafamilial variability has not been reported previously in Hurler syndrome or Sanfilippo syndrome type A. We describe two families in which sibs with comparable deficiencies of alpha-iduronidase (Hurler) or sulfamidase (Sanfilippo type A) activities in vitro nonetheless have divergence in clinical severity and disease progression. These cases underscore the need for caution in counseling as well as the limitations of using sibs as controls in evaluating the outcome of treatment.

Adolescent↗

Congenital nephrosis: detection of index cases through maternal serum alpha-fetoprotein screening.

Congenital nephrosis is an autosomal recessive disorder with an incidence of 1 in 8000 in Finland, but it is quite rare in non-Finnish populations. In families known to be at risk, prenatal detection is possible by means of maternal serum and/or amniotic fluid alpha-fetoprotein levels. We report the antenatal diagnosis of four cases of congenital nephrosis, three of which were index cases, through maternal serum alpha-fetoprotein screening. The diagnosis was confirmed at birth in two infants. Two patients elected to terminate their pregnancies, and the diagnoses were confirmed pathologically (obliteration of foot processes on electron microscopy of fetal glomeruli) in both. In cases of elevated maternal serum alpha-fetoprotein, with unexplained and marked elevations of amniotic fluid alpha-fetoprotein and normal acetylcholinesterase levels, the diagnosis of congenital nephrosis must be considered regardless of ethnic origin.

Adult↗

Multiple-marker screening in pregnancies with hydropic and nonhydropic Turner syndrome.

OBJECTIVE: The combination of maternal serum alpha-fetoprotein, unconjugated estriol, and human chorionic gonadotropin levels and maternal age has been used to increase the sensitivity of screening for fetal Down syndrome and trisomy 18 in early-second-trimester pregnancies. We hypothesized that a unique pattern of these analytes also may be characteristic of fetal Turner syndrome, with or without hydrops. STUDY DESIGN: We studied preamniocentesis, second-trimester maternal serum specimens from seven hydropic and eight nonhydropic cases of fetal Turner syndrome. Clinical and pathologic records were reviewed. Statistical analysis of the data was performed by the rank sum test. RESULTS: In both hydropic and nonhydropic cases, alpha-fetoprotein levels were slightly reduced, and unconjugated estriol levels were markedly reduced. In hydropic pregnancies human chorionic gonadotropin levels were elevated, and nonhydropic pregnancies had low human chorionic gonadotropin levels (p = 0.001). CONCLUSIONS: The results suggest that the morphologic defect of hydrops, rather than the aneuploidy itself, is responsible for the elevation in human chorionic gonadotropin. In conjunction with the low unconjugated estriol levels, the elevation in human chorionic gonadotropin levels will result in the prenatal identification of hydropic fetal Turner syndrome pregnancies as being at increased risk for fetal Down syndrome.

Biomarkers↗

The presence of two different infantile Tay-Sachs disease mutations in a Cajun population.

A study was undertaken to characterize the mutation(s) responsible for Tay-Sachs disease (TSD) in a Cajun population in southwest Louisiana and to identify the origins of these mutations. Eleven of 12 infantile TSD alleles examined in six families had the beta-hexosaminidase A (Hex A) alpha-subunit exon 11 insertion mutation that is present in approximately 70% of Ashkenazi Jewish TSD heterozygotes. The mutation in the remaining allele was a single-base transition in the donor splice site of the alpha-subunit intron 9. To determine the origins of these two mutations in the Cajun population, the TSD carrier status was enzymatically determined for 90 members of four of the six families, and extensive pedigrees were constructed for all carriers. A single ancestral couple from France was found to be common to most of the carriers of the exon 11 insertion. Pedigree data suggest that this mutation has been in the Cajun population since its founding over 2 centuries ago and that it may be widely distributed within the population. In contrast, the intron 9 mutation apparently was introduced within the last century and probably is limited to a few Louisiana families.

Base Sequence↗

Tay-Sachs disease as a model for screening inborn errors.

In the absence of treatments for most inborn errors of metabolism, the goal of both geneticists and health care providers has been the prevention of disease through identification of at-risk couples. When the enzyme deficiency responsible for a disorder is known, heterozygotes can frequently be identified by enzyme assay. The presence or absence of specific mutations in the genes coding for these enzymes may be determined directly if the gene of interest has been identified and characterized. Because the inherited metabolic disorders are rare, these approaches are useful only for individuals with a family history of a specific disease or for populations in which the gene frequency for a specific disease is increased. Tay-Sachs disease is a fatal, autosomal recessive, metabolic disease caused by deficient activity of the lysosomal enzyme Hex A. Although it is rare in the general population, in which the heterozygote frequency is approximately 1/167, it is elevated in a few populations, including the Ashkenazi Jewish community, in which the heterozygote frequency is 1/30. The ability to detect TSD heterozygotes reliably and to diagnose TSD prenatally using a simple and rapid enzyme assay has made prevention of this disorder possible through education and carrier screening. The identification of specific TSD mutations at the DNA level enables laboratories to provide more accurate screening and diagnosis in some families. The success of TSD screening in the Ashkenazi Jewish population has made it the prototype for screening among the inborn errors of metabolism. The TSD example becomes increasingly relevant as heterozygote detection becomes possible for other genetic disorders that are increased in well-defined populations. Cystic fibrosis is such a disease in the caucasian population.

Ethics, Medical↗

Study of the relationship between elevated maternal serum alpha-fetoprotein and adverse pregnancy outcome.

In a study of 1,703 pregnancies, adverse clinical outcomes associated with unexplained elevated maternal serum alpha-fetoprotein (MSAFP) included intrauterine growth retardation (IUGR), prematurity, IUGR and prematurity, prematurity without IUGR, spontaneous abortion, and stillbirth. These findings have significant implications for careful obstetrical management of patients with elevated MSAFP.

Adolescent↗

Partial biotinidase deficiency: clinical and biochemical features.

Neonatal screening for profound biotinidase deficiency (less than 10% of the mean normal activity level) has identified a group of children with partial biotinidase deficiency (10% to 30% of mean normal activity). Because partial biotinidase deficiency may result in clinical consequences that may be prevented by treatment with biotin, we evaluated such individuals and their family members (1) to determine whether partial biotinidase deficiency is associated with symptoms and (2) to determine the inheritance pattern. We quantified serum biotinidase activity levels and obtained medical histories of probands, their parents and siblings, and additional family members. All children with partial deficiency were healthy at the time of diagnosis. One child, who was not initially treated with biotin, later developed hypotonia, hair loss, and skin rash, which resolved with biotin therapy. Four adults and three children with partial biotinidase deficiency were identified among family members of infants identified by neonatal screening. All these individuals were healthy, although one sibling had elevated urinary lactate excretion. A fifth adult with partial deficiency, found among clinically normal adult volunteers, later showed minor symptoms that resolved after biotin therapy. Like children with profound biotinidase deficiency, children with partial biotinidase deficiency are symptoms free at birth. However, the subsequent occurrence of symptoms of profound biotinidase deficiency in some persons with partial deficiency suggests that biotin therapy for this condition may be warranted.

Adult↗

Evidence for an intracerebral action of phenylalanine in stimulation of prolactin secretion: interaction of large neutral amino acids.

Phenylalanine stimulates PRL secretion when given orally or iv to normal individuals. To differentiate between hypothalamic and pituitary sites of action, we examined the effects of concurrent infusion of valine on the PRL response to iv phenylalanine in eight normal men. Since large neutral amino acids share the same high affinity blood-brain barrier transport system, entry of phenylalanine into the brain will be diminished by the simultaneous presence of high serum concentrations of valine; the pituitary, lying outside the blood-brain barrier, is not subject to these competitive effects. Valine significantly blunted the PRL response to phenylalanine, supporting an effect of phenylalanine within the blood-brain barrier to stimulate PRL release.

Adult↗