PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Neural Tube Defects”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 181 records · Page 10Linked to original sources

Is there a familial link between Down's syndrome and neural tube defects? Population and familial survey.

OBJECTIVE: To verify whether Down's syndrome and neural tube defects arise more often in the same family than expected by chance. DESIGN: Population and familial survey. SETTING: Network of maternity hospitals in the Latin American collaborative study of congenital malformations (ECLAMC) in Argentina, Bolivia, Brazil, Chile, Colombia, Ecuador, Paraguay, Peru, Uruguay, and Venezuela between 1982 and 2000. PROBANDS: 2421 cases of neural tube defects, 952 of hydrocephalus, and 3095 of Down's syndrome registered from a total of 1 583 838 live births and stillbirths. MAIN OUTCOME MEASURES: Observed number of cases of Down's syndrome among siblings of probands with a neural tube defect or hydrocephalus and number expected on the basis of maternal age; observed number of cases of neural tube defects or hydrocephalus among siblings of probands with Down's syndrome and number expected according to the prevalence in the same population. RESULTS: Five cases of Down's syndrome occurred among 5404 pregnancies previous to a case of neural tube defect or hydrocephalus, compared with 5.13 expected after adjustment by maternal age. Twelve cases of neural tube defect or hydrocephalus occurred among 8066 pregnancies previous to a case of Down's syndrome, compared with 17.18 expected on the basis of the birth prevalence for neural tube defects plus hydrocephalus in the same population. CONCLUSION: No association occurred between families at risk of neural tube defects and those at risk of Down's syndrome.

Down Syndrome↗

[Peri-conception use of folic acid in the prevention of neural tube defect: current concepts].

The incidence of neural tube defects (NTDs) is about 1.3 cases per 1000 live births. The higher incidence of NTDs occurs among certain ethnic groups, and geographic areas. The fetal morbimortality is high and the treatment for those babies who live is expensive with pour quality of live. It is unclear what biochemical mechanism involving folate explain the relationship of this vitamin to the pathogenesis of NTDs. However elevated concentrations of homocysteine or decreased methionine concentrations could be interfere with closure of the neural tube. The pharmacologic periconceptional intake of 0.4-4.0 mg/day of folic acid reduces the risk of occurrent NTDs by approximately 40-75%. A relatively high dietary intake of folate may also reduce the risk.

Dose-Response Relationship, Drug↗

The early diagnosis of neural tube defects.

The sonographic diagnosis of fetal neural tube defects (NTDs) has been enhanced by the recognition of associated brain and skull anomalies. Previous reports have found these anomalies to be accurate in predicting spina bifida after 16 weeks' gestation, and an inverse correlation was suggested between the presence of these sonographic markers and gestational age. Therefore, we assumed that early second-trimester sonography would be at least as accurate as that performed after 16 weeks' gestation. To examine this hypothesis, we looked for the presence of these cranial sonographic markers suggestive of open NTDs in 8011 low-risk cases, using transvaginal sonography (TVS), between the 12th and 17th week of gestation (menstrual age). Fetal NTDs were identified in ten cases (1.25/1000). The NTDs were cervico-cranial in three, lumbo-sacral in six, and thoracal in one of the ten cases. None of the seven cases examined was dyskaryotic. Cerebellar dysmorphism, 'banana' sign, cerebellar absence, and hypoplasia were detected in all the low NTDs, usually before the detection of the spinal lesion. All the sonographically diagnosed malformations were confirmed by post-abortal examination except in one case, where the patient decided to continue the pregnancy and refused follow-up. We therefore conclude that transvaginal sonographic examination of the fetal skull before the 17th week of gestation is an accurate method for the detection of low NTDs.

Abortion, Therapeutic↗

Interaction of folate and homocysteine pathway genotypes evaluated in susceptibility to neural tube defects (NTD) in a German population.

Neural tube defects (NTD) are likely to result from an interaction of several genes and environmental factors. Because periconceptional folate intake reduces the NTD risk in the fetus, and because mothers of children with NTD showed elevated plasma homocysteine levels, gene polymorphisms of the folate and homocysteine pathway, such as 5,10-methylenetetrahydrofolate reductase (MTHFR) 677C-->T, MTHFR 1298A-->C and cystathionine beta-synthase (CBS) 844ins68, have been implicated in the etiology of NTD. Several studies have demonstrated that these polymorphisms may indeed be associated with NTD in some populations. In order to evaluate the role of these polymorphisms and their interaction in NTD, we genotyped 417 individuals for case-control studies and 129 families for transmission disequilibrium tests. We are the first to present detailed data on MTHFR haploid genotypes in combination with CBS 844ins68. The MTHFR risk genotype 677CT/1298AC, known to be associated with decreased enzyme activity and increased homocysteine, was found significantly more often in patients than in controls (P = 0.02). A CBS insertion allele in addition to MTHFR 677CT/ 1298AC heterozygosity or MTHFR 677TT/1298AA homozygosity did not result in an increased risk for NTD. This is in agreement with the recently reported homocysteine-lowering effect of the CBS 844ins68 allele in carriers of MTHFR variants.

Alleles↗

Effect of maternal exposure to homocystine on sodium valproate-induced neural tube defects in the mouse embryos.

BACKGROUND: Neural tube defects (NTD) are mainly of multifactorial origin. Maternal treatment with valproic acid (VPA) during pregnancy induces NTD in susceptible fetuses. Elevated levels of homocysteine are observed in pregnancies with NTD. The mechanism by which homocysteine might cause NTD is unknown. AIM OF THE STUDY: The aim of this study was to determine if homocystine would augment VPA-induced exencephaly in an experimental model. METHODS: Groups of mice were injected (IP) on gestational day 8 (GD) with a single dose of 75 mg/kg of L: -Homocystine (HC) or a proportionate volume of saline, followed by a single dose of 600 mg/kg of VPA or an equal volume of saline. In a second experiment, mice were treated with a daily dose of 75 mg/kg of HC or an equal volume of saline (IP) from GD 5 and continued through GD 10. These animals had a single exposure to 600 mg/kg of VPA or saline (IP) on GD 8. All animals were killed by cervical dislocation on GD 18. Plasma homocysteine, folate and vitamin B12 were determined on GD 8 and GD 10 from single and multiple dose groups of mice, respectively, from additional experiments. RESULTS: The VPA and HC+VPA induced significantly higher rates of embryonic resorption and intrauterine growth retardation (IUGR) than HC or saline alone. HC + VPA groups had significantly more numerous fetuses with severe IUGR than HC alone or VPA alone groups. Both single and multiple doses of HC augmented VPA-induced reduction in fetal body weight. Successive doses of HC did not augment the rate of IUGR more significantly than a single dose of HC. Incidence of exencephaly was significantly enhanced in the HC + VPA groups compared to that in the HC or VPA alone groups. HC alone was not teratogenic. Plasma homocysteine levels increased several fold both in HC and HC + VPA groups and the increase was not particularly more marked in multiple dose groups than in the single dose groups. VPA did not elevate homocysteine concentration. Both FA and vitamin B12 concentrations were reduced by VPA, HC and HC + VPA, but HC and VPA when combined did not produce an additive effect on vitamin levels. CONCLUSION: These data indicate that HC and VPA interact in neurulation stage embryos, affect fundamental processes of closure of the neural tube and lead to enhanced incidence of NTD.

Abnormalities, Drug-Induced↗

Prenatal screening for neural tube defects in South Africa. An assessment.

Neural tube defects (NTDs) occur in at least 1 in every 1000 babies born in South Africa. The incidence is uncertain but appears to be highest in Whites and Coloureds and lowest in Blacks. Spina bifida is a particularly serious problem because many affected babies survive and require extensive, costly treatment and care. A high maternal serum alpha-fetoprotein (AFP) level may indicate that the fetus has an NTD. Enzyme-linked immunosorbent assay is well suited to mass screening of maternal sera. The Natal population is used as a model here, and it is calculated that of some 122000 pregnancies annually 38725 might be screened. Of 98 expected fetuses with an NTD, 32 (16 with anencephaly and 16 with spina bifida) should be detected. If the 16 fetuses with spina bifida were not detected and those pregnancies terminated, the cost of caring for the affected children through their first decade is conservatively estimated at R145660, an average of R9 100 per patient; 92% of this would be incurred in the first 3 years. The cost of screening, at R2,27 per subject, is calculated to be R87 825, equivalent to R2 744 per fetus with an NTD detected or R5 489 per fetus with spina bifida detected. Financially the introduction of mass screening of maternal serum AFP is justified, but before this can be done adequate ultrasound facilities must be provided and a permanent health visitor must be available to trace women at risk and arrange their further investigations. A public education campaign should also be introduced. Some ethical and legal implications of mass screening for NTDs are discussed briefly.

Child↗

Genetic susceptibility to neural tube defect pregnancy varies with offspring phenotype.

Neural tube defects (NTDs) have a well-established genetic basis, although no single genetic factor has been identified as a major risk factor in NTD susceptibility. A large number of association studies have been conducted to investigate the possibility that NTD susceptibility is linked to polymorphic variation in genes involved in early embryonic development or in the absorption or metabolism of folate, a nutrient that has been clearly associated with a reduction in the risk of NTD pregnancy. A study of three candidate gene polymorphisms at loci implicated in folate absorption and metabolism has been conducted on a population of 211 mothers of a heterogeneous mix of NTD phenotypes: 59% spina bifida aperta (SBA), 20.3% spina bifida occulta (SBO), 17% anencephaly, and 3.7% other NTD. Allele and genotype frequencies were stratified according to offspring NTD phenotype, and variation in the level of NTD risk was associated with different phenotypes. All the three variants (MTHFR 677C > T, GCPII 1561C > T, and RFC-1 80G > A) were shown to significantly influence the risk of anencephalic pregnancy. In addition, the MTHFR 677C > T variant conferred a modest protective effect in SBO mothers and the total NTD mother group, but not in SBA mothers. The RFC-1 80G > A variant elevated the risk of SBO and anencephalic pregnancy. The findings of this study suggest that NTD phenotypic heterogeneity may help explain the mixed findings of previous association studies and that different polymorphisms may hold differing degrees of significance for the various NTD phenotypes.

Base Sequence↗

Investigation of folate pathway gene polymorphisms and the incidence of neural tube defects in a Texas hispanic population.

Neural tube defects (NTDs) are multifactorial in their etiology, having both genetic and environmental factors contributing to their development. Recent evidence demonstrates that periconceptional supplementation of the maternal diet with a multivitamin containing folic acid significantly reduces the occurrence and recurrence risk for having a pregnancy complicated by NTDs. Unfortunately, the mechanism underlying the beneficial effects of folic acid remains unknown. NTD surveillance data from the Texas-Mexico border show that the high NTD rate (28/10,000 live births) noted during the 1990-1991 Cameron county NTD cluster was superimposed on a background Cameron county NTD rate (16/10,000 live births) which is considerably higher than that generally noted in the United States (8-10/10,000 live births). These data suggest that genetic factors as well as transient environmental factors may contribute to the etiology of the NTDs. Furthermore, clinical and experimental evidence imply that allelic forms of genes involved with folate metabolism and/or transport may explain some of the observed variation in the NTD rates found across different populations. Two folate pathway genes were selected for evaluation in this study. The loci investigated included two known alleles of the 5, 10-methylenetetrahydrofolate reductase (MTHFR) gene, as well as the promoter region of the folate receptor-alpha (FR-alpha) gene. Odds ratios (ORs) for the C677T polymorphism in the MTHFR gene were 1.8 (CI 0.47-6.8) for heterozygosity and 1.8 (CI 0.35-9.4) for homozygosity for the mutant 677T allele, relative to wildtype homozygotes. The odds ratio for the heterozygosity for the A1298C polymorphism in the same gene was 1.1 (CI 0.09-14). No individuals homozygous for the 1298C allele were observed. The OR for heterozygosity of FR-alpha gene polymorphisms detected at nucleotide 762 and at nucleotides 610/631 was 1.4 and 0.7, respectively. Neither of the FR-alpha polymorphisms was observed in the homozygous condition. No statistically significant associations were observed for any of the polymorphisms examined, as the 95% confidence intervals for all of the ORs included one. However, the frequency of the MTHFR 677T allele in the largely Hispanic control group from Texas was significantly different from other populations (P < 0.005), and among the highest reported for any control populations examined.

Adult↗

Neural tube defects in embryos of diabetic mice: role of the Pax-3 gene and apoptosis.

Neural tube defects are among the most common of the malformations associated with diabetic embryopathy. To study the molecular mechanisms by which neural tube defects occur during diabetic pregnancy, we have developed a new experimental system using pregnant diabetic mice. In this system, the rate of neural tube defects is about three times higher in embryos of diabetic mice than in embryos of nondiabetic mice. Most of the defects affected presumptive midbrain and hindbrain structures and included open defects (i.e., exencephaly) and gross maldevelopment. By semiquantitative reverse transcription-polymerase chain reaction and in situ hybridization, we found that expression of Pax-3, a gene required for neural tube closure in the area of the midbrain and hindbrain, is significantly reduced in the embryos of diabetic mice. The same regions of the neural tube where Pax-3 had been underexpressed were found subsequently to contain high concentrations of cells undergoing apoptosis. Reduced expression of Pax-3 appears to be responsible for this apoptosis because apoptotic cells were also found at sites of neural tube defects in embryos carrying null mutation of the Pax-3 gene. Finally, mouse strains that carry null mutations in Pax-3 develop neural tube defects that resemble the malformations that occur in embryos of diabetic mice. These results suggest that Pax-3 is an important developmental control gene, expression of which is disturbed in embryos of diabetic mice, and that as a consequence, apoptosis of the neural tube occurs. This pathway may be responsible for many of the neural tube defects resulting from diabetic pregnancy.

Animals↗

Clinical teratology counseling and consultation case report: two distinct anterior neural tube defects in a human fetus: evidence for an intermittent pattern of neural tube closure.

Human neural tube closure is believed to be a continuous process that begins in the cervical region and progresses both rostrally and caudally. In contrast, an intermittent pattern of anterior neural tube closure has been demonstrated in rodents. Based on individual case photographs, a similar pattern of anterior neural tube closure, with multiple sites of closure, may also exist in humans. We report a human fetus with two distinct anterior neural tube defects separated by a cutaneous and mesenchymal bridge. The two defects occurred within distinct closure sites predicted by the murine model, one falling within closure II and the second within closure IV. Although one defect had adherent amniotic bands, evidence is presented to support a primary dysraphy rather than disruption from an amniotic band. This case provides further evidence supporting an intermittent pattern of anterior neural tube closure in human embryogenesis.

Abortion, Therapeutic↗

Correlation of elevated leptin levels in amniotic fluid and maternal serum in neural tube defects.

OBJECTIVE: To measure maternal serum and amniotic fluid leptin concentrations in pregnant women diagnosed antenatally as having fetuses with a neural tube defect in the second trimester. METHODS: Twenty pregnant women who had fetuses with a neural tube defect detected on ultrasonography (neural tube defect group) in the second trimester and 20 women who had abnormal triple screens indicating an increased risk for Down syndrome but had healthy fetuses (control group) were enrolled in the study. Amniotic fluid was obtained by amniocentesis, and maternal serum samples were taken simultaneously. RESULTS: The mean leptin levels in amniotic fluid (P <.001) and maternal serum (P <.05) of patients who had fetuses with a neural tube defect were found to be significantly higher than control group levels. The mean leptin levels in maternal serum of both groups were also higher than leptin levels in amniotic fluid (P <.05 for the neural tube defect group and P <.001 for the control group). Although there were significant correlations between maternal weight, weight gain, body mass index at the time of amniocentesis, and maternal serum leptin concentrations in both groups, a significant correlation between leptin concentrations in maternal serum and amniotic fluid was found only in the neural tube defect group (P <.05). CONCLUSIONS: We found significantly higher leptin levels in both amniotic fluid and maternal serum of patients who had fetuses with a neural tube defect. We suggest that the main source of leptin in amniotic fluid of pregnant women who had fetuses with a neural tube defect is the leakage into amniotic fluid from cerebrospinal fluid. The increase of maternal serum leptin concentrations has been attributed to the transportation of amniotic fluid leptin to the maternal circulation.

Adult↗

Lead levels in domestic water supplies and neural tube defects in Glasgow.

OBJECTIVE: To study the association between "pregnancy" prevalence (affected births and terminations) of neural tube defects in postcode districts of Glasgow and lead concentrations in domestic water. SETTING: Postcode districts of Glasgow supplied by water from the Loch Katrine reservoir. DESIGN: An ecological study. Lead concentrations from 1911 randomly selected domestic water samples were obtained from the Glasgow 93 lead study. Neural tube defects (affected births and terminations) were identified from the Glasgow register of congenital anomalies for the period 1983-95 for each postcode district in the study population. Correlations were sought between lead concentrations and pregnancy prevalence of neural tube defects/1000 live births in postcode districts. RESULTS: No correlation was found between domestic water lead concentrations > 10 microg/litre and pregnancy prevalence of neural tube defects within postcode districts. Areas of Glasgow previously with high domestic water lead concentrations did not have a higher prevalence of neural tube defects. Houses with the lowest domestic water lead concentrations were in Carstairs deprivation categories 1 (least deprived), 6, and 7 (most deprived). The highest pregnancy prevalence of neural tube defects was found in the most deprived areas. CONCLUSION: Deprivation is a risk factor for neural tube defects and might have been a confounding factor in previous studies looking at the association between such defects and domestic water lead concentrations. This study does not support the hypothesis that levels of lead > 10 microg/litre in domestic water supplies are associated with a higher pregnancy prevalence of neural tube defects. The reasons behind the decline in pregnancy prevalence of neural tube defects seen in the past two decades remain unexplained.

Female↗

Specific isoforms of protein kinase C are essential for prevention of folate-resistant neural tube defects by inositol.

A proportion of neural tube defects (NTDs) can be prevented by maternal folic acid supplementation, although some cases are unresponsive. The curly tail mutant mouse provides a model of folate-resistant NTDs, in which defects can be prevented by inositol therapy in early pregnancy. Hence, inositol represents a possible novel adjunct therapy to prevent human NTDs. The present study investigated the molecular mechanism by which inositol prevents mouse NTDs. Activation of protein kinase C (PKC) is known to be essential, and we examined neurulation-stage embryos for PKC expression and applied PKC inhibitors to curly tail embryos developing in culture. Although all known PKC isoforms were detected in the closing neural tube, use of chemical PKC inhibitors identified a particular requirement for 'conventional' PKC isoforms. Peptide inhibitors offer selective inhibition of individual PKCs, and we demonstrated isoform-specific inhibition of PKC in embryonic cell cultures. Application of peptide inhibitors to neurulation-stage embryos revealed an absolute dependence on the activity of PKCbetaI and gamma for prevention of NTDs by inositol, and partial dependence on PKCzeta, whereas other PKCs (alpha, betaII delta, and epsilon) were dispensable. To investigate the cellular action of inositol and PKCs in NTD prevention, we examined cell proliferation in curly tail embryos. Defective proliferation of hindgut cells is a key component of the pathogenic sequence leading to NTDs in curly tail. Hindgut cell proliferation was stimulated specifically by inositol, an effect that required activation of PKCbetaI. Our findings reveal an essential role of specific PKC isoforms in mediating the prevention of mouse NTDs by inositol.

Animals↗

Neural tube defects in chromosomally normal and abnormal human embryos.

Neural tube defects (NTDs) were recognized in eight out of 91 intact embryos from spontaneous abortions and in one case of an induced abortion following prenatal diagnosis of a chromosomal disorder. Five of the nine cases showed chromosomal abnormalities. Trisomy 18 and triploidy were associated with spina bifida in three cases, trisomy 7 with parieto-occipital encephalocele and monosomy X with spina bifida and iniencephaly in one case. A sixth anencephalic embryo in which chromosomal analysis was not performed showed a malformation pattern highly suggestive for trisomy 18. Discussion focuses on the high rate and the type of chromosomal abnormalities among spontaneously aborted NTD embryos, on the contrasting phenotype of 45,X conceptions and on the morphogenesis of the different neural tube defects in early development. In view of future early endovaginal ultrasound diagnosis, the changing morphological pattern is exemplified, and ranges from apparently hyperplastic to degenerative alterations of the exposed neural tissue.

Chorionic Villi Sampling↗

Valproic acid-induced neural tube defects: reduction by folinic acid in the mouse.

Neural tube defects were induced dose-dependently by single injections of the anticonvulsant drug valproic acid (VPA) as sodium salt in mice on gestational day 8. Folinic acid (5-CHO-THF) coadministration by i.p. injection or by a constant rate infusion via osmotic minipumps, implanted s.c., significantly reduced the exencephaly rates using a randomized double-blind experimental procedure. 5-CHO-THF supplementation cut the exencephaly rates into half even at high maternal plasma levels of VPA (p less than 0.005, chi 2-test); resorption rates were not affected. The VPA plasma kinetics were not changed by any of the application regimens of 5-CHO-THF. The investigation of the folate metabolite pattern (determined by HPLC) showed that 5-CHO-THF and 5-methyl-tetrahydrofolic acid (5-CH3-THF) were the main metabolites in untreated mice. After supplementation with 5-CHO-THF, only the concentrations of this folate vitamer were increased in the plasma from 0.3 microgram/ml (normal) to 0.6 or 1.9 micrograms/ml (after injection of 3 x 1 mg/kg or 3 X 4 mg/kg) and to 4.2 micrograms/ml (after infusion via osmotic minipumps). Our results indicate that VPA-induced exencephaly in mice combined with the investigation of the plasma levels of VPA and the different folate metabolites could be an appropriate animal model to study protective effects of folates on the occurrence of neural tube defects.

Animals↗

Epidemiological studies of neural tube defects in Newfoundland.

A 9-year survey of neural tube defects in Newfoundland showed (1) evidence for secular variation, with a peak in 1980, but no general downward trend as seen in some other populations; (2) significant geographic variation which did not correlate with hardness or nitrate content of the lake water; (3) a tendency for the proportion of females among anencephalic births to increase with increasing frequency of anencephaly among geographic regions. This supports previous evidence for a female-specific contribution to the causes of increased liability to neural tube defect.

Abortion, Spontaneous↗

Periconceptional vitamin supplementation and neural tube defects; evidence from a case-control study in Western Australia and a review of recent publications.

STUDY OBJECTIVE: The aim was to assess the association of neural tube defects with periconceptional vitamin supplementation. DESIGN: This was a matched, population based case-control study. SETTING: Western Australia, 1982-1984. PARTICIPANTS: Mothers of 77 cases (93% of those eligible) with isolated neural tube defects, mothers of 77 matched control infants with defects other than neural tube defects (control group I), and mothers of 154 liveborn, matched, control infants with no birth defects (control group II) participated in the study. MEASUREMENTS AND MAIN RESULTS: Information was collected by interview and self administered questionnaire. Crude and adjusted odds ratios (and their 95% confidence intervals) showed a small but non-significant protective effect of folate supplementation in comparisons with both control groups. The adjusted ratios for the three months before pregnancy were 0.69 (0.06, 8.53) with control group I, and 0.11 (0.01, 1.33) with control group II. In the first six weeks of pregnancy, the adjusted odds ratios were 0.70 (0.32, 1.52) with control group I and 0.74 (0.29, 1.88) with control group II. The odds ratios for vitamin supplementation of any kind were all very close to or greater than one, and all confidence intervals embraced unity. CONCLUSIONS: These data do not provide evidence of an association between periconceptional vitamin supplementation and neural tube defects, although a protective effect of folate supplementation cannot be excluded with confidence, due to the low power of the study. Of three other observational studies of vitamins and neural tube defects, two have shown an association. While further studies of this kind may be of value, evidence must now be sought from randomised controlled trials.

Case-Control Studies↗

Congenital urinary abnormalities and neural tube defects.

The records of 178 children with a neural tube defect were reviewed to determine the pattern of associated congenital urinary malformation. Ten (6%) of the children had a significant congenital urinary malformation. Although unilateral renal agenesis was the most common single congenital urinary abnormality, as a group, abnormalities in fusion or migration were equally common in this study and more common in several previously reported studies. Lower congenital urinary tract abnormalities were also identified but were less common. No correlation was found between the level of the neural tube defect and the specific congenital urinary abnormality.

Child↗