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Neural tube defects in the parietal region of human embryos: failure to close or closure-reopening?

This is a follow-up study to earlier investigations on neural tube defects (NTD) in the Kyoto collection of human embryos. It includes an extensive examination of abnormal embryos which have been photographed and serially sectioned following routine histological preparation. Two new types of NTD are described in the parietal region (the roof of the third ventricle) which had previously been overlooked. These anomalies were found most commonly in embryos at the developmental period. Carnegie stage [CS] 16-23 (embryonic days 38-52). Hypotheses are advanced regarding the genesis of NTD and whether encephaloceles and NTD are part of a spectrum of malformation. This study also reinforces evidence that the occurrence of NTD is significantly higher in the embryonic period than at birth. Animal studies, using the guinea-pig are discussed with regard to the investigation of hypotheses put forward to explain the genesis of NTD.

Cerebral Ventricles↗

Maternal serum screening for Down's syndrome, open neural tube defects and trisomy 18.

Maternal serum screening identifies women at an increased risk of a pregnancy with Down's syndrome or trisomy 18 or an open neural tube defect. The triple test, consisting of maternal serum alpha-fetoprotein, unconjugated estriol and human chorionic gonadotropin was carried out by a chemiluminescence immunoassay method in our laboratory. The study consisted of 373 pregnant women. The gestational range for the study group was 14-22 weeks. The mean maternal age for the study group was 28.53 +/- 5.46 years (range 17.4 to 43.5 years); 9.1% of the women were considered at high risk for Down's syndrome based on the test results. In our study the detection rate for Down's syndrome by prenatal karyotyping was 66.6%. Maternal serum screening allows reduction of the number of women requiring amniocentesis without a significant decrease in the detection rate.

Adolescent↗

Accumulation of basement membrane-associated hyaluronate is reduced in the posterior neuropore region of mutant (curly tail) mouse embryos developing spinal neural tube defects.

We investigated the accumulation of newly synthesized glycoconjugates during spinal neurulation in mutant curly tail mouse embryos, a proportion of which develop lower spinal neural-tube defects (NTD). Embryos undergoing closure of the posterior neuropore (27- to 29-somite stage) were labeled in vitro with [3H]glucosamine, and [3H]glycoconjugates were analyzed by ion-exchange chromatography. Mutant embryos undergoing normal spinal neurulation exhibited a pattern of glycoconjugate accumulation closely similar to that observed for nonmutant embryos (Copp and Bernfield, 1988, Dev. Biol. 130, 573-582). Mutant embryos developing spinal NTD accumulated reduced amounts of [3H]hyaluronate specifically in the posterior neuropore region. Other embryonic regions and other glycoconjugates appeared unaffected by the developmental abnormality. Autoradiographic analysis of labeled curly tail embryos confirmed that [3H]hyaluronate accumulates in reduced amounts in the posterior neuropore region and indicated that this reduction is mainly localized to the site of developing basement membranes, beneath the neuroepithelium and around the notochord. Accumulation of [3H]hyaluronate in the interstitial mesenchymal matrix of the posterior neuropore region is not consistently affected in embryos developing spinal NTD. These results provide support for a role for basement-membrane hyaluronate in lower spinal neurulation.

Animals↗

Neural tube defects among Mexican Americans living on the US-Mexico border: effects of folic acid and dietary folate.

Populations of Mexican descent have high occurrences of neural tube defects (NTDs). A recent study suggested that folic acid supplements may not protect these populations from NTDs. In a case-control study, the authors investigated the role of folic acid and dietary folate intake in NTD risk among Mexican Americans living along the Texas-Mexico border. From January 1995 to February 1999, 148 Mexican-American women with NTD-affected pregnancies and 158 women with normal live births were interviewed in person about use of vitamin supplements and dietary intakes during a 6-month periconceptional period (from 3 months before conception to 3 months after conception). Daily preconceptional consumption of vitamin supplements containing folic acid was 2.5% in control women and 2.0% in case women (odds ratio = 0.77; 95% confidence interval (CI): 0.19, 3.22). With adjustment for maternal age, education, obesity, and previous stillbirth or miscarriage, the risk estimate was essentially null (odds ratio = 1.12; 95% CI: 0.22, 5.78). Combined folic acid intake from diet and supplements showed only a modest risk reduction for intakes of > or = 1.0 mg per day (adjusted odds ratio = 0.73; 95% CI: 0.31, 1.72). The fact that the primary folic acid exposure was in the form of dietary polyglutamates rather than the more easily absorbed supplemental monoglutamates may explain an apparent decreased effect in this population.

Adult↗

[Epidemiology of prenatal diagnosis and selective pregnancy termination because of fetal neural tube defects in The Netherlands in comparison to other European countries].

OBJECTIVE: To describe the epidemiological impact of prenatal diagnosis and selective abortion on the frequency of neural tube defects (NTD) in the period 1980-1992 in the Northern Netherlands in comparison with data from other European regions. DESIGN: Descriptive. SETTING: 17 'European registration of congenital anomalies' (EUROCAT) registrations, localized in 10 European countries. METHOD: Data were collected actively and retrospectively from multiple sources fed by voluntary registration of congenital anomalies in live births, stillbirths and pregnancies terminated because of congenital anomalies. RESULTS: In Europe the total birth prevalence of NTD in the period 1980-1992 ranged from 5.3 per 10,000 in Switzerland to 29.0 per 10,000 in Glasgow, a difference of a factor 5.5. In live births the difference was ninefold: ranging from 2.0 per 10,000 in Paris to 18.8 per 10,000 in Dublin. The Netherlands had a conspicuously high prevalence among live births, higher than in other regions in continental Europe. For spina bifida the live birth prevalence both in other continental regions and in Glasgow was also lower than in the Netherlands. In Glasgow serum alpha-foetoprotein screening apparently led to frequent early prenatal diagnosis of NTD and to frequent termination of pregnancy. In Paris the use of ultrasound screening appears to lead to frequent later prenatal diagnosis, as well as frequent termination of pregnancy. CONCLUSION: In the Netherlands the impact of prenatal diagnosis and selective abortion is limited, so that primary prevention (periconceptional use of folic acid) is more important than in some other European countries.

Abortion, Therapeutic↗

Reduced folate carrier gene is a risk factor for neural tube defects in a Chinese population.

BACKGROUND: There is a considerable body of data demonstrating that periconceptional supplementation of folic acid can prevent a significant proportion of neural tube defects (NTDs). At present, the mechanism by which folic acid exerts its beneficial effect remains unknown. Folate transporter genes, including the reduced folate carrier gene (RFC1), have been proposed as NTD risk factors. METHODS: The study population included 104 nuclear families with NTDs and 100 nonmalformed control families. We investigated the possible association between a common RFC1 polymorphism (A80G) and NTD risk among offspring, as well as potential gene-environment interactions between the infant RFC1 genotype and maternal periconceptional use of folic acid through a population-based case-control study. RESULTS: We observed that the infants of the GG genotype were associated with a 2.56-fold increased risk of NTDs when compared to the AA genotype (odds ratio [OR], 2.56; 95% confidence interval [CI], 1.04-6.36) in our study population. Among mothers who did not utilize folic acid supplements, the risk for having a child with an NTD was 3.30 (95% CI, 1.15-9.65) for offspring with the GG genotype, compared to the reference (AA) genotype. Children who had the GG genotype and whose mothers did not take folic acid had an elevated risk for NTDs (OR, 8.80; 95% CI, 2.83-28.69), compared to offspring with the AA and GA genotypes whose mothers utilized folic acid supplements. CONCLUSIONS: Our findings suggest that the RFC1 G allele is likely to be an important genetic factor in determining folate transport and subsequently may be a risk factor for NTDs in this Chinese population.

Case-Control Studies↗

Folic acid and the prevention of neural tube defects: A survey of awareness among Latina women of childbearing age residing in southeast Michigan.

Periconceptional intake of folic acid is known to reduce the risk for neural tube defects (NTDs). To inform southeast Michigan Latina women of childbearing age about the benefits of food and supplemental sources of the micronutrient in the prevention of NTDs, Spanish-English bilingual health educators carried out 20 education events in supermarkets and community organizations serving Latina women. One hundred and sixty Latina women ages 19 to 50 years indicated their current folic acid awareness and stated their future intentions regarding folic acid. Of 160 women surveyed, 114 (71%) had heard of folic acid, 84 (74%) knew that folic acid prevents birth defects, 63 (55%) knew the critical time to take folic acid, and 76 (67%) identified at least one source of folic acid. After participating in the education events, 136 women (85%) reported planning to eat more folate and/or folic acid-rich foods. Although general folic acid awareness is fairly high, health promotion efforts must be coordinated at community locations serving Latina women to share folic acid's specific protective effects in the prevention of NTDs, the critical timing of intake, and its food and supplement sources.

Adult↗

Maternal flu or fever, medication use, and neural tube defects: a population-based case-control study in Northern China.

BACKGROUND: Maternal exposure to flu or fever has been associated with increased risk for neural tube defects (NTDs); however, few studies have considered the effects of medications on the effects of flu or fever. We evaluated the effect of maternal flu or fever, medication use (antibiotics, antipyretics), and their joint effect on NTDs. METHODS: Data came from an ongoing population-based case-control study of infants with external malformations in northern China. The case group included 363 infants with NTDs identified between January 2003 and June 2005. Controls were 523 newborn infants without identified congenital anomalies matched by county, sex, maternal ethnic group, and the closest date of conception for infants with any major external malformation. Data were collected by a trained health worker through face-to-face interviews after delivery. RESULTS: NTD risks were significantly associated with maternal flu or fever (adjusted odds ratio [AOR] = 3.93, 95% CI: 2.48-6.23) and antipyretic use (AOR = 4.86, 95% CI: 1.33-17.78), but not with antibiotic use (AOR = 1.75, 95% CI: 0.91-3.38) after adjusting for potential confounders. NTD risk associated with maternal antipyretic use was markedly higher for anencephaly (AOR = 7.03, 95% CI: 1.70-29.04) than for spina bifida (AOR = 3.98, 95% CI: 0.95-16.74). Mothers with flu or fever who were also using antipyretics showed a markedly higher AOR for anencephaly (14.75 vs. 4.52), spina bifida (16.30 vs. 3.85), and all NTDs combined (13.91 vs. 4.04) than mothers with flu or fever who were not using antipyretics. Maternal antibiotics did not markedly change the effects of flu or fever on anencephaly (4.17 vs. 4.83), spina bifida (5.08 vs. 4.21), and all NTDs combined (5.05 vs. 4.29). CONCLUSIONS: Maternal flu or fever and antipyretic use during the periconceptional period increases the risk for NTDs. Maternal exposure to antipyretics together with flu or fever results in a markedly higher risk of NTDs than exposure to flu or fever alone.

Abnormalities, Drug-Induced↗

Prevention of neural tube defects by and toxicity of L-homocysteine in cultured postimplantation rat embryos.

Mild hyperhomocysteinemia is frequently observed in mothers who gave birth to a child with a neural tube defect (NTD). In a previous study we showed L-homocysteine was embryotoxic to gestational day 10 (GD10) rat embryos in culture, however, no NTDs were observed. We therefore investigated the effect of L-homocysteine on the development of neural plate stage (GD9.5) rat embryos. Other objectives of this study were investigation into whether the embryotoxicity of L-homocysteine could be attenuated by compounds related to its metabolism and clarification of the mechanism of L-homocysteine embryotoxicity. In GD9.5 rat embryos L-homocysteine was not toxic at 1- and 2-mM concentrations. Rather at these concentrations it promoted development of the rat embryos in serum that without supplementation caused NTDs in the embryos. L-Methionine had the same preventive effect at even lower concentrations, but folinic acid (1 mM) did not improve embryonic development. N5-Methyltetrahydrofolate (5-CH3-THF) (100 microM), L-serine (6 mM), and L-methionine (6 and 12 mM) attenuated the embryotoxicity of L-homocysteine (6 mM) in GD10 rat embryos. Vitamin B12 (10 microM) completely abolished the embryotoxicity of L-homocysteine, which was shown to be mediated by catalysis of the spontaneous oxidation of L-homocysteine to the less toxic L-homocystine. In GD11 rat embryos, both L- and D-homocysteine were readily taken up when added to the culture (3 mM) and increased embryonic S-adenosylhomocysteine (SAH) levels 14- and 3-fold, respectively. This difference was shown to be caused by the stereospecific preference of SAH hydrolase. We propose the basis for L-homocysteine embryotoxicity is an inhibition of transmethylation reactions by increased embryonic SAH levels.

Adenosylhomocysteinase↗

The thermolabile variant of methylenetetrahydrofolate reductase (MTHFR) is not a major risk factor for neural tube defect in American Caucasians. The NTD Collaborative Group.

Mutations in the gene for methylenetetrahydrofolate reductase (MTHFR) have been implicated as a risk factor in the formation of neural tube defects. We investigated this gene in a series of 65 sporadic American Caucasian patients with lumbosacral NTD and their unaffected parents, using both case-control design and assessment of linkage disequilibrium. We found no evidence to support mutations in MTHFR as a significant risk factor for NTD in this population.

Alleles↗