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Biomedical subjects

D Lindhout

Publications and source records attributed to D Lindhout.

At least 91 records · Page 5Linked to original sources

An Arg for Gly substitution at position 31 in the insulin receptor, linked to insulin resistance, inhibits receptor processing and transport.

In a patient with Leprechaunism, we have characterized a new mutation in the insulin receptor substituting Arg for Gly at position 31. The proband, the mother, and the maternal grandfather were heterozygous for the mutation. Fibroblasts of the proband show a strongly reduced number of high affinity insulin receptors on the cell surface, whereas fibroblasts of the healthy mother and grandfather show moderately reduced insulin receptor numbers. In the other family members neither the binding defect nor the Arg31 mutation was found. The Arg31-mutant receptor was overexpressed in Chinese hamster ovary cells. In these cells the mutant alpha beta-proreceptor was not proteolytically cleaved and no transport to the cell surface took place. The proreceptor was unable to bind insulin and to undergo autophosphorylation. In addition, the proreceptor was not recognized by monoclonal antibodies directed against conformation-dependent epitopes. These findings suggest that the Gly31 to Arg31 mutant is involved in the insulin receptor dysfunction seen in the Leprechaun patient. The mutation seems to alter the conformation of the receptor in such way that the transport of the proreceptor to the Golgi compartment, where proteolytical processing occurs, is inhibited.

Alleles↗

Prenatal diagnosis of spina bifida aperta after first-trimester valproate exposure.

In the context of a prospective study on the adverse effects of anti-epileptic drugs on fetal outcome, we evaluated our experience with prenatal diagnosis by ultrasonography and alpha-fetoprotein (AFP) determination in amniotic fluid. We compared these results with AFP values in maternal serum obtained prior to amniocentesis. From November 1985 to July 1990, amniocentesis at 16-18 weeks of gestation was performed in 267 pregnancies of 237 different women using anti-epileptic drugs. Among 92 pregnancies with maternal valproic acid use, five (including one concordantly affected monozygotic twin-pair) were terminated because of a spina bifida aperta, all prenatally diagnosed by AFP determination and acetylcholinesterase electrophoresis in amniotic fluid. The maternal serum AFP level was raised (> or = 2.5 multiples of the median (MOM) for singleton pregnancies and > or = 4.5 MOM for twin pregnancies) in only two of these five affected pregnancies. We emphasize that maternal serum AFP levels may be unreliable for prenatal screening for fetal neural tube defects in women taking valproate and recommend that amniocentesis and fetal ultrasound examination should be offered directly.

Acetylcholinesterase↗

The disposition of valproate and its metabolites in the late first trimester and early second trimester of pregnancy in maternal serum, urine, and amniotic fluid: effect of dose, co-medication, and the presence of spina bifida.

We have studied 52 pregnancies in epileptic women taking long-term valproate and have measured the concentrations of the parent compound and 13 of its metabolites by gas chromatography-mass spectrometry in amniotic fluid, maternal serum, and 24 h maternal urine samples. All metabolites of valproate present in the serum could also be detected in the amniotic fluid, although at much lower concentrations. Amniotic fluid concentrations of valproate and several of its metabolites ((E) delta 2-valproate, (2E,3'E) delta 2,3'-valproate, and 3-keto-valproate) correlated with total valproate concentrations as well as with unbound valproate concentrations in maternal serum. We suggest that the amniotic fluid acts as a deep compartment, with slow appearance and disappearance of valproate and its main metabolites. The data further suggest that during the first and early second trimesters of pregnancy the beta-oxidation of valproate decreases. In pregnancies associated with fetal neural tube defects (n = 5) significantly higher daily doses of valproate were used compared with normal pregnancies (n = 47). This resulted in higher concentrations of valproate in maternal serum. However, the metabolite patterns in maternal serum, 24 h urine samples, and amniotic fluid did not show any significant differences in pregnancies with neural tube defects.

Amniocentesis↗

Pregnancy and the risk of teratogenicity.

One in every 250 newborns is exposed to antiepileptic drugs (AEDs) in utero. Various studies have attributed a teratogenic effect to these AEDs, mainly consisting of major malformations, minor anomalies, intrauterine or postnatal growth failure, and psychomotor retardation. Prospective studies confirm the increased risk of major malformations. The absolute risk of 7-10% is about 3-5% higher than that in the general population. Barbiturates and phenytoin (PHT) are particularly associated with congenital heart malformations, facial clefts, and some other malformations. Valproate (VPA) and carbamazepine (CBZ) are associated predominantly with spina bifida aperta (1-2 and 0.5-1.0% risk, respectively) and hypospadias. Bilateral radial aplasia is a rare but specific effect of VPA. Several studies identified additional risk factors, i.e., high daily AED dosage, high maternal serum AED concentrations, low folate levels, or polytherapy [phenobarbital (PB) plus primidone (PRM) plus PHT or CBZ plus VPA plus PB with or without PHT]. The few prospective studies controlled for socioeconomic factors or that considered parental findings indicate that risk of specific cognitive defects rather than risk of overall mental retardation may be increased, that early growth retardation is followed by a catch-up growth to normal, and that ocular hypertelorism and nail hypoplasia are the only minor anomalies causally related to PHT exposure. However, no final conclusions can be made. Genetic predisposition to the teratogenic side effects of AEDs plays a role, codetermining the recurrence risk if the woman has previously given birth to a child with a major malformation. The molecular genetic basis of this predisposition is unclear.(ABSTRACT TRUNCATED AT 250 WORDS)

Abnormalities, Drug-Induced↗

Spectrum of neural-tube defects in 34 infants prenatally exposed to antiepileptic drugs.

We analyzed the spectrum of neural-tube defects associated with maternal exposure to antiepileptic drugs (AEDs) and the possible contribution of familial and genetic factors to epilepsy or neural-tube defects. No specific association with maternal family history of neural-tube defects or epilepsy was seen. The ratio of spina bifida to anencephaly (33:1) suggested a specific association with caudal defects. Hydrocephaly was documented in at least 21 cases. Other midline defects, all associated with valproate (VPA), were hypospadias (two), hypertelorism (two), partial agenesis of corpus callosum, agenesis of septum pellucidum with lissencephaly of medial sides of occipital lobes, Dandy-Walker anomaly, and ventricular septal defect. This study shows that most neural-tube defects following maternal VPA use are severe open defects. They are frequently complicated by hydrocephaly and other midline defects. Prenatal diagnosis is possible.

Anticonvulsants↗

Pharmacogenetics and drug interactions: role in antiepileptic-drug-induced teratogenesis.

Metabolism of antiepileptic drugs (AEDs) is a potentially major factor in AED-induced teratogenesis. When the parent compound is the teratogenic agent, pharmacogenetic variability in enzymatic metabolism and induction or inhibition of these enzymes by comedication are codeterminants of the teratogenic potential. When one of the parent compound's metabolites is the teratogenic agent, the balance between metabolic activation and detoxification is relevant to the teratogenic activity. Increased metabolic activation, decreased detoxification, or both will induce accumulation of the reactive metabolite. Genetic defects in detoxification pathways and the inhibition of these pathways by specific drug interactions probably have a greater impact on teratogenic risk than does high activity of metabolic activation. Insight into these factors involving AED metabolism might provide a rational basis for prevention by adjustment of medication, and in the future, for individual predictive testing for safest therapy.

Abnormalities, Drug-Induced↗

Antiepileptic drugs and teratogenesis in two consecutive cohorts: changes in prescription policy paralleled by changes in pattern of malformations.

We analyzed the influence of changes in the prescribing of antiepileptic drugs to pregnant women on frequency and pattern of malformations in their offspring by comparing two consecutive cohorts (1972 to 1979, cohort A; 1980 to 1985, cohort B). In cohort A, 15 (10%) of 151 exposed, live-born infants had one or more congenital anomalies, which consisted primarily of congenital heart defects, facial clefts, and syndromes of dysmorphia with developmental retardation, in association with polytherapy (carbamazepine plus phenobarbitone plus valproate, with or without phenytoin, or phenobarbitone plus phenytoin plus primidone). In cohort B, the prescribing of phenobarbitone, phenytoin, or primidone had dropped markedly, whereas monotherapy with valproate and carbamazepine had increased. Thirteen (7.6%) of 172 exposed, live-born infants had congenital anomalies. The most frequent anomalies were spinal defects (four) and glandular hypospadias (three), all in association with maternal therapy with valproate, carbamazepine, or both. The results underline the need for continuation of prospective studies to monitor the effect of change in prescribing policies and to evaluate the role of metabolic interactions between drugs prescribed in combination.

Abnormalities, Drug-Induced↗

Prenatal analysis of insulin receptor autophosphorylation in a family with leprechaunism.

We describe a method for the isolation and functional characterization of insulin receptors from chorionic villi and cultured amniotic fluid cells. The functionality of these receptors is assayed by measuring the insulin-induced stimulation of autophosphorylation of the receptor beta-chain. The method is expected to allow the prenatal diagnosis of those forms of leprechaunism and related diseases which are the result of a decreased stimulation by insulin of receptor autophosphorylation. A pregnancy at risk for leprechaunism was examined and an unaffected child was correctly predicted by study of the functionality of the insulin receptor on cultured amniocytes and by echoscopic examination.

Abnormalities, Multiple↗

Prenatal ultrasonographic diagnosis of radial-ray reduction malformations.

Radial-ray reduction malformations (RRRMs) may occur isolated or in association with other anomalies. The data of seven fetuses born with RRRMs were collected. Six fetuses had associated lethal abnormalities of the central nervous system, urogenital system, and/or heart, detected by ultrasound. In five cases, it was possible to establish the precise diagnosis, enabling an informed prognosis and subsequent genetic counselling. The diagnoses were: Edwards syndrome (n = 3), VACTERL association (n = 1), and Poland-Moebius-like complex (n = 1). In two cases, a complete diagnosis was not possible because of inadequate evaluation of these fetuses before and/or after birth. A proposal is given for the diagnostic approach for infants with RRRMs detected in the antenatal period by means of ultrasonography.

Abnormalities, Multiple↗

Genetic heterogeneity in tuberous sclerosis.

Tuberous sclerosis (TSC) is an autosomal dominant disorder characterized by widespread hamartosis. Preliminary evidence of linkage between the TSC locus and markers on chromosome 9q34 was established, but subsequently disputed. More recently, a putative TSC locus on chromosome 11 has been suggested and genetic heterogeneity seems likely. Here we describe an approach combining multipoint linkage analysis and heterogeneity tests that has enabled us to obtain significant evidence for locus heterogeneity after studying a relatively small number of families. Our results support a model with two different loci independently causing the disease. One locus (TSC1) maps in the vicinity of the Abelson oncogene at 9q34 and a second locus (TSC2) maps in the region of the anonymous DNA marker Lam L7 and the dopamine D2 receptor gene at 11q23.

Chromosome Mapping↗

Prenatal diagnosis of cystic kidney disease with ventriculomegaly: a report of six cases in two related sibships.

In 2 consanguineous relationships, a Cape Verdian man fathered six fetuses (5 male) with fetal ventriculomegaly and echodense fetal kidneys as visualized by ultrasonography between 16 and 32 weeks. During prenatal monitoring, an increased alpha fetoprotein level and abnormal acetylcholinesterase were detected at amniocentesis in 5 of 6 affected fetuses. Chromosomes were normal. Five pregnancies resulted in elective termination; one child was still-born prematurely. Hydrocephalus and cystic disease of the (renal) cortico medullary areas were found. One fetus had polydactyly. The differential diagnosis and prenatal diagnosis of this presumably autosomal recessive syndrome are discussed.

Acetylcholinesterase↗

A leucine-to-proline mutation in the insulin receptor in a family with insulin resistance.

We have determined the primary structure of a mutant insulin receptor of a leprechaun patient born from a consanguineous marriage. A characteristic feature of leprechaunism is an extreme resistance to insulin. In this patient the insulin resistance seems to result from an observed lack of insulin binding to intact cells. Solubilization of cells in non-ionic detergents leads to the appearance of insulin receptors which can bind insulin. However, the insulin-stimulated autophosphorylation of the receptor's beta subunit is markedly reduced. Cloning and sequencing of cDNA derived from insulin receptor mRNA of this patient revealed a leucine-to-proline mutation at position 233 in the alpha subunit. By means of DNA amplification we found that the patient is homozygous for this mutation and that the parents and two grandparents from the consanguineous line are heterozygous. The heterozygous individuals all show decreased insulin binding to cultured fibroblasts. In addition, they are mildly insulin resistant in vivo. These observations show a linkage between the leucine-to-proline mutation and the observed insulin resistance in this family. We therefore conclude that the mutation in the homozygous form is responsible for the extreme insulin resistance in the leprechaun patient. The mutation for the first time characterizes a region in the insulin receptor which seems to be involved in transmitting the insulin binding signal to the tyrosine kinase domain.

Cells, Cultured↗