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Atelencephalic microcephaly in a 21-week human fetus.

Atelencephalic microcephaly, a rare and extreme disorder, is known morphologically by only six cases. Derivatives of the telencephalon are absent or dysplastic, while more caudal structures are normal or mildly deformed. A more extensive form, aprosencephaly, involves structures of the diencephalon and may be associated with holoprosencephalic facies. Extracranial anomalies may be present in both atelencephaly and aprosencephaly. We describe the seventh and youngest specimen, a 21-week female with atelencephaly. Maternal and gestational histories were unremarkable; the fetus was obtained by therapeutic abortion following diagnosis of a severe cranial malformation by ultrasound. A small and depressed, but intact, calvarium covered the brain. The forebrain was rounded and showed fused hemispheres, absent gyri, olfactory bulbs, and tracts. Caudal structures were mildly deformed. An oval mass of bone filled much of the middle cranial fossa. By light microscopy, several dysplastic changes were apparent in the forebrain. Ventricles were not present; small round cells resembling those of the germinal matrix were prominent in the forebrain. Pyramidal tracts were absent at all levels. The process responsible for these changes cannot be established with certainty; the changes are, however, in keeping with previous damage, such as that accepted for other encephaloclastic disorders. The insult in atelencephaly presumably occurs after closure of the rostral neuropore; earlier damage, with more widespread consequences, is possible for aprosencephaly. As with other destructive processes, etiology in atelencephaly and aprosencephaly is most likely heterogeneous.

Brain↗

Comparison of four spatial maze learning tests with methylnitrosourea-induced microcephaly rats.

The usefulness of four spatial maze learning test methods, single T-maze, Biel water maze, Morris water maze, and radial eight-arm maze, was compared using rats with different degrees of microcephaly, which were induced by single intraperitoneal injection with 3 and 5 mg/kg of methylnitrosourea (MNU) on day 13 of gestation. The single T-maze test did not detect a learning defect in either MNU group. In the Biel water maze test, the swimming time and number of errors were increased in the 5 mg/kg group, but these parameters were comparable to the control values in the retention and path B (reverse course) tests. On the Morris water maze task, the 5 mg/kg group required longer swimming time and distance to reach the goal. In the retest with the goal set on an opposite side, the swimming distance in the 5 mg/kg group was as long as the value in the original test. The radial eight-arm maze test detected fewer correct choices in both MNU groups, which showed different responses on this task. The brain weights in the 3 and 5 mg/kg groups were approximately 80 and 60% of the control value, respectively. The cerebral cortex weights were 77 and 50% of the control value, and the hippocampus weights were 78 and 51%. Among the four maze tests, only the radial eight-arm maze test could detect the effect of both doses of MNU. This shows that the method has the highest sensitivity to spatial learning defect in MNU-induced microcephalic rats.

Abnormalities, Drug-Induced↗

Late onset microcephaly: failure of prenatal diagnosis.

We present a case of recurrent primary developmental microcephaly of late onset, the prenatal diagnosis of which could not be achieved despite performing targeted serial ultrasound scans that revealed no obvious fetal abnormality. Serial scans for head measurements and detailed examination of the brain anatomy by both transabdominal and transvaginal sonography including color and power Doppler assessment revealed no obvious brain abnormality. Frontal lobe distance and thalamic frontal lobe distance at 36 weeks were on the 30th and 50th centiles, respectively. Growth velocity remained on the 50th centile up to 36 weeks; between 36 and 38 weeks measurements were between the 35th and 40th centiles. The infant was delivered by Cesarean section at 38 weeks on parental request. On examination after birth the head circumference was on the 9th centile, but the facies was that of a microcephalic child with a sloping forehead and neurologically he was severely abnormal. The adequacy of the normal reference ranges used is reviewed: the use of sex-specific growth charts at 38 weeks would have demonstrated the biparietal diameter and the head circumference to be on the 20th and 15th centiles, respectively, rather than just below the 40th centile. However, even sex-specific charts may not allow the recognition of a substantial number of affected fetuses.

Brain↗

A dominantly inherited syndrome (microcephaly, short stature, peculiar facies, mental retardation) associated with two balanced rearrangements involving chromosomes 2;7 and 5;20.

A complex balanced three-break-point rearrangement between chromosome 2 and chromosome 7 and a balanced reciprocal translocation between chromosome 5 and chromosome 20, were found associated in a girl and in her mother and grandmother. All three of them have microcephaly, low stature, peculiar asymmetric facies and slight mental retardation. We postulate that one (or more) of the five chromosome break-points disrupted one (or more) gene, leading to the expression of the syndrome and to its segregation with the chromosome rearrangement in three generation. Our finding confirms the efficiency of balanced translocations for gene mapping, althought it has led only to the exclusion mapping of all chromosomes except 2, 5, 7 and 20.

Abnormalities, Multiple↗

Developmental alteration of serotonin neurons in the raphe nucleus of rats with methylazoxymethanol-induced microcephaly.

Prenatal exposure of pregnant rats to methylazoxymethanol acetate (MAM), an anti-mitotic agent, on day 15 of gestation induces severe microcephaly in the offspring. The present study first investigated a developmental alteration of serotonin (5HT) neurons immunohistochemically in the dorsal and median raphe nuclei in serial sections in both control and microcephalic rats (MAM-rats) at 35 days of age. 5HT-immunoreactive neurons in the MAM-rats were reduced in number and irregularly distributed in the dorsal and median raphe nuclei compared with those in the control. The dendrites of neurons in these nuclei in the MAM-rats were very short and twisted. A follow-up observation on the development of the cerebral cortex at 5, 9 and 28 days of age was performed using Nissl-stained preparations, which revealed a disorganized cell arrangement in the cerebral cortex of the MAM-rats at the very early postnatal period. Furthermore, the distribution of 5HT-immunoreactive fibers into the cerebral cortex was also examined using brains of 28 days of age. In MAM-rats of this age, abnormally tortuous 5HT-immunoreactive fibers were observed in the cerebral cortex. 5HT neurons in the raphe nuclei are known to project their ascending axons widely into the entire cortical area during the 1st postnatal week. Thus, the association of disorganized cortical cell arrangement and the hyperdense and tortuous distribution of 5HT-immunoreactive fibers in the cerebral cortex support the idea of target-dependent secondary degeneration of 5HT neurons in the dorsal and median raphe nuclei of the MAM-rats.

Animals↗

Pre and post axial polysyndactyly, microcephaly and ptosis.

A five-year-old boy of Iranian origin with multiple anomalies is described. His parents are first and second cousins. He presented with short stature, psychomotor retardation, microcephaly, ptosis, dacryostenosis, partial left nerve deafness, high arched palate, bifid uvula, total fusion between incisors, asymmetric preaxial and postaxial polysyndactyly, brachyphalangy, kyphosis and spina bifida occulta of S1. To our knowledge, a similar case has not been reported previously.

Abnormalities, Multiple↗

Microcephaly with peculiar demyelination mimicking Pelizaeus-Merzbacher disease.

The neuropathological studies of a 4-year old idiot with microcephaly revealed a striking demyelinating disease compatible with Pelizaeus-Merzbacher disease. The case seemed to be best classified as the patchy demyelination type, but the most unusual finding was a prominent vasculature in some demyelinated areas. Intrauterine hypoxia was proposed as a causative factor of this type of demyelinative lesions.

Autopsy↗

Congenital microcephaly and infantile nephrotic syndrome--a case report.

A 22-month-old girl with nephrotic syndrome and microcephaly is described. She had dysmorphic facies and psychomotor retardation. Her parents were first-degree relatives and one of her siblings had died with nephrotic syndrome and renal failure in infancy. An autosomal recessive inheritance is suggested. The diagnosis of this rare combination is discussed and the relevant literature is reviewed.

Cyclophosphamide↗

Chromosomal breakage, endomitosis, endoreduplication, and hypersensitivity toward radiomimetric and alkylating agents: a possible new autosomal recessive mutation in a girl with craniosynostosis and microcephaly.

A high frequency of spontaneous chromosomal breakage, endomitosis, endoreduplication and hypersensitivity toward both the alkylating agent Trenimon and the radiomimetric drug bleomycin was observed in phytohemagglutinin-stimulated peripheral lymphocytes from a girl with craniosynostosis, microcephaly, ptosis, bird-like facies, and moderate mental retardation. We also observed abnormal chromosomal spiralization and some aspects of abnormal cellular division. Several fruitless attempts were made to establish a cell line. The parents were consanguineous, supporting the existence of a new, rare, autosomal, recessive condition in man. The mutation might involve a gene involved in DNA repair and/or regulation of the mitotic cycle.

Adult↗

Ataxia-telangiectasia: linkage analysis in highly inbred Arab and Druze families and differentiation from an ataxia-microcephaly-cataract syndrome.

Ataxia-telangiectasia (A-T) is a progressive autosomal recessive disease featuring neurodegeneration, immunodeficiency, chromosomal instability, radiation sensitivity and a highly increased proneness to cancer. A-T is ethnically widespread and genetically heterogeneous, as indicated by the existence of four complementation groups in this disease. Several "A-T-like" genetic diseases share various clinical and cellular characteristics with A-T. By using linkage analysis to study North American and Turkish A-T families, the ATA (A-T, complementation group A) gene has been mapped to chromosome 11q23. A number of Israeli Arab A-T patients coming from large, highly inbred families were assigned to group A. In one of these families, an additional autosomal recessive disease was identified, characterized by ataxia, hypotonia, microcephaly and bilateral congenital cataracts. In two patients with this syndrome, normal levels of serum immunoglobulins and alpha-fetoprotein, chromosomal stability in peripheral blood lymphocytes and skin fibroblasts, and normal cellular response to treatments with X-rays and the radiomimetic drug neocarzinostatin indicated that this disease does not share, with A-T, any additional features other than ataxia. These tests also showed that another patient in this family, who is also mentally retarded, is affected with both disorders. This conclusion was further supported by linkage analysis with 11q23 markers. Lod scores between A-T and these markers, cumulated over three large Arab families, were significant and confirmed the localization of the ATA gene to 11q23. However, another Druze family unassigned to a specific complementation group, showed several recombinants between A-T and the same markers, leaving the localization of the A-T gene in this family open.

Ataxia↗

Heterotopia in microcephaly induced by cytosine arabinoside: hippocampus in the neocortex.

Pregnant mice were injected intraperitoneally with cytosine arabinoside (Ara-C) on days 13.5 and 14.5 of pregnancy. The brains of their offspring were studied histologically and histochemically. In addition to dysgenic microcephaly, nodular structures consisting of cells with a relatively homogeneous morphology were observed in the depths of the cerebral cortex. The cell clusters were first seen around postnatal day 4, and had a cellular continuity with the disarrayed pyramidal cell layer in the CA 1 region of the hippocampus. Golgi-Cox staining showed a number of pyramidal-shaped cells in the clusters. Morphologically, they resembled the pyramidal neurons of the hippocampus. Immunohistochemical examination, using anti-serotonin or anti-tyrosine hydroxylase antibodies, also indicated similarities between the cell clusters and the pyramidal cell layer. It is, therefore, proposed that the cell clusters consisted of heterotopic pyramidal cells of the hippocampus. A few synaptic structures could already be detected in the heterotopic cell clusters on postnatal day 3 by electron microscopy. This early establishment of synaptic contact with related neurons may have caused the heterotopic localization of the pyramidal cells.

Abnormalities, Drug-Induced↗

Cerebellar hypoplasia, hypergonadotrophic hypogonadism, retinitis pigmentosa, alopecia, microcephaly, psychomotor retardation, and short stature: "D-CHRAMPS syndrome".

We here report a rather novel syndrome of dysmorphic features, short stature, microcephaly, alopecia, psychomotor retardation, retinitis pigmentosa and secondary amenorrhoea. This may present a new complex multisystem disorder distinct from those reported in the literature and we propose the acronym D-CHRAMPS for this novel disorder.

Adolescent↗

Alopecia congenita universalis, microcephaly, cutis marmorata, short stature and XY gonadal dysgenesis: variable expression of El-Shanti syndrome.

UNLABELLED: Alopecia congenita, laryngomalacia, and XY gonadal dysgenesis has been reported recently as a new syndrome in two unrelated Arab families from Jordan. We report a 4-year-old girl of first cousin Arab parents who had alopecia, microcephaly, cutis marmorata, short stature and borderline cognitive development. Karyotype analysis revealed a male constitution (46,XY) with no deletion of STSor SRY. She showed entirely normal female external genitalia and absence of female internal genitalia. Histological examination of the very small testicles found on laparascopy showed developed spermatic cords and paratesticular tissue with no testicular parenchyma, no Sertoli or Leydig cell development, and no seminiferous tubular development. Hormonal profile was that of a normal female child. Southern blotting and PCR assays showed an intact Y chromosome. Limited sequencing of the SRYgene revealed no mutations. CONCLUSION: this patient, together with the recently reported consanguineous families, represent a previously unrecognised autosomal recessive trait with pleiotropic effects including XY gonadal dysgenesis.

Abnormalities, Multiple↗

Haploinsufficiency of novel FOXG1B variants in a patient with severe mental retardation, brain malformations and microcephaly.

We have investigated the chromosome abnormalities in a female patient exhibiting a severe cognitive disability associated with complete agenesis of the corpus callosum and microcephaly. The patient carries a balanced de novo translocation t(2;14)(p22;q12), together with a neighbouring 720 kb inversion in chromosome 14q12. By combined fluorescence in situ hybridisation and Southern hybridisation, the distal inversion breakpoint on chromosome 14 was mapped to a region harbouring genes and ESTs derived predominantly from brain tissue. RT-PCR studies indicated that these transcripts comprise the 3' ends of novel splice variants of the winged helix transcription factor FOXG1B (also referred to in previous studies as FOXG1A and FOXG1C, as well as Brain Factor 1), the mouse orthologue of which is essential for normal development of the telencephalon. Analysis of these novel FOXG1B transcripts indicated that they are all disrupted by the breakpoint in the patient. Moreover, we have identified novel orthologous Foxg1 transcripts in the mouse and other vertebrates, which validates the functional importance of these variants and provides a direct genetic link between the patient phenotype and that of the heterozygous Foxg1 knockout mice. These results, together with previously published studies on patients with similar disorders and proximal 14q deletions, strongly suggest that several disorders associated with malformations of the human brain may be directly caused by mutations or alterations in the FOXG1B gene.

Abnormalities, Multiple↗

Renal tubular dysgenesis with microcephaly.

Renal tubular dysgenesis, a rare, lethal, autosomal recessive disorder, is characterized by short and poorly differentiated proximal convoluted tubules associated with oligohydramnios, Potter sequence, and neonatal death due to respiratory failure. Abnormalities of the skull may occur in some cases. We report an infant born of a consanguineous union who also had microcephaly, among other features. A history of oligohydramnios with or without skull abnormalities and a lethal outcome without obvious explanation should occasion renal histological study aimed at precise diagnosis and genetic counselling.

Adult↗

A novel deletion mutation in CENPJ gene in a Pakistani family with autosomal recessive primary microcephaly.

Autosomal recessive primary microcephaly (MCPH) is a rare human genetic disorder in which the head circumference is reduced because of abnormality in fetal brain growth. To date, six loci and four genes have been identified for this condition. Our study of primary MCPH led to the identification of 33 Pakistani families with different ethnic backgrounds. Most of these families showed linkage to MCPH5 locus on chromosome 1q31. Only one family with Pashtoon origin from a remote region in Pakistan linked to MCPH6 locus on chromosome 13q12.12-q12.13. Sequence analysis of exon 11 of CENPJ gene, located at MCPH6 locus, revealed a novel four base pair deletion mutation, which is predicted to be protein truncating.

Adolescent↗

New dominant syndrome of microcephaly, facial abnormalities, micromelia, and mental retardation.

We report on three brothers, aged 6, 3, and 2 years, with a hitherto undescribed combination of microcephaly, facial abnormalities, micromelia, and mild mental retardation. Their facial abnormalities included a forehead with bitemporal constriction, upslanting palpebral fissures, synophrys, a short nose with anteverted nostrils, a short columella, a cupid bow-shaped, thin vermilion border of the upper lip, and micrognathia. Their mother had similar clinical manifestations, but was of normal intelligence. The disease was apparently transmitted in a dominant fashion.

Adult↗