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Biomedical subjects

John M Opitz

Publications and source records attributed to John M Opitz.

38 records · Page 3Linked to original sources

Segmentation anomalies of vertebrae and ribs with other abnormalities of blastogenesis: syndromes or associations?

On the basis of two recently studied human fetuses and the historical records and remnant 19th century skeletons in the Museum Vrolik in Amsterdam, we have begun an analysis of an unusual form of somite dysgenesis. This disorder includes vertebral and costal segmentation defects with or without (distal) limb malformation and deformities, anogenital anomalies, unusual colonic atresia, abdominal wall and diaphragmatic defect, Central nervous system abnormality with large head, and severe neurohypotrophic lower limb deformities. This study suggests the existence of an axial vertebral/costal dysgenesis complex with apparently or nearly normal number of cervical vertebrae. There also is some overlap with lumbosacral agenesis but different from the autosomal recessive entities Jarcho-Levin syndrome or spondylocostal dysostosis. To date, no associated heart defects have been noted.

Abnormalities, Multiple↗

Mortality and pathological findings in C (Opitz trigonocephaly) syndrome.

Even as a rare multiple congenital anomalies/mental retardation syndrome, the C-syndrome (CS, or Opitz C-trigonoecephaly syndrome) is, at long last, beginning to attract attention because of its developmental and causal complexity. Also, the possibility that the apparently balanced translocation recently described in an affected Japanese boy may soon provide a molecular/causal insight into this disorder. The manifestations recorded in the previously published patients, those autopsied within recent years, and the unpublished instances in our files suggest that the CS is a heterogeneous genetic disorder, predominantly sporadic but with sufficient familial cases (at times with consanguinity) to allow postulation of an entity due to autosomal dominant mutations with a high rate of germinal mosaicism, or due to both autosomal dominant mutations and an autosomal recessive genocopy. In any event, elucidation of cause and pathogenesis of CS will, in due time, shed light on its developmental pleiotropy, rarity in liveborn infants, prevalence in stillborn fetuses, recurrence risk in humans, and occurrence in other animals (e.g., mice) to further understanding of pathogenesis.

Abnormalities, Multiple↗