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Goldenhar's syndrome.

We present a report on 16 patients with Goldenhar's syndrome. The criteria we required for the diagnosis of Goldenhar's syndrome consisted of an eye abnormality (lipoma, lipodermoid, epibulbar dermoid, or upper eyelid coloboma) associated with ear, mandibular, or vertebral anomalies (two of the three). Although Treacher Collins' syndrome can be easily differentiated from Goldenhar's syndrome, the differences between Goldenhar's syndrome and hemifacial microsomia are more difficult to delineate.

Abnormalities, Multiple↗

Inherited partial trisomy 8q (22 leads to qter).

We report clinical observations and cytogenetic studies of an inherited form of partial trisomy 8q. Although complete trisomy 8 has in recent years proven to be a clinically recognizable syndrome, partial trisomy 8q has been documented in only six individuals. Of these, five were familial and also partially trisomic for chromosome 22. There has been only one prior report of partial trisomy 8q without partial trisomy 22. Review of these cases provides support for the recent suggestion that the phenotype of trisomy 8 may be caused principally by trisomy of the distal segment of 8q.

Abnormalities, Multiple↗

Treacher Collins syndrome: phenotypic variability in a family including an infant with arhinia and uveal colobomas.

We report extreme expression of Treacher Collins syndrome in an infant with arhinia, anotia, absent zygomatic bones, hypoplastic mandibular rami, and bilateral coloboma of iris, choroid plexus, and optic nerves. The Treacher Collins phenotype was mildly expressed in the mother and moderately in the sister. The father had no signs and was not ruled out as the father by DNA fingerprinting, thus making homozygosity by descent in the severely affected son very unlikely.

Adult↗

High mutation detection rate in TCOF1 among Treacher Collins syndrome patients reveals clustering of mutations and 16 novel pathogenic changes.

Twenty-eight families with a clinical diagnosis of Treacher Collins syndrome were screened for mutations in the 25 coding exons of TCOF1 and their adjacent splice junctions through SSCP and direct sequencing. Pathogenic mutations were detected in 26 patients, yielding the highest detection rate reported so far for this disease (93%) and bringing the number of known disease-causing mutations from 35 to 51. This is the first report to describe clustering of pathogenic mutations. Thirteen novel polymorphic alterations were characterized, confirming previous reports that TCOF1 has an unusually high rate of single-nucleotide polymorphisms (SNPs) within its coding region. We suggest a possible different mechanism leading to TCS or genetic heterogeneity for this condition, as we identified two families with no apparent pathogenic mutation in the gene. Furthermore, our data confirm the absence of genotype-phenotype correlation and reinforce that the apparent anticipation often observed in TCS families is due to ascertainment bias.

DNA Mutational Analysis↗

Omphalocele and multiple severe congenital anomalies associated with osteodysplasty (Melnick-Needles syndrome).

Osteodysplasty (Melnick-Needles syndrome, MNS), a severe bone dysplasia with presumed autosomal dominant inheritance, has now been described in 24 individuals, with a predominance of females (21:3). We report an affected woman who gave birth to a male infant with omphalocele, hypoplastic kidneys, and the skeletal changes of this disorder; he died soon after birth. Histologic studies of the calvaria and long bones showed normal maturational sequences, but suggest that remodeling was not normal. This is the second known instance of a male infant with omphalocele and this skeletal dysplasia born to a woman with MNS. We suggest that the gene for the MNS may also cause a syndrome of multiple abnormalities that can be lethal and that this more severe phenotype in males may account for the altered sex ratio among reported cases. Both X-linked dominant and autosomal-dominant sex-limited inheritance are feasible interpretations of the existing information.

Abnormalities, Multiple↗

Melnick-Needles syndrome: indication for an autosomal recessive form.

We describe three patients with bone changes and the facial characteristics of the Melnick-Needles syndrome (MNS). Associated anomalies (once bilateral glaucoma, twice congenital heart defect) were the reason for referral. The MNS literature also suggests a high frequency of associated anomalies, especially cardiopulmonary malformations. The distribution of the affected relatives, consanguinity of one pair of parents, and absence of similar symptoms in parents and other relatives makes autosomal recessive inheritance of the trait in this family a definite possibility. This is of great importance in genetic counseling, particularly of sporadic cases.

Abnormalities, Multiple↗

Cranial defects in the Goldenhar syndrome.

Four patients are presented with the Goldenhar syndrome (GS) and cranial defects consisting of plagiocephaly, microcephaly, skull defects, or intracranial dermoid cysts. Twelve cases from the literature add hydrocephalus, encephalocele, and arhinencephaly to a growing list of brain anomalies in GS. As a group, these patients emphasize the variability of GS and the increased risk for developmental retardation with multiple, severe, or unusual manifestations. The temporal relation of proposed teratogenic events in GS provides an opportunity to reconstruct biological relationships within the 3-5-week human embryo.

Brain↗

Hemifacial microsomia and variants: pedigree data.

Ear malformations occur per se or together with other congenital anomalies. Many syndromes with ear malformations have been described. We have studied propositi with hemifacial microsomia (HFM) or Goldenhar syndrome (GS), also called oculoauriculovertebral "dysplasia" (OAV). In addition to ear malformations some individuals may have a small and/or malformed mandible, epibulbar, or conjunctival lipodermoids and anomalies of the cervical spine. Other malformations may also be seen. At present, the cause of these disorders is unclear. Here we present pedigree data on 97 propositi, 44 of whom had a family history of the same or similar anomaly. First-degree relatives were most often affected (35/433, 8%). Of 176 sibs tabulated, 11 (6%) were considered affected. The pattern of occurrence in many families suggested multifactorial determination, although other interpretations are possible. The occurrence of differing anomalies within a family suggests that the disorders constitute a single entity. The most frequent anomaly was a mild ear malformation (preauricular node or tag). This suggests a broad phenotypic spectrum. These data are useful for purposes of genetic counseling.

Ear, External↗

X-linked syndrome of branchial arch and other defects.

We report on two brothers and their maternal first cousin who have branchial arch defects and other anomalies. Similar physical findings in all three include microcephaly, downslanting palpebral fissures, highly arched palate, apparently lowset, protruding ears, bilateral hearing loss, slightly webbed neck, and mild short stature. In addition, two boys had cryptorchidism, and one had subvalvar pulmonic stenosis and body asymmetry. We suggest that these cousins have an X-linked syndrome of which branchial arch defects are a component. Other pleiotropic manifestations of the mutant gene include microcephaly and cryptorchidism; body asymmetry and relatively short stature may be components as well.

Abnormalities, Multiple↗

A patient with median cleft face anomaly and bilateral Goldenhar anomaly.

We describe a girl with a median cleft face anomaly and oculoauriculovertebral "dysplasia" (bilateral Goldenhar anomaly). The facial anomalies in this child are thought to be due to malfusion of neural crest cells of midline, lateral, and oblique facial processes. Disturbances of these migrating waves of neural crest cells may result in maldevelopment of the intercanthal area, nose, lip, palate, lower eyelid, and lateral aspect of mouth and ear. Except for cleft palate, all of these anomalies are present in this case. The child might have a new "syndrome" which we propose be called oculoauriculofrontonasal anomaly.

Facial Bones↗

Oculoauriculovertebral dysplasia and variants: phenotypic characteristics of 294 patients.

Here we describe the phenotypic characteristics of a single craniofacial clinic population of 294 individuals affected with oculoauriculovertebral dysplasia (OAV) and variants. To our knowledge, this is the largest population so described in the literature. The study population was divided into five subgroups based on the presence of combinations of minimal diagnostic criteria: microtia, mandibular hypoplasia, anomalies of the cervical spine and/or epibulbar or lipodermoids. The following data were recorded: sex (M:F 191:103); race (78% Caucasian); the presence of unilateral or bilateral microtia (193 unilateral, 98 bilateral); the presence of symmetric microtia in bilateral cases (34/98); the presence of mandibular hypoplasia ipsilateral or contralateral to the microtic ear or most severely microtic ear in bilateral cases (135/137 were ipsilateral in unilateral cases, 55/62 were ipsilateral in bilateral cases); the number of individuals with no other congenital anomaly in addition to the minimal diagnostic criteria (154/294), with only one other congenital anomaly (51/294), and with two or more other congenital anomalies (89/294); and the type of other congenital anomalies. Finally, we compared our results with other studies. Findings from our study include: mandibular asymmetry should be expected in patients with unilateral or bilateral microtia; bilateral involvement is frequent in patients with microtia; other malformations are seen frequently in all subgroups; anomalies of the cervical spine are more likely to be associated with other anomalies; and other malformations are seen in all systems and should be searched for to provide optimal management.

Adolescent↗

The Nager syndrome.

The Nager syndrome was identified in a newborn infant and in a subsequent sib by prenatal ultrasonography. This report documents an autosomal recessive pattern of inheritance for this disorder.

Abnormalities, Multiple↗

Goldenhar complex in discordant monozygotic twins: a case report and review of the literature.

In 1952, Goldenhar described a pair of monozygotic twins who were discordant for epibulbar dermoids, auricular appendages, malformations of the auricle, and hemifacial microsomia. Eighteen twin pairs have subsequently been described in which at least one member exhibited these manifestations. We report on an additional pair of discordant dichorionic monozygotic male twins. All of the 5 monozygotic twin pairs for which placental information is available have been discordant and 2 of these had dichorionic membranes. The failure of discordant monozygotic twins to be limited to monochorionic pairs argues against the hypothesis that developmental abnormalities arising from the placental vascular anastomoses that are commonly found in monozygotic twins is the probable explanation for the discordant expression of these traits in twins.

Female↗