Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Polydactyly”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

Apert syndrome with preaxial polydactyly showing the typical mutation Ser252Trp in the FGFR2 gene.

The Apert syndrome is characterized by craniosynostosis and syndactyly of hands and feet. Although most cases are sporadic, an autosomal dominant mode of inheritance is well documented. Two mutations in the FGFR2 gene (Ser252Trp and Pro253Arg) account for most of the cases. We report a patient with a rare form of Apert syndrome with polydactyly. The proposita has turribrachycephaly. complete syndactyly of 2nd to 5th digits ("mitten hands" and cutaneous fusion of all toes). The X-rays revealed craniosynostosis of the coronal suture and preaxial polydactyly of hands and feet with distal bony fusion. Molecular analysis found a C755G transversion (Ser252Trp) in the FGFR2 gene. Only eight patients with Apert syndrome and preaxial polydactyly have been reported and this is the first case in which molecular diagnosis is available. On the basis of the molecular findings in this patient, polydactyly should be considered part of the spectrum of abnormalities in the Apert syndrome. This assertion would establish the need for a new molecular classification of the acrocephalopolysyndactylies.

Acrocephalosyndactylia↗

Comparative histopathology of the growth cartilage in short-rib polydactyly syndromes type I and type III and in chondroectodermal dysplasia.

The histopathology of growth cartilage of long bones was studied in two cases of chondroectodermal dysplasia (Ellis-Van Creveld syndrome), a case of short-rib polydactyly (SRP) type I (Saldino-Noonan syndrome), three cases of short-rib polydactyly (SRP) type III (Verma-Naumoff syndrome), and a case with polydactyly without other skeletal abnormalities but with visceral malformations. The lesions were qualitatively similar in chondroectodermal dysplasia and SRP I: regular concave ossification line, short, slightly irregular columns, regularly dispersed hypertrophic chondrocytes. In SRP III, the ossification line was irregular and the hypertrophic cells had a discontinuous distribution in clusters. No amylase resistant PAS intracytoplasmic inclusions were found. Short, slightly or markedly irregular primary trabeculae, some of them with wide cartilaginous cores, tongue prolongations and islands of cartilage situated along the periost were found in chondroectodermal dysplasia, SRP I and III. The case of polydactyly without other skeletal abnormalities had a normal morphology of the growth plate. These data suggest that there is a relationship between chondroectodermal dysplasia and SPR type I, and that SRP type III is distinct from SRP type I.

Ellis-Van Creveld Syndrome↗

Transvaginal sonographic diagnosis of short-rib polydactyly dysplasia at 13 weeks' gestation.

Short-rib polydactyly dysplasia (SRP) is an autosomal recessive, lethal skeletal dysplasia. Sonographic assessment of subsequent pregnancies is, therefore, recommended. This case indicates that this diagnosis can be made in the latter part of the first trimester. A 30-year-old multigravid woman presented at 13 weeks' gestation for an ultrasound examination. She had had a termination of pregnancy for a fetus with pathologically confirmed short-rib polydactyly dysplasia, type I (Saldino-Noonan). On transvaginal sonography, a narrow chest, symmetrical micromelia, polydactyly and anasarca were present. An autopsy confirmed recurrent SRP. Short-rib polydactyly dysplasia may be diagnosed with transvaginal sonography in the first trimester.

Adult↗

Crossed polydactyly type I in a mother and son: an autosomal dominant trait?

In a Japanese family, a propositus and his mother had crossed polydactyly type I. A maternal grandaunt also had preaxial polydactyly of the feet. The findings that both of the mother and son had the identical type of polydactyly are consistent with an autosomal dominant inheritance with variable expressivity. Other explanations include X-linked recessive inheritance, polygenic inheritance, and a chance occurrence of the 2 different kinds of polydactyly.

Adult↗

Preaxial polydactyly of feet in infants of diabetic mothers: epidemiological test of a clinical hypothesis.

Using data from the Spanish Collaborative Study of Congenital Malformations (ECEMC), we tested the hypothesis of Carey et al. (Proc Greenwood Genet Cent 9:95, (1990) on maternal diabetes and preaxial polydactyly of feet in infants born to diabetic mothers. Our results seem to confirm their suggestion, although the hallucal type of preaxial polydactyly that they described seems to be much less frequent. Nevertheless, a high risk exists (OR = 24.60, P = 0.0004) for preaxial polydactyly of the feet in relation with other types of birth defects or postaxial polydactyly. This analysis shows the importance of clinical observations for epidemiologists, because such observations constitute hypotheses and provide actual issues for study, and clinicians will get epidemiological confirmation for their individual observations and hypotheses.

Abnormalities, Multiple↗

Are bowing of long tubular bones and preaxial polydactyly signs of the Meckel syndrome?

We describe four cases with signs resembling those of Meckel syndrome. Two cases demonstrated postaxial polydactyly; one case, preaxial polydactyly; and one case, pre- and postaxial polydactyly. Since there is at least one other reported case with preaxial polydactyly, it may be a rare sign of the Meckel syndrome. In all four cases, various degrees of bowing of the long tubular bones were observed. Since at least two cases exhibited typical Meckel syndrome and since in a few further reported cases X-ray examination revealed bowing of long tubular bones, this sign is considered to be a further, hitherto not well recognized sign of the Meckel syndrome, and not grounds for delineation of a new syndrome. An extensive review of the literature revealed, that shortened and bowed extremities may be present in about one-sixth of all cases with Meckel syndrome.

Abnormalities, Multiple↗

[Epidemiology of polydactylies: a case-control study in the population of Pelotas-RS]

OBJECTIVE: To identify and compare cases of isolated polydactyly with healthy newborns regarding familial and maternal characteristics. METHODS: We conducted this hospital-based case-control study from 1990 to 1998. We collected data in interviews with mothers of cases and controls during the post-delivery period. Cases were defined as newborns presenting an extra or a bifid digit in hands and/or feet. Controls were the four healthy newborns that were born after the case, at the same hospital. Information was gathered on type of polydactyly, gender and birthweight, twin pregnancy, parental consanguinity, ethnicity. RESULTS: African ancestry and positive family history of congenital malformation, especially polydactyly, were significantly associated with the occurrence of this type of congenital anomaly (crude OR of 3.3; 10.0; and 55.0, respectively). CONCLUSION: Isolated polydactyly was one of the most frequent malformations found in the studied population. The findings associated with black African ancestry confirm the data presented in the literature. Studies conducted on this same population, with a larger population of patients with this type of malformation, could investigate this association better and justify the results presented here.

Journal Article↗

Polydactyly in the American Indian.

Polydactyly has an incidence in the American Indian twice that of Caucasians. A minimum estimate of this incidence is 2.40 per 1,000 live births. Preaxial type 1 has an incidence three to four times that reported for Caucasians or Negroes. The overall sex ratio in Indians is distorted with more males affected than females. The preaxial type 1 anomaly has a strong predilection for the hands and always is unilateral in contrast to postaxial type B where more than one-half are bilateral. The evidence to date, consisting of varying incidences of specific types of polydactyly among American whites, Negroes, and Indians in varying enviroments, suggests different gene-frequencies for polydactyly in each population. The incidence in Indians with 50% Caucasian admixture suggests that the factors controlling polydactyly are in large part genetically determined. Family studies and twin studies reported elsewhere offer no clear-cut genetic model which explains the highly variable gene frequencies.

Congenital Abnormalities↗

[Genetic analysis of a fetus with Short-rib thoracic dysplasia 8 with or without polydactyly due to variants of DYNC2I1 gene].

OBJECTIVE: To investigate the clinical characteristics of a fetus with Short-rib thoracic dysplasia 8 with or without polydactyly (SRTD8) due to variants of DYNC2I1 gene. METHODS: A fetus identified to have short ribs, short long bones, and narrow thorax at 26+1 weeks of gestation at the Women and Children's Hospital of Ningbo University in September 2024 was selected as study subject. The fetus underwent termination of pregnancy at 35+5 weeks of gestation. Clinical data of the fetus were retrospectively collected. Whole exome sequencing (WES) was carried out on fetal tissue, and candidate variants were validated by Sanger sequencing. Difference between the wild type and variant DYNC2I1 proteins was analyzed using AlphaFold v3.0.1 and PyMOL v2.5.6 software. Pathogenicity of the variant was rated based on guidelines from the American College of Medical Genetics and Genomics (ACMG). Using keywords such as "DYNC2I1 gene", previous literature on patients due to biallelic DYNC2I1 gene variants were retrieved from the PubMed databases, CNKI, and Wanfang Data Knowledge Service Platform, and the genetic variant and clinical phenotypes of patients were analyzed. The literature retrieval time was set from the establishment of database to December 31, 2025. This study was approved by the Medical Ethics Committee of the hospital (Ethics No.: 2023-094). RESULTS: Prenatal ultrasound revealed that the fetus had short ribs, short long bones, and narrow thorax at 26+1 gestational weeks. WES and Sanger sequencing revealed that the fetus has harbored compound heterozygous variants of the DYNC2I1 gene, namely c.265_268 (p.Gln89GlyfsTer15) in exon 3 and c.1777C>T (p.Arg593Trp) in exon 14, which were inherited from his father and mother, respectively. Prediction of the DYNC2I1 protein structure suggested that the c.265_268del variant has formed a premature termination codon, which may significantly alter the protein's secondary structure. The c.1777C>T variant may disrupt the electrostatic interaction between Arg593 and Asp729. Based on the ACMG guidelines, the c.265_268del (p.Gln89GlyfsTer15) variant was predicted to be likely pathogenic (PM2_Supporting +PVS1), whilst the c.1777C>T(p.Arg593Trp) variant was rated as uncertain significance (PM2_Supporting+PM3+PP4). Literature search has identified five articles related to biallelic DYNC2I1 variants involving a total of 11 fetuses/patients. Together with the fetus from this study, typical phenotypes included short ribs (6 cases), narrow thorax (6 cases), short limb bones (6 cases), and hand polydactyly (6 cases), and foot polydactyly (5 cases), albeit with significant clinical heterogeneity. A total of 12 genetic variants were identified, among which c.44delC was the most common (16.7%, 4/24), followed by c.1777C>T, c.2246C>T, and c.2305G>A (each accounting for 12.5%). No mutational hotspot was identified. CONCLUSION: The c.265_268del (p.Gln89GlyfsTer15) and c.1777C>T (p.Arg593Trp) compound heterozygous variants of the DYNC2I1 gene probably underlay the pathogenesis of SRTD8 in this fetus. This study has enriched the mutational spectrum of the DYNC2I1 gene and facilitated etiological diagnosis and treatment of DYNC2I1-related diseases.

Humans↗

Liver fibrocystic disease and polydactyly: proposal of a new syndrome.

Liver fibrocystic disease (LFCD), characterized by dilatation of the intrahepatic bile ducts and variable degree of fibrosis, can be present alone or as part of many syndromes, such as Bardet-Biedl syndrome (BBS), Meckel syndrome, Jeune asphyxiating thoracic dysplasia, and Fraser-Jequier-Chen syndrome. We report two cases of LFCD and polydactyly with features similar, but not diagnostic of, BBS. Patient 1 was an 18-month-old boy with mental retardation, polydactyly, chronic renal failure, convergent strabismus, and hepatic fibrosis. Patient 2 was a male neonate with LFCD and polydactyly. Their manifestations could not be diagnosed as any of the previous mentioned entities. Difficulties in the early diagnosis of BBS have been previously reported and this could explain the clinical variability and heterogeneity of manifestations at the time of diagnosis. On the other hand, the existence of liver abnormalities in association with BBS has been previously described, but is rare. Our patients' malformations might represent a new entity where autosomal recessive inheritance is probable, but other patterns cannot be ruled out.

Bardet-Biedl Syndrome↗

Three conditions in neonatal asphyxiating thoracic dysplasia (Jeune) and short rib-polydactyly syndrome spectrum: a clinicopathologic study.

Clinicopathologic examination of eight patients with asphyxiating thoracic dysplasia (Jeune; ATD) disclosed two different types, which were designated as type 1 and type 2. Type 1 ATD was characterized by the presence of radiologically irregular metaphyseal ends and histopathologically irregular cartilage bone junction with patchy distribution of physeal zone of hypertrophy. Type 2 ATD showed radiologically smooth metaphyseal ends and histopathologically diffusely retarded and disorganized physes with smooth cartilage bone junctions. Examination of four patients with the "Verma-Naumoff" short rib-polydactyly syndrome showed many radiologic and pathologic features similar to those of type 1 ATD. Differential diagnosis of these three osteochondrodysplasias is discussed along with chondroectodermal dysplasia (Ellis-van Creveld), short rib-polydactyly syndrome type 1 (Saldino-Noonan), short rib-polydactyly syndrome type 2 (Majewski), and the new short rib syndrome reported by Beemer et al [1983].

Asphyxia Neonatorum↗

Short rib-polydactyly syndrome and pericentric inversion of chromosome 4.

We report on a newborn infant with clinical and radiological manifestations of some type of short rib-polydactyly syndrome who died soon after birth. Chromosomal studies on peripheral blood lymphocytes and chondrocytes demonstrated an apparently balanced pericentric inversion of chromosome 4 (present in the mother also). This association may have occurred by chance but, if not, the chromosomal breakpoints could interrupt the gene responsible for short rib-polydactyly syndromes, or else be related to the mechanism of short rib-polydactyly syndromes.

Abortion, Habitual↗

Achondrogenesis type II with polydactyly.

We report on a newborn male infant who presented the typical findings of achondrogenesis type II (Langer-Saldino), and who also showed postaxial polydactyly on both feet and bilateral microtia. Polydactyly is frequently part of the short-rib syndromes, but has not been reported in achondrogenesis. The hypothesis of polydactyly as part of a contiguous gene syndrome is discussed.

Abnormalities, Multiple↗

Bilateral preaxial polydactyly in a WAGR syndrome patient.

We report on a 30-month-old baby girl with typical clinical features of WAGR syndrome. In addition, the patient showed bilateral preaxial polydactyly of the feet. Cytogenetic and fluorescent in situ hybridization (FISH) analyses identified a deletion, del(11)(p13p14.1), extending from 6.1 to 21.7 Mb in size. Although the simultaneous appearance of WAGR and polydactyly has been already described, to our knowledge this is the first case in which the characterization at the cytogenetic molecular level of a patient with these phenotypes is reported. These observations indicate that preaxial polydactyly may be another feature of the WAGR syndrome and suggest the existence of a related gene in the WAGR critical region or in its proximity.

Abnormalities, Multiple↗

Short-rib polydactyly syndrome (SRPS) type III diagnosed during routine prenatal ultrasonographic screening. A case report.

The prenatal diagnosis of skeletal dysplasias is often initiated by the finding of a shortened extremity during a routine sonographic examination. Second-trimester diagnosis of these anomalies allows the couple to consider the option of terminating a pregnancy when a lethal anomaly is detected. A 21-year-old Bedouin woman underwent routine ultrasonographic screening at 20 weeks' gestation. Severe micromelia, a narrow thorax with shortened ribs, and postaxial polydactyly were detected. The patient delivered a male dwarf at 20 weeks' gestation following prostaglandin induction of labour for a diagnosis of short-rib polydactyly syndrome type III. The prenatal ultrasonographic diagnosis of short-rib polydactyly syndrome type III was made at 20 weeks' gestation, allowing termination of the pregnancy. A proper sonographic approach to skeletal dysplasias allows both early detection and differentiation between lethal and non-lethal anomalies.

Adult↗

Hypothesis: one cause of polydactyly.

The strongly male-biased sex ratios of probands with polydactyly and of their unaffected sibs suggests that abnormal maternal hormone levels may be involved in this malformation. This suspicion is supported by data relating polydactyly to maternal age and race. High maternal testosterone seems capable of explaining the (admittedly limited) epidemiological data on polydactyly. If this were so, one may predict that offspring risk would be higher in respect of affected mothers than affected fathers.

Black People↗

Naumoff short-rib polydactyly syndrome compounded with Mohr oral-facial-digital syndrome.

A stillborn baby boy had findings of severe constitutional dwarfism with short limbs, short ribs, and polydactyly that were consistent with Naumoff (type III) short-rib polydactyly syndrome. He also had additional congenital anomalies, including cleft palate, notching of the upper lip, small tongue with accessory sublingual tissue. These oral and pharyngeal anomalies were consistent with Mohr (type II) oral-facial-digital syndrome. We suggest the stillborn infant represented a compound of Naumoff short-rib polydactyly syndrome (SRPS-III) and Mohr oral-facial-digital syndrome (OFDS-II).

Fatal Outcome↗

Short rib-polydactyly syndrome.

INTRODUCTION: Short rib-polydactyly syndrome (SRPD) is an autosomal recessive, lethal skeletal dysplasia. It is characterized by short limb dwarfism, short ribs with thoracic hypoplasia, polydactyly, and multiple anomalies of major organs. CASE REPORT: We report a case of SRPD subtype II (Majewski) that was detected in the 36th week of gestation, showing hydropic change, narrow thorax, shortened limbs, protuberant abdomen, micromelia, polydactyly and extremely low set ears, depressed nasal bridge, and cleft palate. The family was informed of the fatal outcome of the condition. Delivery was induced, and the baby died just after the birth. DISCUSSION: Prenatal diagnosis is established with postmortem radiographic and pathologic examinations.

Adult↗