Literature DB >> 3169793

Amelogenesis imperfecta: a genetic study.

B Bäckman1, G Holmgren.   

Abstract

The mode of inheritance and the clinical manifestations of amelogenesis imperfecta (AI) were studied in 51 families from the county of Västerbotten, northern Sweden. Autosomal dominant (AD) was the most probable mode of inheritance in 33 families, but X-linked dominant (XD) inheritance was a possible alternative in one family. Autosomal recessive (AR) inheritance was found likely in 6 and X-linked recessive inheritance in 2 families. Ten probands were sporadic cases. In the families with AD inheritance, a sex difference was observed between affected and non-affected cases, with an excess of females in the affected group (p less than 0.05). In addition to the 78 index cases, 107 new cases were diagnosed. The clinical manifestations of AI observed could be divided into 2 forms, the hypoplastic form in 72% and the hypomineralization form in 28% of the individuals. AD inheritance was seen in 89% of the cases with the hypoplastic form, and in 44% of the cases with the hypomineralization form. In most families with AD or AR inheritance, each family displayed a characteristic manifestation of either hypoplastic or hypomineralization defects. In 3 families, both hypoplastic and hypomineralization forms of AI were seen. In families with X-linked inheritance, the clinical manifestation differed between females and males with males more seriously affected.

Entities:  

Mesh:

Year:  1988        PMID: 3169793     DOI: 10.1159/000153785

Source DB:  PubMed          Journal:  Hum Hered        ISSN: 0001-5652            Impact factor:   0.444


  11 in total

1.  Target gene analyses of 39 amelogenesis imperfecta kindreds.

Authors:  Hui-Chen Chan; Ninna M R P Estrella; Rachel N Milkovich; Jung-Wook Kim; James P Simmer; Jan C-C Hu
Journal:  Eur J Oral Sci       Date:  2011-12       Impact factor: 2.612

2.  Mouse genetic background influences the dental phenotype.

Authors:  Yong Li; William S Konicki; J Timothy Wright; Cynthia Suggs; Hui Xue; Melissa A Kuehl; Ashok B Kulkarni; Carolyn W Gibson
Journal:  Cells Tissues Organs       Date:  2014-04-08       Impact factor: 2.481

3.  Mapping of the gene for X-linked amelogenesis imperfecta by linkage analysis.

Authors:  M Lagerström; N Dahl; L Iselius; B Bäckman; U Pettersson
Journal:  Am J Hum Genet       Date:  1990-01       Impact factor: 11.025

Review 4.  Interventions for the restorative care of amelogenesis imperfecta in children and adolescents.

Authors:  Mayssoon Dashash; C Albert Yeung; Issam Jamous; Anthony Blinkhorn
Journal:  Cochrane Database Syst Rev       Date:  2013-06-06

5.  Clinical and molecular analysis of the enamelin gene ENAM in Colombian families with autosomal dominant amelogenesis imperfecta.

Authors:  Sandra Gutiérrez; Diana Torres; Ignacio Briceño; Ana Maria Gómez; Eliana Baquero
Journal:  Genet Mol Biol       Date:  2012-08-17       Impact factor: 1.771

6.  Amelogenesis imperfecta: Report of a case and review of literature.

Authors:  Mayur Chaudhary; Shweta Dixit; Asha Singh; Sanket Kunte
Journal:  J Oral Maxillofac Pathol       Date:  2009-07

7.  Amelogenesis imperfecta: A challenge to restoring esthetics and function.

Authors:  V Ranganath; Ashish S Nichani; V Soumya
Journal:  J Indian Soc Periodontol       Date:  2010-07

8.  Bilateral nephrocalcinosis and amelogenesis imperfecta: A case report.

Authors:  Alok Patel; Chetana Jagtap; Chetan Bhat; Rohan Shah
Journal:  Contemp Clin Dent       Date:  2015 Apr-Jun

Review 9.  Dental enamel development: proteinases and their enamel matrix substrates.

Authors:  John D Bartlett
Journal:  ISRN Dent       Date:  2013-09-16

10.  Amelogenesis imperfecta in two families with defined AMELX deletions in ARHGAP6.

Authors:  Jan C-C Hu; Hui-Chen Chan; Stephen G Simmer; Figen Seymen; Amelia S Richardson; Yuanyuan Hu; Rachel N Milkovich; Ninna M R P Estrella; Mine Yildirim; Merve Bayram; Chiung-Fen Chen; James P Simmer
Journal:  PLoS One       Date:  2012-12-14       Impact factor: 3.240

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