Literature DB >> 15503470

A new concept of skeletal dysplasias.

Beyhan Tüysüz1.   

Abstract

The skeletal dysplasias form a large group of hereditary disorders characterized by abnormal growth and malformations of bone and cartilage. The clinical severity ranges from mildly affected short stature to lethal forms. Spranger classified approximately 200 different skeletal dysplasias in 1992, based on the clinical and radiographic features and the mode of genetic transmission. Etiopathogenesis of skeletal dysplasias is better documented now, with rapid accumulation of knowledge concerning defective genes and proteins causing this group of disorders. Mutations responsible for skeletal dysplasias may cause defects in the synthesis of structural proteins and in metabolic pathways, degradation of macromolecules, growth factors and receptors and transcription factors. Classifications by the International Working Group on Constitutional Diseases of Bone were based on the mutations in the same group gene taking into consideration the clinical and radiological findings (achondroplasia group, dysplasia with decreased bone density group and type II collagenopathies...). Clinical manifestations and radiological investigations are crucial for the differential diagnosis in skeletal dysplasias. However, prenatal diagnosis and postnatal definitive diagnosis are most often achieved by molecular analysis of the patient. Therefore, these groups of disorders require management by a multidisciplinary team of specialists, including pediatricians, genetic specialists, orthopedists and psychiatrists.

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Year:  2004        PMID: 15503470

Source DB:  PubMed          Journal:  Turk J Pediatr        ISSN: 0041-4301            Impact factor:   0.552


  2 in total

1.  Deletions in the COL10A1 gene are not associated with skeletal changes in dogs.

Authors:  Amy E Young; Jeanne R Ryun; Danika L Bannasch
Journal:  Mamm Genome       Date:  2006-07-14       Impact factor: 2.957

2.  Development of the Screening Tool for Everyday Mobility and Symptoms (STEMS) for skeletal dysplasia.

Authors:  Penelope J Ireland; Ravi Savarirayan; Tash Pocovi; Tracy Tate; Marie Coussens; Louise Tofts; Craig Munns; Verity Pacey
Journal:  Orphanet J Rare Dis       Date:  2021-01-21       Impact factor: 4.123

  2 in total

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