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Simpolidactilia, tipo 3
ORPHA:295199CID-10 · Q70.0CID-11 · LB79.YOMIM 610234DOENÇA RARA

A proteína homeobox Hox-D13 é uma proteína que em humanos é codificada pelo gene HOXD13. Este gene pertence à família dos genes homeobox. Os genes homeobox codificam uma família altamente conservada de fatores de transcrição que desempenham um papel importante na morfogênese em todos os organismos multicelulares.

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Introdução

O que você precisa saber de cara

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Simpolidactilia tipo 3 é uma anomalia congênita rara caracterizada pela fusão dos dedos dos pés (polissindactilia) e, frequentemente, pela presença de um dedo extra (polidactilia) no mesmo membro. Afeta principalmente os dedos 3 e 4, com variações na gravidade da fusão e do dedo extra.

Publicações científicas
135 artigos
Último publicado: 2025 Nov
🏥
SUS: Cobertura mínimaScore: 15%
CID-10: Q70.0
🇧🇷Dados SUS / DATASUS
PROCEDIMENTOS SIGTAP (5)
0202010503
Cariótipo — bandas G, Q ou Rgenetic_test
0202010600
Pesquisa de microdeleções/microduplicações por FISHlab_test
0202010694
Sequenciamento completo do exoma (WES)rehabilitation
0202010260
Dosagem de alfa-fetoproteína
0301070040
Atendimento em reabilitação — doenças raras
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Sinais e sintomas

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Linha do tempo da pesquisa

Publicações por ano — veja quando o interesse científico cresceu
Anos de pesquisa10
Total histórico135PubMed
Últimos 10 anos7publicações
Pico20162 papers
Linha do tempo
20202016Hoje · 2026
Publicações por ano (últimos 10 anos)

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Genética e causas

O que está alterado no DNA e como passa nas famílias

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Publicações mais relevantes

Timeline de publicações
40 papers (10 anos)

Mostrando amostra de 7 publicações de um total de 40

#1

Clinical and genetic analysis in Chinese families with synpolydactyly, and cellular localization of HOXD13 with different length of polyalanine tract.

Frontiers in genetics2023

Synpolydactyly (SPD) is caused by mutations in the transcription factor gene HOXD13. Such mutations include polyalanine expansion (PAE), but further study is required for the phenotypic spectrum characteristics of HOXD13 PAE. We investigated four unrelated Chinese families with significant limb malformations. Three PAEs were found in the HOXD13 polyalanine coding region: c.172_192dup (p.Ala58_Ala64dup) in Family 1, c.169_192dup (p.Ala57_Ala64dup) in Family 2, and c.183_210dup (p.Ala62_Ala70dup) in Family 3 and Family 4. Interestingly, we identified a new manifestation of preaxial polydactyly in both hands in a pediatric patient with an expansion of seven alanines, a phenotype not previously noted in SPD patients. Comparing with the wild-type cells and mutant cells with polyalanine contractions (PACs), the HOXD13 protein with a PAE of nine-alanine or more was difficult to enter the nucleus, and easy to form inclusion bodies in the cytoplasm, and with the increase of PAE, the more inclusion bodies were formed. This study not only expanded the phenotypic spectrum of SPD, but also enriched our understanding of its pathogenic mechanisms.

#2

An Evolution of the Surgical Management of Synpolydactyly: A Case Series of 21 Hands.

Annals of plastic surgery2023 Jun 01

Synpolydactyly is a rare congenital anomaly characterized by syndactyly and polydactyly in the central hand. Limited treatment guidelines exist for this complex condition. A retrospective review of synpolydactyly patients was conducted at a large, tertiary pediatric referral center to describe our surgical experience and evolution of management. The Wall classification system was used to categorize cases. Eleven patients (21 hands) with synpolydactyly were identified. Most of the patients were White and had at least one first-degree relative who also had synpolydactyly. The Wall classification yielded the following results: 7 type 1A hands, 4 type 2B hands, 6 type 3 hands, and 4 uncategorizable hands. Each patient had an average of 2.6 surgeries and an average follow-up time of 5.2 years. The rates of postoperative angulation and flexion deformities were 24% and 38%, respectively, with many of these cases also demonstrating preoperative alignment abnormalities. These cases often required additional surgeries including osteotomies, capsulectomies, and/or soft tissue releases. The rate of web creep was 14% with 2 of these patients requiring revision surgery. Despite these findings, at the time of final follow-up, most patients had favorable functional outcomes, were able to engage in bimanual tasks, and were able to perform activities of daily living independently. Synpolydactyly is a rare congenital hand anomaly with a significant degree of variability in clinical presentation. The rates of angulation and flexion deformities as well as web creep are not insignificant. We have learned to prioritize correcting contractures, angulation deformities, and skin fusion, over simply trying to delete the "extra" number of bones as this may destabilize the digit(s).

#3

A novel microdeletion upstream of HOXD13 in a Chinese family with synpolydactyly.

American journal of medical genetics. Part A2022 Jan

Synpolydactyly (SPD) is a digital malformation with the typical clinical phenotype of the webbing of 3/4 fingers and/or 4/5 toes, and combined with polydactyly. In this study, we investigated a Chinese family with SPD and genetic analysis found that all of the affected individuals in the family carry a heterozygous 11,451 bp microdeletion at chr2:176933872-176945322 (GRCh37), which is located upstream of HOXD13 gene, the known disease gene for SPD1. All the affected individuals in the family carry the heterozygous deletion variant, and the variant co-segregated with SPD in the family. Thus, we speculate that the 11,451 bp microdeletion is the disease-causing variant in the family. To date, the microdeletion associating with SPD1 which we identified is the smallest deletion upstream of the HOXD13 gene and not altering the sequence of the HOXD13 gene.

#4

Biallelic variants in EFEMP1 in a man with a pronounced connective tissue phenotype.

European journal of human genetics : EJHG2020 Apr

Connective tissue disorders are a spectrum of diseases that affect the integrity of tissues including skin, vasculature, and joints. They are often caused by variants that disrupt genes encoding components of extracellular matrix (ECM). The fibulin glycoproteins are ECM proteins important for integrity of tissues including dermis, retina, fascia, and vasculature. The fibulin family consists of seven members (fibulins-1 to -7) and is defined by a fibulin-type domain at the C-terminus. The family is associated with human diseases, for instance a variant in FBLN1, encoding fibulin-1, is associated with synpolydactyly, while one in EFEMP1, encoding fibulin-3, causes Doyne honeycomb degeneration of the retina. Loss-of-function of fibulins-4 and -5 causes cutis laxa, while variants in fibulins-5 and -6 are associated with age-related macular degeneration. Of note, EFEMP1 is not currently associated with any connective tissue disorder. Here we show biallelic loss-of-function variants in EFEMP1 in an individual with multiple and recurrent abdominal and thoracic herniae, myopia, hypermobile joints, scoliosis, and thin translucent skin. Fibroblasts from this individual express significantly lower EFEMP1 transcript than age-matched control cells. A skin biopsy, visualised using light microscopy, showed normal structure and abundance of elastic fibres. The phenotype of this individual is remarkably similar to the Efemp1 knockout mouse model that displays multiple herniae with premature aging and scoliosis. We conclude that loss of EFEMP1 function in this individual is the cause of a connective tissue disorder with a novel combination of phenotypic features, and can perhaps explain similar, previously reported cases in the literature.

#5

A rare TTC30B variant is identified as a candidate for synpolydactyly in a Chinese pedigree.

Bone2019 Oct

Syndactyly type II (synpolydactyly, SPD) is a rare autosomal dominant inherited disease with higher incomplete penetrance. Currently, several variants in HOXD13 and one deletion in FBLN1 have been associated with SPD. However, the causative variants in several SPD families and their etiological mechanism are still largely unknown. Whole exome and PCR-sanger sequencing followed by two-point linkage analysis were performed to identify the pathogenic variant in a six-generation Chinese pedigree. Homology modeling in combination with the RNAi and qRT-PCR experiments was used for revealing the pathogenic mechanism of the TTC30B variant. A six-generation SPD family was reported. The affected subjects in this family had no other clinical malformation beyond SPD. A rare missense variant c.1157C>T [p.Ala375Val] (chr2:178416368, hg19) in TTC30B was demonstrated to be responsible for this SPD family. The modeling structure indicated that the Ala375 was evolutionarily and structurally conserved. The variant p.Ala375Val was predicted to be deleterious for protein structure and/or stability. Two-point linkage analysis resulted in a maximum LOD score of 3.1444 (P = 0.000071). Furthermore, we found that TTC30B was regulated by the Shh signaling pathway and the abnormal expression of TTC30B will affect the activation of the Shh signaling pathway in human retinal pigment epithelial cells. This study demonstrates for the first time that an IFT (intraflagellar transport) - related gene TTC30B is implicated with SPD.

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Referências e fontes

Bases de dados externas citadas neste artigo

Publicações científicas

Artigos indexados no PubMed ligados a esta doença no grafo RarasNet — título, periódico e PMID direto da fonte, sem intermediação de IA.

  1. Clinical and genetic analysis in Chinese families with synpolydactyly, and cellular localization of HOXD13 with different length of polyalanine tract.
    Frontiers in genetics· 2023· PMID 37035736mais citado
  2. An Evolution of the Surgical Management of Synpolydactyly: A Case Series of 21 Hands.
    Annals of plastic surgery· 2023· PMID 36880765mais citado
  3. A novel microdeletion upstream of HOXD13 in a Chinese family with synpolydactyly.
    American journal of medical genetics. Part A· 2022· PMID 34467619mais citado
  4. Biallelic variants in EFEMP1 in a man with a pronounced connective tissue phenotype.
    European journal of human genetics : EJHG· 2020· PMID 31792352mais citado
  5. A rare TTC30B variant is identified as a candidate for synpolydactyly in a Chinese pedigree.
    Bone· 2019· PMID 31306809mais citado
  6. Central Ray Synpolydactyly with Bilateral Medial Foot Polydactyly and Hydrocephalus: A Case Report.
    Plast Reconstr Surg Glob Open· 2025· PMID 41869544recente
  7. HOXD12 a candidate gene for a novel form of synpolydactyly.
    Bone· 2026· PMID 41786235recente
  8. Long-Read Whole-Genome Sequencing Uncovers a Deletion Upstream to HOXD13 Causing Synpolydactyly.
    Am J Med Genet A· 2025· PMID 40444971recente
  9. Unraveling the Genetic Basis of Congenital Limb Anomalies in Eight Families.
    Clin Genet· 2025· PMID 39639541recente
  10. New insight into the development of synpolydactyly caused by expansion of HOXD13 polyalanine based on weighted gene co-expression network analysis.
    BMC Med Genomics· 2024· PMID 39472920recente

Bases de dados e fontes oficiais

Identificadores e referências canônicas usadas para montar este verbete.

  1. ORPHA:295199(Orphanet)
  2. MONDO:0012447(MONDO)
  3. GARD:17360(GARD (NIH))
  4. Busca completa no PubMed(PubMed)
  5. Artigo Wikipedia(Wikipedia)

Dados compilados pelo RarasNet a partir de fontes abertas (Orphanet, OMIM, MONDO, PubMed/EuropePMC, ClinicalTrials.gov, DATASUS, PCDT/MS). Este conteúdo é informativo e não substitui avaliação médica.

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Simpolidactilia, tipo 3
Compêndio · Raras BR

Simpolidactilia, tipo 3

ORPHA:295199 · MONDO:0012447
CID-10
Q70.0 · Coalescência dos dedos (dedos da mão fundidos)
CID-11
OMIM
610234
MedGen
UMLS
C1853255
EuropePMC
Wikipedia
Papers 10a
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