triphalangeal thumb
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2021 ◽  
Vol 9 (23) ◽  
pp. 6832-6838
Author(s):  
Shi-Jie Zhang ◽  
Hai-Bin Lin ◽  
Qiu-Xia Jiang ◽  
Shao-Zheng He ◽  
Guo-Rong Lyu

2021 ◽  
pp. 175319342098154
Author(s):  
Jae Kwang Kim ◽  
Bassmh Abdullah A Al-Dhafer ◽  
Young Ho Shin ◽  
Hyun Seok Joo

Although the Wassel-Flatt classification system has been widely used for radial polydactyly, it has some limitations. We modified the classification system by introducing the hypoplastic types and refining the definition of triphalangeal thumb without changing the main structure of the original classification system. A total of 200 consecutive duplicated thumbs of 183 patients treated surgically from June 2016 to June 2018 were included. We evaluated intra-observer and inter-observer reliability using the kappa coefficient in the modified and original Wassel-Flatt classification systems (three examiners evaluated each case twice, with an interval of 4 weeks). We also evaluated the surgical methods according to the types of deformity in the modified and original Wassel-Flatt classification systems. The modified Wassel-Flatt classification system had good inter-observer reliability and provides useful information for determining the surgical plan according to the types of radial polydactyly. Level of evidence: IV


2020 ◽  
Vol 13 (1) ◽  
Author(s):  
Anna Zlotina ◽  
Olesia Melnik ◽  
Yulia Fomicheva ◽  
Rostislav Skitchenko ◽  
Alexey Sergushichev ◽  
...  

Abstract Background Triphalangeal thumb-polysyndactyly syndrome (TPT-PS) is a rare well-defined autosomal dominant disorder characterized by long thumbs with three phalanges combined with pre- and postaxial polydactyly/syndactyly of limbs. By now, the syndrome has been reported in several large families from different ethnic backgrounds, with a high degree of inter- and intrafamilial variability. The genome locus responsible for TPT-PS has been mapped to the 7q36.3 region harboring a long-range sonic hedgehog (SHH) regulatory sequence (ZRS). Both single-nucleotide variants and complete duplications of ZRS were shown to cause TPT-PS and similar limb phenotypes. TPT-PS usually forms as isolated limb pathology not associated with additional malformations, in particular, with cardiovascular abnormalities. Case presentation Here we report on a rare Russian neonatal case of TPT-PS combined with severe congenital heart disease, namely double outlet right ventricle, and microphthalmia with optic disc coloboma. Pedigree analysis revealed TPT-PS of various expressivity in 10 family members throughout five generations, while the cardiac defect and the eye pathology were detected only in the proband. To extend the knowledge on genotype–phenotype spectrum of TPT-PS, the careful clinical and genomic analysis of the family was performed. High-resolution array-based comparative genomic hybridization (array-CGH) revealed a ~ 300 kb microduplication of 7q36.3 locus (arr[GRCh37] 7q36.3(156385810_156684811) × 3) that co-segregated with TPT-PS in the proband and her mother. The duplication encompassed three genes including LMBR1, the intron 5 of which is known to harbor ZRS. Based on whole-exome sequencing data, no additional pathogenic mutations or variants of uncertain clinical significance were found in morbid cardiac genes or genes associated with a microphthalmia/anophthalmia/coloboma spectrum of ocular malformations. Conclusions The results support the previous data, indicating that complete ZRS duplication underlies TPT-PS, and suggest a broader phenotypic impact of the 7q36.3 microduplication. Potential involvement of the 7q36.3 microduplication in the patient’s cardiac and eye malformations is discussed. However, the contribution of some additional genetic/epigenetic factors to the complex patient`s phenotype cannot be excluded entirely. Further comprehensive functional studies are needed to prove the possible involvement of the 7q36.3 locus in congenital heart disease and eye pathology.


2020 ◽  
Vol 182 (9) ◽  
pp. 2117-2123
Author(s):  
Jihai Xu ◽  
Jing Wu ◽  
Xiaofeng Teng ◽  
Libing Cai ◽  
Huizong Yuan ◽  
...  
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2020 ◽  
Vol 57 (10) ◽  
pp. 660-663
Author(s):  
Jacob W P Potuijt ◽  
Jeannette Hoogeboom ◽  
Esther de Graaff ◽  
Christianne A van Nieuwenhoven ◽  
Robert Jan H Galjaard

BackgroundThe of zone of polarizing activity regulatory sequence (ZRS) is a regulatory element residing in intron 5 of LMBR1 and regulates Sonic Hedgehog expression in the limb bud. Variants in the ZRS are generally fully penetrant and can cause triphalangeal thumb (TPT) and polydactyly in affected families.ObjectiveIn this report, we describe two families with mild phenotypical presentation.MethodsWe performed a field study for clinical evaluation and sequenced the ZRS for variantsusing Sanger sequencing.ResultsIn family I, a novel 165A>G variant in the ZRS (g.156584405A>G, GRCh37/Hg19) was found. In family II, we identified a 295T>C variant in the ZRS (g.156584535T>C, GRCh37/Hg19). Family members of both families who were presumed to be unaffected shared the variant in the ZRS with affected family members, suggesting reduced penetrance of the genotype. However, clinical examination of these unaffected family members revealed minor anomalies like broad thumbs and lack of thumb opposition. As the phenotype in affected patients is remarkably mild, we suggest that these ZRS variants are minimally disruptive for Sonic Hedgehog expression and therefore can result in subclinical phenotypes.ConclusionOur study underlines the importance of accurate clinical examination and appropriate genetic counselling in families with mild cases of TPT.


2018 ◽  
Vol 44 (1) ◽  
pp. 59-68 ◽  
Author(s):  
Jacob W. P. Potuijt ◽  
Robert-Jan H. Galjaard ◽  
Peter J. van der Spek ◽  
Christianne A. van Nieuwenhoven ◽  
Nadav Ahituv ◽  
...  

Despite being a rare congenital limb anomaly, triphalangeal thumb is a subject of research in various scientific fields, providing new insights in clinical research and evolutionary biology. The findings of triphalangeal thumb can be predictive for other congenital anomalies as part of an underlying syndrome. Furthermore, triphalangeal thumb is still being used as a model in molecular genetics to study gene regulation by long-range regulatory elements. We present a review that summarizes a number of scientifically relevant topics that involve the triphalangeal thumb phenotype. Future initiatives involving multidisciplinary teams collaborating in the field of triphalangeal thumb research can lead to a better understanding of the pathogenesis and molecular mechanisms of this condition as well as other congenital upper limb anomalies.


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