Rotator Cuff Degeneration: The Role of Genetics.


Journal

The Journal of bone and joint surgery. American volume
ISSN: 1535-1386
Titre abrégé: J Bone Joint Surg Am
Pays: United States
ID NLM: 0014030

Informations de publication

Date de publication:
03 Apr 2019
Historique:
entrez: 5 4 2019
pubmed: 5 4 2019
medline: 22 11 2019
Statut: ppublish

Résumé

The literature is certain regarding the multifactorial etiology of rotator cuff degeneration. However, it remains unclear if rotator cuff degeneration exclusively depends on intrinsic and extrinsic factors or if it is also genetically determined. We compared the health status of cuff tendons, evaluated with a magnetic resonance imaging (MRI) study, between elderly monozygotic and dizygotic twins with the aim of separating the contributions of genetics from shared and unique environments. The rotator cuff tendon status was assessed using the Sugaya classification by MRI. Heritability, defined as the proportion of total variance of a specific characteristic in a particular population due to a genetic cause, was calculated as twice the difference between the intraclass correlation coefficients for monozygotic and dizygotic pairs. The influence of shared environment, which contributes to twin and sibling similarity, was calculated as the difference between the monozygotic correlation coefficient and the heritability index. We identified 33 pairs of elderly twins: 17 monozygotic pairs and 16 dizygotic pairs, with a mean age (and standard deviation) of 64.62 ± 3.32 years. The polychoric correlation was 0.62 in monozygotic twins and 0.53 in dizygotic twins. The calculated heritability index was 0.18 (18%), and the contribution was 0.44 (44%) for the shared environment and 0.38 (38%) for the unique environment. The role of genetics in rotator cuff degeneration is quantified by our study on elderly monozygotic and dizygotic twins; however, it is only partial with respect to the contribution of shared and unique environments.

Sections du résumé

BACKGROUND BACKGROUND
The literature is certain regarding the multifactorial etiology of rotator cuff degeneration. However, it remains unclear if rotator cuff degeneration exclusively depends on intrinsic and extrinsic factors or if it is also genetically determined. We compared the health status of cuff tendons, evaluated with a magnetic resonance imaging (MRI) study, between elderly monozygotic and dizygotic twins with the aim of separating the contributions of genetics from shared and unique environments.
METHODS METHODS
The rotator cuff tendon status was assessed using the Sugaya classification by MRI. Heritability, defined as the proportion of total variance of a specific characteristic in a particular population due to a genetic cause, was calculated as twice the difference between the intraclass correlation coefficients for monozygotic and dizygotic pairs. The influence of shared environment, which contributes to twin and sibling similarity, was calculated as the difference between the monozygotic correlation coefficient and the heritability index.
RESULTS RESULTS
We identified 33 pairs of elderly twins: 17 monozygotic pairs and 16 dizygotic pairs, with a mean age (and standard deviation) of 64.62 ± 3.32 years. The polychoric correlation was 0.62 in monozygotic twins and 0.53 in dizygotic twins. The calculated heritability index was 0.18 (18%), and the contribution was 0.44 (44%) for the shared environment and 0.38 (38%) for the unique environment.
CONCLUSIONS CONCLUSIONS
The role of genetics in rotator cuff degeneration is quantified by our study on elderly monozygotic and dizygotic twins; however, it is only partial with respect to the contribution of shared and unique environments.

Identifiants

pubmed: 30946193
doi: 10.2106/JBJS.18.00761
pii: 00004623-201904030-00005
doi:

Types de publication

Journal Article Twin Study

Langues

eng

Sous-ensembles de citation

IM

Pagination

600-605

Auteurs

Stefano Gumina (S)

Department of Anatomy, Histology, Legal Medicine, and Orthopaedics, Sapienza, University of Rome, Rome, Italy.

Ciro Villani (C)

Department of Anatomy, Histology, Legal Medicine, and Orthopaedics, Sapienza, University of Rome, Rome, Italy.

Valerio Arceri (V)

Shoulder and Elbow Unit, San Camillo Forlanini Hospital, Rome, Italy.

Corrado Fagnani (C)

Centre for Behavioural Sciences and Mental Health, Italian Institute of Health, Rome, Italy.

Lorenza Nisticò (L)

Centre for Behavioural Sciences and Mental Health, Italian Institute of Health, Rome, Italy.

Teresa Venditto (T)

Department of Anatomy, Histology, Legal Medicine, and Orthopaedics, Sapienza, University of Rome, Rome, Italy.

Alessandro Castagna (A)

Shoulder and Elbow Unit, Humanitas Clinic, Rozzano, Italy.

Vittorio Candela (V)

Department of Anatomy, Histology, Legal Medicine, and Orthopaedics, Sapienza, University of Rome, Rome, Italy.

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Classifications MeSH