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September 28, 2022Journal of Science in Sport and Exercise14 citationsOpen Access

A Systematic Review of the Genetic Predisposition to Injury in Football

AMA. McAuleyBirmingham City UniversityDHDavid C. HughesBirmingham City UniversityLTLoukia TsaprouniBirmingham City University

Key Result

Three genetic polymorphisms (ACTN3 rs1815739, ACAN rs1516797, and VEGFA rs2010963) were associated with increased injury susceptibility in football players across multiple independent cohorts, though overall evidence remains weak.

Study Design

Type

Systematic Review (n=9,642)

Structured PICO

Do specific genetic variants increase susceptibility to injury in football players?

P
Population
9,642 participants across 34 studies investigating the association of genetic variants with injury susceptibility in football players.
E
Exposure
Genetic variants (99 unique polymorphisms assessed within 63 genes)
O
Outcome
Association of genetic variants with injury susceptibility (including ACL rupture, concussion, musculoskeletal soft tissue injuries, muscle injuries, and stress fractures)

The current evidence base supporting the integration of genetic information as a prognostic tool for injury risk in football is weak due to prevalent methodological issues.

Limitations

  • Small sample sizes
  • Cohort heterogeneity
  • Population stratification
  • Methodological issues limiting reliability and external validity
  • small sample sizes
  • cohort heterogeneity
  • population stratification

Abstract

Abstract Purpose Synthesise genetic association studies investigating injury involving football players to identify which genetic variants have the most empirical evidence to date. Methods A comprehensive search of the PubMed, SPORTDiscus, and MEDLINE databases until March 11th 2022 identified 34 studies. Inclusion criteria: primary investigations, included football players, examined the association of a genetic variant with injury, and were published in English. Risk of bias was assessed using the Newcastle–Ottawa Scale. A narrative synthesis summarised results. Results There were 33 candidate gene studies and one genome-wide study, with 9642 participants across all studies (range = 43–1311; median = 227). Ninety-nine polymorphisms were assessed within 63 genes. Forty-one polymorphisms were associated with injury once. Three polymorphisms had their specific allelic associations with injury replicated twice in independent cohorts: ACTN3 (rs1815739) XX genotype was associated with an increased susceptibility to non-contact muscle injuries, ACAN (rs1516797) G allele was associated with increased susceptibility to anterior cruciate ligament (ACL) injuries, and VEGFA (rs2010963) CC genotype was associated with an increased susceptibility to ACL and ligament or tendon injuries. However, several methodological issues (e.g., small sample sizes, cohort heterogeneity, and population stratification) are prevalent that limit the reliability and external validity of findings. Conclusion At present, the evidence base supporting the integration of genetic information as a prognostic or diagnosis tool for injury risk in football is weak. Future participation of organisations in international consortia is suggested to combat the current methodological issues and subsequently improve clarity concerning the underlying genetic contribution to injury susceptibility.

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Cite This Study

McAuley et al. (2022) conducted a systematic review in Injury in football players (n=9,642). Genetic variants (polymorphisms) vs. Unexposed/reference genotypes was evaluated on Association of genetic variants with injury. Three genetic polymorphisms (ACTN3 rs1815739, ACAN rs1516797, and VEGFA rs2010963) were associated with increased injury susceptibility in football players across multiple independent cohorts, though overall evidence remains weak.

synapsesocial.com/papers/6a2038e0a3f25510da295304https://doi.org/10.1007/s42978-022-00187-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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