Matrix metalloproteinase genes (MMP1, MMP10, MMP12) on chromosome 11q22 and the risk of non-contact anterior cruciate ligament ruptures

Artykuł - publikacja recenzowana


Tytuł
Matrix metalloproteinase genes (MMP1, MMP10, MMP12) on chromosome 11q22 and the risk of non-contact anterior cruciate ligament ruptures
Odpowiedzialność
Ewelina Lulińska, Andrea Gibbon, Mariusz Kaczmarczyk, Agnieszka Maciejewska-Skrendo, Krzysztof Ficek, Agata Leońska-Duniec, Michał Wilk, Katarzyna Leźnicka, Monika Michałowska-Sawczyn, Kinga Humińska-Lisowska, Rafał Buryta, Paweł Cięszczyk, Ewelina Maculewicz, Wojciech Czarny, Alison V. September, Marek Sawczuk
Twórcy
Sumy twórców
16 autorów
Punktacja publikacji
Osoba Dysc. Pc k m P U Pu Opis
0000-0002-8368-4852 3.3 100 1 16 100,00 1,0000 100,0000 Art.
0000-0002-7735-7580 Brak deklaracji dyscypliny
Brak ORCID Brak deklaracji dyscypliny
0000-0001-6787-3760 Brak deklaracji dyscypliny
0000-0002-0180-644X Brak deklaracji dyscypliny
0000-0003-4587-2411 Decyzja twórcy
0000-0002-5730-5249 Decyzja twórcy
0000-0003-1747-5929 Brak afiliacji do instytutu US
Gł. język publikacji
Angielski (English)
Data publikacji
2020
Objętość
12 (stron).
Szacowana objętość
0,75 (arkuszy wydawniczych)
Identyfikator DOI
10.3390/genes11070766
Adres URL
https://www.mdpi.com/2073-4425/11/7/766/pdf
Adres URL
https://www.mdpi.com/2073-4425/11/7 2020-09-21
Uwaga ogólna
Published: 8 July 2020.
Uwaga ogólna
This article belongs to the Special Issue Genetic Influence in Exercise Performance.
Uwaga ogólna
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Uwaga ogólna
The results of the study were presented during 2nd International Symposium of Polish Muscles, Ligaments and Tendons Society, 12-14 December 2019, Łódź, Poland.
Finansowanie
The Polish Ministry of Science and Higher Education, 1663/B/P01/2008/34
Finansowanie
Polish National Science Centre, 2012/07/B/NZ7/01155
Cechy publikacji
  • Oryginalny artykuł naukowy
  • OpenAccess
Dane OpenAccess
CC_BY - Licencja,
FINAL_PUBLISHED - Wersja tekstu,
OPEN_REPOSITORY - Sposób publikacji,
AT_PUBLICATION - Moment udostępnienia,
2020-07-08 - Data udostępnienia
Słowa kluczowe
Czasopismo
Genes
( ISSN 2073-4425 )
Kraj wydania: Szwajcaria (Schweiz)
Zeszyt: tom 11 zeszyt 7
Nr: 766
Pobierz opis jako:
BibTeX, RIS
Data zgłoszenia do bazy Publi
2020-09-15
PBN
Wyświetl
WorkId
25114

Abstrakt

en

Background: Sequence variants within the matrix metalloproteinases genes remain plausible biological candidates for further investigation of anterior cruciate ligament (ACL) rupture risk. The aim of the present study was to establish whether variants within the MMP1 (rs1799750, ->G), MMP10 (rs486055, C > T) and MMP12 (rs2276109, T > C) genes were associated with non-contact ACL rupture in a Polish cohort. Methods: The unrelated, self-reported Polish Caucasian participants consisted of 228 (157 male) individuals with primary non-contact ACL rupture and 202 (117 male) participants without any history of ACL rupture. All samples were genotyped in duplicate using the Applied Biosystems TaqMan® methodology. The statistical analyses were involved in determining the distribution of genotype and allele frequencies for the investigated polymorphisms between the diagnostic groups. Furthermore, pseudo-haplotypes were constructed to assess possible gene–gene interactions. Results: All genotype frequencies in the ACL rupture and control groups conformed to Hardy Weinberg Equilibrium expectations. None of the polymorphisms were associated with risk of non-contact ACL rupture under the codominant, dominant, recessive and over-dominant genetic models. Likewise, no genotype–genotype combinations inferred as “haplotypes” as a proxy of gene–gene interactions were associated with the risk of non-contact ACL ruptures. Conclusions: Despite the fact that the current study did not support existing evidence suggesting that variants within the MMP1, MMP10, and MMP12 genes influence non-contact ACL rupture risk, future work should include high-throughput sequencing technologies to identify potential targeted polymorphisms to fully characterize the 11q22 region with susceptibility to non-contact ACL rupture susceptibility in a Polish cohort.

Lista publikacji