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PMID: 20839322 Published · ppublish English

Cycle-dependent matrix remodeling gene expression response in fatigue-loaded rat patellar tendons.

Sun Hui B, Andarawis-Puri Nelly, Li Yonghui, Fung David T, Lee Jonathan Y, Wang Vincent M, Basta-Pljakic Jelena, Leong Daniel J, Sereysky Jedd B, Ros Stephen J, Klug Raymond A, Braman Jonathan, Schaffler Mitch B, Jepsen Karl J, Flatow Evan L

Abstract

Expression profiling of selected matrix remodeling genes was conducted to evaluate differences in molecular response to low-cycle (100) and high-cycle (7,200) sub-failure-fatigue loading of patellar tendons. Using our previously developed in vivo patellar tendon model, tendons were loaded for 100 or 7,200 cycles and expression of selected metalloproteinases (MMPs), tissue inhibitors of metalloproteinases (TIMPs), and collagens were quantified by real-time RT-PCR at 1- and 7-day post-loading. Expression profiles were also obtained from lacerated tendons as an acute injury model. The high-cycle group showed upregulation of TIMP-1, -2, Col3a1, and Col5a1, and downregulation TIMP-4 at both time points, upregulation of MMP-2 at 7-day post-loading and downregulation of MMP-13 and -14 at 1-day post-loading, suggesting overall repair/remodeling. In contrast, the low-cycle loaded group showed upregulation of MMP-2, -3, -13, and Col12a1 at both time points, upregulation of TIMP-1, -2, -3, Col3a1, and integrin β1 and downregulation of integrin α11 at 1-day post-loading and upregulation of Col1a1 at 7-day post-loading, consistent with a hypertrophic (adaptive) pattern. Lacerated tendons showed a typical acute wound response with upregulation of all examined remodeling genes. Differences found in tendon response to high- and low-cycle loading are suggestive of the underlying mechanisms associated with a healthy or damaging response.

Article Info
Journal
Journal of orthopaedic research : official publication of the Orthopaedic Research Society
Abbr.
J Orthop Res
Published
2010-10-07
Indexed
2010-09-14
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
8404726
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