Affiliation:
1. The University of British Columbia
2. University of Delaware
Abstract
Abstract
Objectives: Mechanical loading is crucial for tendon matrix homeostasis. Under-stimulation of tendon tissue promotes matrix degradation and ultimately tendon failure. In this study, we examined the expression of tendon matrix molecules and matrix-degrading enzymes (matrix metalloproteinases) in stress-deprived tail tendons and compared to tendons that were mechanically loaded by a simple restraining method.
Data description: Isolated mouse tail fascicles were either floated or restrained by magnets in cell culture media for 24 hours. The gene expression of tendon matrix molecules and matrix metalloproteinases in the tendon fascicles of mouse tails were examined by real-time RT-PCR. Stress deprivation of tail tendons increase Mmp3 mRNA levels. Restraining tendons represses these increases in MMP3. The gene expression response to restraining was specific to Mmp3 at 24 hours as we did not observe mRNA level changes in other matrix related genes that we examined (Col1, Col3, Tnc, Acan, and Mmp13). To elucidate, the mechansims that may regulate load transmission in tendon tissue, we examined filamentous (F-)actin staining and nuclear morphology. As compared to stress deprived tendons, restrained tendons had greater staining for F-actin. The nuclei of restrained tendons are smaller and more elongated. These results indicate that mechanical loading regulates specific gene expression potentially through F-actin regulation of nuclear morphology. A further understanding on the mechanisms involved in regulating Mmp3 gene expression may lead to new strategies to prevent tendon degeneration.
Publisher
Research Square Platform LLC
Reference39 articles.
1. The Role of Mechanical Loading in Tendon Development, Maintenance, Injury, and Repair;Galloway MT;J Bone Joint Surg Am,2013
2. Tendon Basic Science: Development, Repair, Regeneration, and Healing;Andarawis-Puri N;J Orthop Res,2015
3. From mechanical loading to collagen synthesis, structural changes and function in human tendon;Kjaer M;Scand J Med Sci Sports,2009
4. Tendon overload results in alterations in cell shape and increased markers of inflammation and matrix degradation;Thorpe CT;Scand J Med Sci Sports,2015
5. The pathogenesis of tendinopathy: balancing the response to loading;Magnusson SP;Nat Rev Rheumatol,2010