Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Characterization of Scar Tissue Biomechanics During Adult Murine Flexor Tendon Healing

View through CrossRef
Tendon injuries are very common and result in significant impairments in mobility and quality of life. During healing, tendons produce a scar at the injury site, characterized by abundant and disorganized extracellular matrix and by permanent deficits in mechanical integrity compared to healthy tendon. Although a significant amount of work has been done to understand the healing process of tendons and to develop potential therapeutics for tendon regeneration, there is still a significant gap in terms of assessing the direct effects of therapeutics on the functional and material quality specifically of the scar tissue, and thus, on the overall tendon healing process. In this study, we focused on characterizing the mechanical properties of only the scar tissue in flexor digitorum longus (FDL) tendons during the proliferative and remodeling healing phases and comparing these properties with the mechanical properties of the composite healing tissue. Our method was sensitive enough to identify significant differences in structural and material properties between the scar and tendon-scar composite tissues. To account for possible inaccuracies due to the small aspect ratio of scar tissue, we also applied inverse finite element analysis (iFEA) to compute mechanical properties based on simulated tests with accurate specimen geometries and boundary conditions. We found that the scar tissue linear tangent moduli calculated from iFEA were not significantly different from those calculated experimentally at all healing timepoints, validating our experimental findings, and suggesting the assumptions in our experimental calculations were accurate. Taken together, this study first demonstrates that due to the presence of uninjured stubs, testing composite healing tendons without isolating the scar tissue overestimates the material properties of the scar itself. Second, our scar isolation method promises to enable more direct assessment of how different treatment regimens (e.g., cellular ablation, biomechanical and/or biochemical stimuli, tissue engineered scaffolds) affect scar tissue function and material quality in multiple different types of tendons.<br>
Title: Characterization of Scar Tissue Biomechanics During Adult Murine Flexor Tendon Healing
Description:
Tendon injuries are very common and result in significant impairments in mobility and quality of life.
During healing, tendons produce a scar at the injury site, characterized by abundant and disorganized extracellular matrix and by permanent deficits in mechanical integrity compared to healthy tendon.
Although a significant amount of work has been done to understand the healing process of tendons and to develop potential therapeutics for tendon regeneration, there is still a significant gap in terms of assessing the direct effects of therapeutics on the functional and material quality specifically of the scar tissue, and thus, on the overall tendon healing process.
In this study, we focused on characterizing the mechanical properties of only the scar tissue in flexor digitorum longus (FDL) tendons during the proliferative and remodeling healing phases and comparing these properties with the mechanical properties of the composite healing tissue.
Our method was sensitive enough to identify significant differences in structural and material properties between the scar and tendon-scar composite tissues.
To account for possible inaccuracies due to the small aspect ratio of scar tissue, we also applied inverse finite element analysis (iFEA) to compute mechanical properties based on simulated tests with accurate specimen geometries and boundary conditions.
We found that the scar tissue linear tangent moduli calculated from iFEA were not significantly different from those calculated experimentally at all healing timepoints, validating our experimental findings, and suggesting the assumptions in our experimental calculations were accurate.
Taken together, this study first demonstrates that due to the presence of uninjured stubs, testing composite healing tendons without isolating the scar tissue overestimates the material properties of the scar itself.
Second, our scar isolation method promises to enable more direct assessment of how different treatment regimens (e.
g.
, cellular ablation, biomechanical and/or biochemical stimuli, tissue engineered scaffolds) affect scar tissue function and material quality in multiple different types of tendons.
<br>.

Related Results

TGF-β3 Regulates Adhesion Formation Through the JNK/c-Jun Pathway During Flexor Tendon Healing
TGF-β3 Regulates Adhesion Formation Through the JNK/c-Jun Pathway During Flexor Tendon Healing
Abstract Background: The injured flexor tendon has poor healing ability, 15 which is easy to cause tendon adhesion. It can affect the recovery of tendon function, which is ...
Two-Stage Flexor Pollicis Longus Tendon Reconstruction Using Pedicled Palmaris Longus Tendon Graft
Two-Stage Flexor Pollicis Longus Tendon Reconstruction Using Pedicled Palmaris Longus Tendon Graft
Background. Free tendon grafts are frequently used in zone 2 flexor pollicis longus tendon reconstructions. However, pedicled tendon grafts have less risk of adhesion than free ten...
Peroneus Longus Tendon Harvesting for Anterior Cruciate Ligament Reconstruction
Peroneus Longus Tendon Harvesting for Anterior Cruciate Ligament Reconstruction
Background: There remains controversy regarding the ideal graft choice for anterior cruciate ligament (ACL) reconstruction ...
Neglected rupture of the quadriceps tendon after removal of a bracing of the patella: Case report
Neglected rupture of the quadriceps tendon after removal of a bracing of the patella: Case report
Introduction: Ruptures of the quadriceps tendon are rare, disabling injuries compromising the knee extension mechanism. Tendon plasty procedures are proposed with the aim of obtain...
Prevalensi Absensi Palmaris Longus Tendon Suku Lampung Pada Civitas Akademika Universitas Malahayati Bandar Lampung
Prevalensi Absensi Palmaris Longus Tendon Suku Lampung Pada Civitas Akademika Universitas Malahayati Bandar Lampung
ABSTRAK Latar Belakang : Perkembangan tendon Palmaris Longus sudah lengkap saat dilahirkan. Tendon Palmaris Longus tidak akan berkembang lagi sesudah itu. tendon Palmaris Longus se...
RUPTURED ACHILLES TENDON, A COMMON INJURY IN ATHLETES
RUPTURED ACHILLES TENDON, A COMMON INJURY IN ATHLETES
Introduction: The Achilles tendon also named calcaneal tendon, can be subjected to tensile loads up to 10 times the body weight. It is located on the posterior aspect of the lower ...
Spontaneous Bilateral Patellar Tendon Rupture in Patient with Ehlers–Danlos Syndrome: A Case Report
Spontaneous Bilateral Patellar Tendon Rupture in Patient with Ehlers–Danlos Syndrome: A Case Report
Introduction: Bilateral spontaneous patellar tendon ruptures are rare, though it is hypothesized to be more common in patients with risk factors such as connective tissue disorders...

Back to Top