Mechanical and Structural Changes to the Annulus Fibrosus in Response to Sub-Failure Cyclic Loading
Document Type
Article
Publication Date
10-2025
Publisher
Elsevier
Source Publication
Acta Biomaterialia
Source ISSN
1742-7061
Original Item ID
DOI: 10.1016/j.actbio.2025.08.047
Abstract
This study aimed to quantify how repetitive tensile loading alters the mechanical and structural properties of the annulus fibrosus (AF). Mechanical changes were evaluated through a three-step protocol involving pre-damage characterization of dynamic and viscoelastic properties, damage induction using predetermined loading cycles (n=400, 1600, 6400, 12,800) to a specified strain magnitude (11 %, 20 %, 28 %, 44 %), and post-damage characterization of the same properties. Structural changes were assessed by subjecting tissue to damage cycles and staining with hematoxylin and eosin or fluorescing collagen hybridizing peptides (F-CHP). The results showed that damage cycles induced dose-dependent changes in the elastic and viscoelastic responses of the AF, decreasing the tissue’s response nearly 100 % of the pre-damage values. Quasi-static distraction to failure revealed that damage cycles influenced the transition strain magnitude, which ranged from 0.11 to 0.31, but did not alter the tissue’s ultimate properties. Structural analysis demonstrated cleft formation and collagen fiber uncrimping within the matrix, correlating with the magnitude of loading. However, F-CHP staining revealed no significant differences in denatured collagen fibers between damage groups. Overall, increasing damage parameters significantly decreased the dynamic and viscoelastic properties but did not affect the ultimate properties of the AF. Structural changes indicated disruption of elastic fibers within the AF microstructure without evidence of collagen fiber fractures. These findings provide new insights into the mechanics of healthy and damaged AF tissue, offering a foundational dataset for understanding AF degeneration and injury.
Recommended Citation
Seifert, Jack; Frazer, Lance L.; Maiman, Dennis J.; Shah, Alok; Shaffer, Sarah K.; Yoganandan, Narayan; Sheehy, James B.; Bentley, Timothy B.; Nicolella, Daniel P.; and Stemper, Brian D., "Mechanical and Structural Changes to the Annulus Fibrosus in Response to Sub-Failure Cyclic Loading" (2025). Biomedical Engineering Faculty Research and Publications. 753.
https://epublications.marquette.edu/bioengin_fac/753
Comments
Acta Biomaterialia, Vol. 205 (October 2025): 478-490. DOI.