The LG/J murine strain exhibits near-normal tendon biomechanical properties following a full-length central patellar tendon defect

LG/J 小鼠菌株在出现全长中央髌腱缺损后表现出接近正常的肌腱生物力学特性

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作者:Jessica R Arble, Andrea L Lalley, Nathaniel A Dyment, Pujan Joshi, Dong-Guk Shin, Cynthia Gooch, Brian Grawe, David Rowe, Jason T Shearn

Conclusions

The LG/J strain returns to normal structural properties by 8 weeks, with steadily increasing properties at each time point. Future work will characterize the cell populations responding to injury and investigate the role of the differentially expressed transcription factors during healing.

Methods

A full-length, central PT defect was created in 16-20 week old MRL/MpJ, LG/J, and C57BL/6 murine strains. Mechanical properties were assessed at 2, 5, and 8 weeks post surgery. Transcriptomic expression was assessed at 3, 7, and 14 days following injury using a novel clustering software program to evaluate differential expression of transcription factors.

Results

Average LG/J structural properties improved to 96.7% and 97.2% of native LG/J PT stiffness and ultimate load by 8 weeks post surgery, respectively. We found the LG/J responded by increasing expression of transcription factors implicated in the inflammatory response and collagen fibril organization. Conclusions: The LG/J strain returns to normal structural properties by 8 weeks, with steadily increasing properties at each time point. Future work will characterize the cell populations responding to injury and investigate the role of the differentially expressed transcription factors during healing.

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