Regeneration of Biomechanically Functional Tendon Tissue Following Injection of Uncultured, Autologous, Adipose-Derived Regenerative Cells into Partial Achilles Tendon Defects in Rabbits.

将未培养的自体脂肪来源再生细胞注射到兔子的部分跟腱缺损处后,可再生具有生物力学功能的肌腱组织

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作者:Schmitz Christoph, Alt Christopher, Wuerfel Tobias, Milz Stefan, Dinzey Jacqueline, Hill Ashley, Sikes Katie J, Burton Lindsey H, Easley Jeremiah, Stewart Holly L, Puttlitz Christian M, Gadomski Benjamin C, Labus Kevin M, Pearce David A, Maffulli Nicola, Alt Eckhard U
Current treatment strategies for partial tendon tears often lack the capacity to promote true tissue regeneration and improve long-term clinical outcomes. This study tested the hypothesis that treatment of a partial defect in the rabbit common calcaneus tendon (CCT) with uncultured, unmodified, autologous, adipose-derived regenerative cells (UA-ADRCs) enables regenerative healing without scar formation. A full-thickness, 3 mm defect was produced in the midsubstance of the right gastrocnemius tendon, a component of the CCT, in adult female New Zealand white rabbits. Animals received either an injection of 28.3 × 10(6) UA-ADRCs in 0.5 mL Ringer's lactated solution (RLS) or saline, or RLS or saline alone as sham treatment. Tendons were analyzed 4 or 12 weeks post-treatment using histology, immunohistochemistry and non-destructive biomechanical testing. UA-ADRC-treated tendons showed newly formed connective tissue consistent with tendon regeneration, whereas sham-treated tendons developed scar tissue. Biomechanical testing showed significantly higher percent relaxation in UA-ADRC-treated tendons compared to sham controls (p < 0.05), indicating greater viscoelasticity characteristic of healthy or well-integrated tissue. Together, these findings suggest that UA-ADRC therapy may provide a regenerative, structure-modifying treatment for partial tendon tears.

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