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Updated: Mar 6, 2026

Effects of Allogeneic Platelet-Rich Plasma PRP on the Healing Process of Sectioned Achilles Tendons of Rats: A Methodological Description
Published on: March 19, 2018
Effect of platelet-rich plasma on rat Achilles tendon healing is related to microbiota
Franciele Dietrich1,2,3, Malin Hammerman1, Parmis Blomgran1
1a Department of Clinical and Experimental Medicine, Orthopedics , Linköping University , Linköping , Sweden.
Abstract:
Background and purpose - In 3 papers in Acta Orthopaedica 10 years ago, we described that platelet-rich plasma (PRP) improves tendon healing in a rat Achilles transection model. Later, we found that microtrauma has similar effects, probably acting via inflammation. This raised the suspicion that the effect ascribed to growth factors within PRP could instead be due to unspecific influences on inflammation. While testing this hypothesis, we noted that the effect seemed to be related to the microbiota. Material and methods - We tried to reproduce our old findings with local injection of PRP 6 h after tendon transection, followed by mechanical testing after 11 days. This failed. After fruitless variations in PRP production protocols, leukocyte concentration, and physical activity, we finally tried rats carrying potentially pathogenic bacteria. In all, 242 rats were used. Results - In 4 consecutive experiments on pathogen-free rats, no effect of PRP on healing was found. In contrast, apparently healthy rats carrying Staphylococcus aureus showed increased strength of the healing tendon after PRP treatment. These rats had lower [corrected] levels of cytotoxic T-cells in their spleens. Interpretation - The failure to reproduce older experiments in clean rats was striking, and the difference in response between these and Staphylococcus-carrying rats suggests that the PRP effect is dependent on the immune status. PRP functions may be more complex than just the release of growth factors. Extrapolation from our previous findings with PRP to the situation in humans therefore becomes even more uncertain.
Insights
Platelet-rich plasma (PRP) did not improve tendon healing in pathogen-free rats. However, PRP enhanced healing in rats with Staphylococcus aureus, suggesting immune status influences PRP efficacy.
Area of Science:
- Orthopedics
- Immunology
- Regenerative Medicine
Background:
- Previous studies suggested platelet-rich plasma (PRP) enhances tendon healing.
- Concerns arose that PRP's effects might be due to inflammation rather than growth factors, potentially linked to microbiota.
Purpose of the Study:
- To investigate the reproducibility of PRP's tendon healing effects.
- To explore the role of microbiota and immune status in PRP efficacy for tendon repair.
Main Methods:
- Attempted to reproduce prior findings using PRP in a rat Achilles transection model.
- Utilized pathogen-free rats and rats colonized with Staphylococcus aureus.
- Assessed tendon healing via mechanical testing and immune cell analysis.
Main Results:
- PRP failed to improve tendon healing in pathogen-free rats.
- PRP significantly increased healing strength in Staphylococcus aureus-colonized rats.
- Staphylococcus aureus-colonized rats treated with PRP exhibited lower cytotoxic T-cell levels.
Conclusions:
- The efficacy of PRP in tendon healing appears dependent on the host's immune status and microbial environment.
- PRP's mechanism of action may be more complex than solely growth factor release.
- Findings raise uncertainty regarding the direct extrapolation of PRP effects from animal models to human clinical applications.

