Treatment options for Achilles tendinopathy: a scoping review of preclinical studies

Nathanael Opoku Agyeman-Prempeh1,2,3, Huub Maas2,4, George L Burchell4

  • 1University of Amsterdam, Amsterdam, Netherlands.

Peerj
|January 14, 2025
PubMed
Abstract

Insights

Innovative Achilles tendinopathy (AT) treatments show promise in preclinical studies, improving tendon properties. However, poor study quality and model limitations hinder clinical translation.

Area of Science:

  • Biomedical Engineering
  • Regenerative Medicine
  • Orthopedics

Background:

  • Achilles tendinopathy (AT) presents management challenges due to limited effective treatments and its degenerative nature.
  • Innovative therapies are crucial, with preclinical studies essential for understanding molecular effects and toxicity.
  • A comprehensive, quality-assessed review of basic molecular mechanisms in AT preclinical research is lacking.

Purpose of the Study:

  • To summarize and evaluate in vitro and in vivo animal studies on AT treatments.
  • To assess the impact of these treatments on tendon properties (biomechanical, histological, biochemical).
  • To provide a quality assessment of included animal studies and guide future preclinical research.

Main Methods:

  • Scoping review of studies in PubMed, Embase, Web of Science, and Cochrane Library up to May 4, 2023.
  • Inclusion of studies on chemically or mechanically induced AT models (in vitro and in vivo) reporting relevant outcomes.
  • Data extraction and inductive categorization, with risk-of-bias assessment using the Systematic Review Centre for Laboratory Animal Experimentation tool.

Main Results:

  • 98 studies investigated 65 treatments; 80% reported significant Achilles tendon improvements.
  • Key improvements included enhanced maximum load and stiffness, recovered fiber structure, and reduced inflammation.
  • Collagen I increased, Collagen III decreased, and inflammatory cells reduced post-treatment; however, 65.4%-92.5% of studies had uncertain to high risk of bias.

Conclusions:

  • Promising preclinical outcomes for AT treatments exist, but clinical translation is slow.
  • Poor face validity of animal models, heterogeneous induction methods, and low study quality impede progress.
  • Standardized preclinical models, improved reporting, and minimized bias are essential for successful clinical translation of AT therapies.

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