Stem Cells and Platelet-Rich Plasma Enhance the Healing Process of Tendinitis in Mice

Author:

Fedato Rosangela Alquieri1ORCID,Francisco Júlio César2ORCID,Sliva Gabriel1,de Noronha Lúcia1,Olandoski Márcia1,Faria Neto Jose Rocha1ORCID,Ferreira Priscila Elias3,Simeoni Rossana Baggio1,Abdelwahid Eltyeb4ORCID,de Carvalho Katherine Athayde Teixeira3,Guarita-Souza Luiz César1ORCID

Affiliation:

1. Experimental Laboratory of Institute of Biological and Health Sciences of Pontifical Catholic University of Paraná (PUCPR), Rua Imaculada Conceição 1155, 80215-901 Curitiba, PR, Brazil

2. Positivo University (UP), Rua Professor Pedro Viriato Parigot de Souza, 5300, 80710-570 Curitiba, PR, Brazil

3. Cell Therapy and Biotechnology in Regenerative Medicine Research Group, Pelé Pequeno Príncipe Institute, Avenida Silva Jardim 1632, 80250-200 Curitiba, PR, Brazil

4. Feinberg School of Medicine, Feinberg Cardiovascular Research Institute, Northwestern University, 303 E. Chicago Ave., Chicago, IL 60611, USA

Abstract

Objective. Achilles tendon pathologies occur frequently and have a significant socioeconomic impact. Currently, there is no evidence on the best treatment for these pathologies. Cell therapy has been studied in several animal models, and encouraging results have been observed with respect to tissue regeneration. This study is aimed at evaluating the functional and histological effects of bone marrow stem cell or platelet-rich plasma implantation compared to eccentric training in the treatment of Achilles tendinopathy in rats.Methods.Fourty-one male Wistar rats received collagenase injections into their bilateral Achilles tendons (collagenase-induced tendinopathy model). The rats were randomly divided into four groups: stem cells (SC), platelet-rich plasma (PRP), stem cells+platelet-rich plasma (SC+PRP), and control (eccentric training (ET)). After 4 weeks, the Achilles tendons were excised and subjected to biomechanical and histological analyses (Sirius red and hematoxylin-eosin staining).Results.Biomechanical assessments revealed no differences among the groups in ultimate tensile strength or yield strength of the tendons (p=0.157), but there were significant differences in the elastic modulus (MPa;p=0.044) and maximum tensile deformation (p=0.005). The PRP group showed the greatest maximum deformation, and the SC group showed the highest Young’s modulus (elasticity) measurement. In histological analysis (hematoxylin-eosin and Sirius red staining), there were no differences among the groups.Conclusion.PRP and SC+PRP yielded better biomechanical results than eccentric training, showing that these treatments offer better tend function outcomes. This theoretical rationale for the belief that cell therapies can serve as viable alternatives to current treatments chronic fibrotic opens the door for opportunities to continue this research.

Funder

Pontificia Universidade Católica do Paraná

Publisher

Hindawi Limited

Subject

Cell Biology,Molecular Biology

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