Marta Clerici m.clerici@keele.ac.uk
Endotenon-Derived Type II Tendon Stem Cells Have Enhanced Proliferative and Tenogenic Potential
Clerici, Marta; Citro, Vera; Byrne, Amy L; P. Dale, Tina; Boccaccini, Aldo R; Della Porta, Giovanna; Maffulli, Nicola; Forsyth, Nicholas R
Authors
Vera Citro
Amy Byrne a.byrne1@keele.ac.uk
Tina Dale t.p.dale@keele.ac.uk
Aldo R Boccaccini
Giovanna Della Porta
Nicola Maffulli
Nicholas R Forsyth
Contributors
Amy Byrne a.byrne1@keele.ac.uk
Researcher
Abstract
Tendon injuries caused by overuse or age-related deterioration are frequent. Incomplete knowledge of somatic tendon cell biology and their progenitors has hindered interventions for the effective repair of injured tendons. Here, we sought to compare and contrast distinct tendon-derived cell populations: type I and II tendon stem cells (TSCs) and tenocytes (TNCs). Porcine type I and II TSCs were isolated via the enzymatic digestion of distinct membranes (paratenon and endotenon, respectively), while tenocytes were isolated through an explant method. Resultant cell populations were characterized by morphology, differentiation, molecular, flow cytometry, and immunofluorescence analysis. Cells were isolated, cultured, and evaluated in two alternate oxygen concentrations (physiological (2%) and air (21%)) to determine the role of oxygen in cell biology determination within this relatively avascular tissue. The different cell populations demonstrated distinct proliferative potential, morphology, and transcript levels (both for tenogenic and stem cell markers). In contrast, all tendon-derived cell populations displayed multipotent differentiation potential and immunophenotypes (positive for CD90 and CD44). Type II TSCs emerged as the most promising tendon-derived cell population for expansion, given their enhanced proliferative potential, multipotency, and maintenance of a tenogenic profile at early and late passage. Moreover, in all cases, physoxia promoted the enhanced proliferation and maintenance of a tenogenic profile. These observations help shed light on the biological mechanisms of tendon cells, with the potential to aid in the development of novel therapeutic approaches for tendon disorders.
Citation
Clerici, M., Citro, V., Byrne, A. L., P. Dale, T., Boccaccini, A. R., Della Porta, G., …Forsyth, N. R. (2023). Endotenon-Derived Type II Tendon Stem Cells Have Enhanced Proliferative and Tenogenic Potential. International Journal of Molecular Sciences, 24(20), Article 15107. https://doi.org/10.3390/ijms242015107
Journal Article Type | Article |
---|---|
Acceptance Date | Oct 5, 2023 |
Online Publication Date | Oct 12, 2023 |
Publication Date | Oct 12, 2023 |
Deposit Date | Oct 19, 2023 |
Journal | International Journal of Molecular Sciences |
Print ISSN | 1661-6596 |
Publisher | MDPI |
Peer Reviewed | Peer Reviewed |
Volume | 24 |
Issue | 20 |
Article Number | 15107 |
DOI | https://doi.org/10.3390/ijms242015107 |
Keywords | Inorganic Chemistry, Organic Chemistry, Physical and Theoretical Chemistry, Computer Science Applications, Spectroscopy, Molecular Biology, General Medicine, Catalysis |
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