Silvia Mattia
University of Turin
15 Papers
56 Citations
Silvia Mattia is an academic researcher from University of Turin. The author has contributed to research in topics: Cartilage & Population. The author has an hindex of 8, co-authored 15 publications.
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Papers
The Degree of Chondral Fragmentation Affects Extracellular Matrix Production in Cartilage Autograft Implantation: An In Vitro Study.
Davide Edoardo Bonasia,Antongiulio Marmotti,Silvia Mattia,Aurelio Cosentino,Simone Spolaore,Giorgio Governale,Filippo Castoldi,Roberto Rossi +7 more
TL;DR: It is concluded that human cartilage fragmentation significantly affects ECM production in vitro and mincing the cartilage into small pieces when performing thecartilage fragment autograft implantation technique in order to increaseECM production.
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Pulsed Electromagnetic Fields Improve Tenogenic Commitment of Umbilical Cord-Derived Mesenchymal Stem Cells: A Potential Strategy for Tendon Repair-An In Vitro Study.
Antonio Marmotti,Giuseppe M. Peretti,Silvia Mattia,Laura Mangiavini,Laura de Girolamo,Marco Viganò,Stefania Setti,Davide Edoardo Bonasia,Davide Blonna,Enrico Bellato,Giovanni Battista Ferrero,Filippo Castoldi +11 more
TL;DR: Exposure to PEMF provides a positive preconditioning biophysical stimulus, which may enhance UC-MSC tenogenic potential, and is related to the greatest expression of tenogenic markers.
Autologous cartilage fragments in a composite scaffold for one stage osteochondral repair in a goat model.
Antonio Marmotti,Matteo Bruzzone,Davide Edoardo Bonasia,Filippo Castoldi,Mitzy Mauthe von Degerfeld,Cristina Bignardi,Silvia Mattia,Alessio Maiello,Roberto Rossi,Giuseppe M. Peretti +9 more
TL;DR: In vitro, chondrocytes from cartilage fragments migrated to the scaffold and, at 2 months, matrix positive for collagen type II was observed in the constructs, and in vivo, morphological and histological assessment demonstrated that cartilage fragment-loaded scaffolds led to the formation of functional hyaline-like repair tissue.
Bone marrow derived stem cells in joint and bone diseases: a concise review
Antonio Marmotti,Laura de Girolamo,Davide Edoardo Bonasia,Matteo Bruzzone,Silvia Mattia,Roberto Rossi,Angela Montaruli,Federico Dettoni,Filippo Castoldi,Giuseppe M. Peretti +9 more
TL;DR: The concept of stem cells and their characterization in terms of site of residence, differentiation potential and therapeutic prospective are reviewed, analysing both the clinical outcomes but also the basic research background, which has justified their use for the treatment of bone, cartilage and meniscus tissues.
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•Journal Article
Minced umbilical cord fragments as a source of cells for orthopaedic tissue engineering: an in vitro study.
Antonio Marmotti,Silvia Mattia,Matteo Bruzzone,Stefano Buttiglieri,Alessandra Risso,Davide Edoardo Bonasia,Davide Blonna,Filippo Castoldi,Roberto Rossi,Cristina Zanini,Elisabetta Ercole,E. Defabiani,Corrado Tarella,Giuseppe M. Peretti +13 more
TL;DR: The results suggest that simply collecting UC-MSCs at P1 from minced umbilical cord fragments allows to achieve a valuable population of cells suitable for orthopaedic tissue engineering.
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