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New tools for non-invasive exploration of collagen network in cartilaginous tissue-engineered substitute
Author(s) -
Christel Henrionnet,
Dominique Dumas,
Sébastien Hupont,
J.F. Stoltz,
Didier Mainard,
Pierre Gillet,
Astrid Pinzano
Publication year - 2017
Publication title -
bio-medical materials and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.372
H-Index - 53
eISSN - 1878-3619
pISSN - 0959-2989
DOI - 10.3233/bme-171645
Subject(s) - cartilage , biomedical engineering , tissue engineering , materials science , in vivo , computer science , medicine , anatomy , biology , microbiology and biotechnology
In tissue engineering approaches, the quality of substitutes is a key element to determine its ability to treat cartilage defects. However, in clinical practice, the evaluation of tissue-engineered cartilage substitute quality is not possible due to the invasiveness of the standard procedure, which is to date histology. The aim of this work was to validate a new innovative system performed from two-photon excitation laser adapted to an optical macroscope to evaluate at macroscopic scale the collagen network in cartilage tissue-engineered substitutes in confrontation with gold standard histologic techniques or immunohistochemistry to visualize type II collagen. This system permitted to differentiate the quality of collagen network between ITS and TGF-β1 treatments. Multiscale large field imaging combined to multimodality approaches (SHG-TCSPC) at macroscopical scale represent an innovative and non-invasive technique to monitor the quality of collagen network in cartilage tissue-engineered substitutes before in vivo implantation.

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