In every biological tissue, morphological and topological properties strongly affect its mechanical features and behaviour, so that ultrastructure, composition and mechanical parameters are intimately connected. Overall, it is their correct interplay that guarantees the tissue functionality. The development of experimental methods able to correlate these properties would open new opportunities both in the biological and the biomedical fields. Here, we report a correlative study intended to map supramolecular morphology, biochemical composition and viscoelastic parameters of collagen by all-optical microscopies. In particular, using human corneal tissue as a benchmark, we correlate Second-Harmonic Generation maps with mechanical and biochemical imaging obtained by Brillouin and Raman microspectroscopy. The study highlights how subtle variations in supramolecular organization originate the peculiar mechanical behavior of different subtypes of corneal lamellae. The presented methodology paves the way to the non-invasive assessment of tissue morphomechanics in biological as well as synthetic materials.

Morpho-mechanics of human collagen superstructures revealed by all-optical correlative micro-spectroscopies

Mercatelli Raffaella;Mattana Sara;Capozzoli Laura;Ratto Fulvio;Rossi Francesca;Pini Roberto;Pavone Francesco Saverio;Caponi Silvia;Cicchi Riccardo
2019

Abstract

In every biological tissue, morphological and topological properties strongly affect its mechanical features and behaviour, so that ultrastructure, composition and mechanical parameters are intimately connected. Overall, it is their correct interplay that guarantees the tissue functionality. The development of experimental methods able to correlate these properties would open new opportunities both in the biological and the biomedical fields. Here, we report a correlative study intended to map supramolecular morphology, biochemical composition and viscoelastic parameters of collagen by all-optical microscopies. In particular, using human corneal tissue as a benchmark, we correlate Second-Harmonic Generation maps with mechanical and biochemical imaging obtained by Brillouin and Raman microspectroscopy. The study highlights how subtle variations in supramolecular organization originate the peculiar mechanical behavior of different subtypes of corneal lamellae. The presented methodology paves the way to the non-invasive assessment of tissue morphomechanics in biological as well as synthetic materials.
2019
Istituto di Chimica dei Composti OrganoMetallici - ICCOM -
Istituto di Fisica Applicata - IFAC
Istituto Nazionale di Ottica - INO
Istituto Officina dei Materiali - IOM -
Inglese
2
117
117
10
Sì, ma tipo non specificato
SHG
collagen
cornea
micro-spectrosopy
The research leading to these results has received funding from Tuscany Region and EU FP7 BiophotonicsPlus Project 'LITE' (Laser Imaging of The Eye), from the Italian Ministry of Health (GR-2011-02349626), from the Italian Ministry for Education, University and Research (Flagship Project NANOMAX), from EU Horizon 2020 research and innovation programme (grant H2020-ICT-2016-1 732111 PICCOLO, grant 15HLT01-MetVBadBugs-Call EMPIR 2016, and grant 654148 Laserlab-Europe). The authors wish to thank Alessandro Ruzza from 'Fondazione Banca degli occhi del Veneto-Onlus' for providing corneal tissues and Luca Menabuoni and Alex Malandrini from Nuovo Ospedale S. Stefano, Prato, Italy, for their clinical advice on corneal tissue.
10
info:eu-repo/semantics/article
262
Mercatelli, Raffaella; Mattana, Sara; Capozzoli, Laura; Ratto, Fulvio; Rossi, Francesca; Pini, Roberto; Fioretto, Daniele; Pavone, FRANCESCO SAVERIO; ...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
open
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Descrizione: Morpho-mechanics of human collagen superstructures revealed by all-optical correlative micro-spectroscopies
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/391840
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