The mutable collagenous tissue (MCT) of echinoderms possesses biological peculiarities that facilitate native collagen extraction and employment for biomedical applications such as regenerative purposes for the treatment of skin wounds. Strategies for skin regeneration have been developed and dermal substitutes have been used to cover the lesion to facilitate cell proliferation, although very little is known about the application of novel matrix obtained from marine collagen. From food waste we isolated eco-friendly collagen, naturally enriched with glycosaminoglycans, to produce an innovative marine-derived biomaterial assembled as a novel bi-layered skin substitute (Marine Collagen Dermal Template or MCDT). The present work carried out a preliminary experimental in vivo comparative analysis between the MCDT and Integra, one of the most widely used dermal templates for wound management, in a rat model of full-thickness skin wounds. Clinical, histological, and molecular evaluations showed that the MCDT might be a valuable tool in promoting and supporting skin wound healing: it is biocompatible, as no adverse reactions were observed, along with stimulating angiogenesis and the deposition of mature collagen. Therefore, the two dermal templates used in this study displayed similar biocompatibility and outcome with focus on full-thickness skin wounds, although a peculiar cellular behavior involving the angiogenesis process was observed for the MCDT.

Mutable Collagenous Tissue Isolated from Echinoderms Leads to the Production of a Dermal Template That Is Biocompatible and Effective for Wound Healing in Rats / A. Carolo, L. Melotti, G. Zivelonghi, R. Sacchetto, E.E. Akyürek, T. Martinello, A. Venerando, I. Iacopetti, M. Sugni, G. Martinelli, M. Roncoroni, S. Marzorati, S. Barbon, M. Contran, D. Incendi, F. Perozzo, A. Porzionato, V. Vindigni, M. Patruno. - In: MARINE DRUGS. - ISSN 1660-3397. - 21:10(2023), pp. 506.1-506.14. [10.3390/md21100506]

Mutable Collagenous Tissue Isolated from Echinoderms Leads to the Production of a Dermal Template That Is Biocompatible and Effective for Wound Healing in Rats

M. Sugni;G. Martinelli;M. Roncoroni;S. Marzorati;
2023

Abstract

The mutable collagenous tissue (MCT) of echinoderms possesses biological peculiarities that facilitate native collagen extraction and employment for biomedical applications such as regenerative purposes for the treatment of skin wounds. Strategies for skin regeneration have been developed and dermal substitutes have been used to cover the lesion to facilitate cell proliferation, although very little is known about the application of novel matrix obtained from marine collagen. From food waste we isolated eco-friendly collagen, naturally enriched with glycosaminoglycans, to produce an innovative marine-derived biomaterial assembled as a novel bi-layered skin substitute (Marine Collagen Dermal Template or MCDT). The present work carried out a preliminary experimental in vivo comparative analysis between the MCDT and Integra, one of the most widely used dermal templates for wound management, in a rat model of full-thickness skin wounds. Clinical, histological, and molecular evaluations showed that the MCDT might be a valuable tool in promoting and supporting skin wound healing: it is biocompatible, as no adverse reactions were observed, along with stimulating angiogenesis and the deposition of mature collagen. Therefore, the two dermal templates used in this study displayed similar biocompatibility and outcome with focus on full-thickness skin wounds, although a peculiar cellular behavior involving the angiogenesis process was observed for the MCDT.
wound healing; marine collagen; mutable collagenous tissue; circular economy; blue biotechnologies; skin regeneration; biomaterial; sea urchin; marine food waste; zero-waste approach
Settore CHIM/07 - Fondamenti Chimici delle Tecnologie
Settore BIO/05 - Zoologia
   Byproduct Recycling: Innovative TEchnology from the Sea (BRITEs)
   BRITEs
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017FNZPNN_002

   Chain for Innovative ReCycling: sea Urchin food by-products for zero waste-based muLtiple Applications (CIRCULAr)
   CIRCULAr
   FONDAZIONE CARIPLO
   2019-2169
2023
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1004449
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