Nanofat Improves Vascularization and Tissue Integration of Dermal Substitutes without Affecting Their Biocompatibility.

Détails

ID Serval
serval:BIB_AE9868E84D8C
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Nanofat Improves Vascularization and Tissue Integration of Dermal Substitutes without Affecting Their Biocompatibility.
Périodique
Journal of functional biomaterials
Auteur⸱e⸱s
Bonomi F., Limido E., Weinzierl A., Ampofo E., Harder Y., Menger M.D., Laschke M.W.
ISSN
2079-4983 (Print)
ISSN-L
2079-4983
Statut éditorial
Publié
Date de publication
03/10/2024
Peer-reviewed
Oui
Volume
15
Numéro
10
Langue
anglais
Notes
Publication types: Journal Article
Publication Status: epublish
Résumé
Dermal substitutes require sufficient tissue integration and vascularization to be successfully covered with split-thickness skin grafts. To rapidly achieve this, we provide the proof of principle for a novel vascularization strategy with high translational potential. Nanofat was generated from subcutaneous adipose tissue of green fluorescence protein (GFP) <sup>+</sup> C57BL/6J donor mice and seeded onto small samples (4 mm in diameter) of the clinically approved dermal substitute Integra <sup>®</sup> . These samples and non-seeded controls were then implanted into full-thickness skin defects in the dorsal skinfold chamber of C57BL/6J wild-type mice and analyzed by intravital fluorescence microscopy, histology and immunohistochemistry over a 14-day period. Nanofat-seeded dermal substitutes exhibited an accelerated vascularization, as indicated by a significantly higher functional microvessel density on days 10 and 14 when compared to controls. This was primarily caused by the reassembly of GFP <sup>+</sup> microvascular fragments inside the nanofat into microvascular networks. The improved vascularization promoted integration of the implants into the surrounding host tissue, which finally exhibited an increased formation of a collagen-rich granulation tissue. There were no marked differences in the inflammatory host tissue reaction to nanofat-seeded and control implants. These findings demonstrate that nanofat significantly improves the in vivo performance of dermal substitutes without affecting their biocompatibility.
Mots-clé
Integra®, angiogenesis, dermal substitutes, inflammation, nanofat, skin regeneration, vascularization
Pubmed
Open Access
Oui
Création de la notice
28/10/2024 15:13
Dernière modification de la notice
29/10/2024 7:22
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