Background: The aim of this work was to present our experience in the use of autologous three-cellular cultured skin substitutes (CSS). This method represents a surgical alternative in the treatment of a variety of pathologies, including burns, ulcers, giant nevi and tumors. Patients and Methods: CSS were obtained from full-thickness skin biopsies collected after enrolment of II patients in a clinical trial protocol approved by the local Institutional Review Boards of the 'La Sapienza' University of Rome and registered in clinicaltrials.gov (ID: NCT00718978). CSS consisted of a structure made by a pluristratified epithelial cell surface with melanocytes (ratio 1120) and a basement of fibroblasts kept together by an esterified hyaluronic acid scaffold that can be surgically manipulated and is gradually reabsorbed after implantation and substituted by the host connectival stroma. Results: At the time of withdrawal of medication, the graft take was comparable to that of autografts, whereas in the follow-lip visits, loss of the epithelial layer varied markedly (from 5 to 70%) while fibroblast cellular component growth prevailed. In one patient, there was complete dermal-epidermal construct survival. Conclusion: Given the anatomical complexity, of the skin, we still have a long way to go before we are able to recreate all the cellular and structural characteristics of this organ. Results are, however, gradually improving, as is demonstrated by a successful graft, which was histologically shown to have a three-dimensional structure that maintained its conformation in vivo (epithelium, basement membrane, dermis, subcutis) in one patient. The take of melanocytes improved the final esthetic outcome.

Clinical Application of Autologous Three-cellular Cultured Skin Substitutes Based on Esterified Hyaluronic Acid Scaffold: Our Experience / Scuderi, Nicolo'; Anniboletti, Tommaso; Carlesimo, Bruno; Onesti, Maria Giuseppina. - In: IN VIVO. - ISSN 0258-851X. - 23:6(2009), pp. 991-1003.

Clinical Application of Autologous Three-cellular Cultured Skin Substitutes Based on Esterified Hyaluronic Acid Scaffold: Our Experience

SCUDERI, Nicolo';
2009-01-01

Abstract

Background: The aim of this work was to present our experience in the use of autologous three-cellular cultured skin substitutes (CSS). This method represents a surgical alternative in the treatment of a variety of pathologies, including burns, ulcers, giant nevi and tumors. Patients and Methods: CSS were obtained from full-thickness skin biopsies collected after enrolment of II patients in a clinical trial protocol approved by the local Institutional Review Boards of the 'La Sapienza' University of Rome and registered in clinicaltrials.gov (ID: NCT00718978). CSS consisted of a structure made by a pluristratified epithelial cell surface with melanocytes (ratio 1120) and a basement of fibroblasts kept together by an esterified hyaluronic acid scaffold that can be surgically manipulated and is gradually reabsorbed after implantation and substituted by the host connectival stroma. Results: At the time of withdrawal of medication, the graft take was comparable to that of autografts, whereas in the follow-lip visits, loss of the epithelial layer varied markedly (from 5 to 70%) while fibroblast cellular component growth prevailed. In one patient, there was complete dermal-epidermal construct survival. Conclusion: Given the anatomical complexity, of the skin, we still have a long way to go before we are able to recreate all the cellular and structural characteristics of this organ. Results are, however, gradually improving, as is demonstrated by a successful graft, which was histologically shown to have a three-dimensional structure that maintained its conformation in vivo (epithelium, basement membrane, dermis, subcutis) in one patient. The take of melanocytes improved the final esthetic outcome.
2009
autologous
bioengineered
css
culture
fibroblasts
hyaff (r) 11
hyaff® 11
keratinocytes
skin
skin culture
File in questo prodotto:
File Dimensione Formato  
sostituti dermici.pdf

non disponibili

Dimensione 862.7 kB
Formato Adobe PDF
862.7 kB Adobe PDF   Visualizza/Apri   Richiedi una copia
sostituti dermici.pdf

non disponibili

Dimensione 862.7 kB
Formato Adobe PDF
862.7 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14089/2182
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
social impact