Literature DB >> 25102552

Chimeric autologous/allogeneic constructs for skin regeneration.

Cathy Ann Rasmussen1, Joshua Tam2, Barry M Steiglitz1, Rebecca L Bauer1, Noel R Peters1, Ying Wang2, R Rox Anderson2, B Lynn Allen-Hoffmann1.   

Abstract

The ideal treatment for severe cutaneous injuries would eliminate the need for autografts and promote fully functional, aesthetically pleasing autologous skin regeneration. NIKS progenitor cell-based skin tissues have been developed to promote healing by providing barrier function and delivering wound healing factors. Independently, a device has recently been created to "copy" skin by harvesting full-thickness microscopic tissue columns (MTCs) in lieu of autografts traditionally harvested as sheets. We evaluated the feasibility of combining these two technologies by embedding MTCs in NIKS-based skin tissues to generate chimeric autologous/allogeneic constructs. Chimeric constructs have the potential to provide immediate wound coverage, eliminate painful donor site wounds, and promote restoration of a pigmented skin tissue possessing hair follicles, sweat glands, and sebaceous glands. After MTC insertion, chimeric constructs and controls were reintroduced into air-interface culture and maintained in vitro for several weeks. Tissue viability, proliferative capacity, and morphology were evaluated after long-term culture. Our results confirmed successful MTC insertion and integration, and demonstrated the feasibility of generating chimeric autologous/allogeneic constructs that preserved the viability, proliferative capacity, and structure of autologous pigmented skin. These feasibility studies established the proof-of-principle necessary to further develop chimeric autologous/allogeneic constructs for the treatment of complex skin defects. Reprint &
Copyright © 2014 Association of Military Surgeons of the U.S.

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Year:  2014        PMID: 25102552     DOI: 10.7205/MILMED-D-13-00480

Source DB:  PubMed          Journal:  Mil Med        ISSN: 0026-4075            Impact factor:   1.437


  2 in total

1.  Apparatus for Harvesting Tissue Microcolumns.

Authors:  Joshua Tam; William Farinelli; Walfre Franco; R Rox Anderson
Journal:  J Vis Exp       Date:  2018-10-25       Impact factor: 1.355

2.  Reconstitution of full-thickness skin by microcolumn grafting.

Authors:  Joshua Tam; Ying Wang; Linh N Vuong; Jeremy M Fisher; William A Farinelli; R Rox Anderson
Journal:  J Tissue Eng Regen Med       Date:  2016-06-14       Impact factor: 3.963

  2 in total

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