Tissue engineering of skin and regenerative medicine for wound care

Author:

Boyce Steven T.12ORCID,Lalley Andrea L.2

Affiliation:

1. Department of Surgery University of Cincinnati P.O. Box 670558 45267-0558 Cincinnati Ohio, USA

2. Research Department Shriners Hospitals for Children Cincinnati Ohio, USA

Abstract

Abstract Engineering of biologic skin substitutes has progressed over time from individual applications of skin cells, or biopolymer scaffolds, to combinations of cells and scaffolds for treatment, healing, and closure of acute and chronic skin wounds. Skin substitutes may be categorized into three groups: acellular scaffolds, temporary substitutes containing allogeneic skin cells, and permanent substitutes containing autologous skin cells. Combined use of acellular dermal substitutes with permanent skin substitutes containing autologous cells has been shown to provide definitive wound closure in burns involving greater than 90% of the total body surface area. These advances have contributed to reduced morbidity and mortality from both acute and chronic wounds but, to date, have failed to replace all of the structures and functions of the skin. Among the remaining deficiencies in cellular or biologic skin substitutes are hypopigmentation, absence of stable vascular and lymphatic networks, absence of hair follicles, sebaceous and sweat glands, and incomplete innervation. Correction of these deficiencies depends on regulation of biologic pathways of embryonic and fetal development to restore the full anatomy and physiology of uninjured skin. Elucidation and integration of developmental biology into future models of biologic skin substitutes promises to restore complete anatomy and physiology, and further reduce morbidity from skin wounds and scar. This article offers a review of recent advances in skin cell thrapies and discusses the future prospects in cutaneous regeneration.

Funder

Shriners Hospitals for Children

U.S. Department of Defense

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Critical Care and Intensive Care Medicine,Dermatology,Biomedical Engineering,Emergency Medicine,Immunology and Allergy,Surgery

Reference146 articles.

1. The P50 research center in perioperative sciences: how the investment by the National Institute of General Medical Sciences in Team Science has reduced post-burn mortality;Finnerty;J Trauma Acute Care Surg,2017

2. A two-stage technique for excision and grafting of burn wounds;Warden;J Trauma,1982

3. Characterisation of the cell suspension harvested from the dermal epidermal junction using a ReCell(R) kit;Wood;Burns,2012

4. Growth of human epidermal cells into multiple epithelia suitable for grafting;Green;Proc Natl Acad Sci U S A,1979

5. Biologic attachment, growth, and differentiation of cultured human epidermal keratinocytes on a graftable collagen and chondroitin-6-sulfate substrate;Boyce;Surgery,1988

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