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Journal Article

Breathing new life into tissue engineering: exploring cutting-edge vascularization strategies for skin substitutes

M. Zohaib Iqbal; Mahrukh Riaz; Thomas Biedermann; Agnes S. Klar
Angiogenesis · Vol. 27, Issue 4 · pp. 587-621 · 2024

Abstract

Tissue-engineered skin substitutes (TESS) emerged as a new therapeutic option to improve skin transplantation. However, establishing an adequate and rapid vascularization in TESS is a critical factor for their clinical application and successful engraftment in patients. Therefore, several methods have been applied to improve the vascularization of skin substitutes including (i) modifying the structural and physicochemical properties of dermal scaffolds; (ii) activating biological scaffolds with growth factor-releasing systems or gene vectors; and (iii) developing prevascularized skin substitutes by loading scaffolds with capillary-forming cells. This review provides a detailed overview of the most recent and important developments in the vascularization strategies for skin substitutes. On the one hand, we present cell-based approaches using stem cells, microvascular fragments, adipose tissue derived stromal vascular fraction, endothelial cells derived from blood and skin as well as other pro-angiogenic stimulation methods. On the other hand, we discuss how distinct 3D bioprinting techniques and microfluidics, miRNA manipulation, cell sheet engineering and photosynthetic scaffolds like GelMA, can enhance skin vascularization for clinical applications. Finally, we summarize and discuss the challenges and prospects of the currently available vascularization techniques that may serve as a steppingstone to a mainstream application of skin tissue engineering. Graphical abstract

Bibliographic Information

JournalAngiogenesis
PublisherSpringer
Publication Date2024-11-01
Publication Year2024
Volume27
Issue4
Pages587-621
Document TypeJournal Article
eISSN1573-7209
DOI10.1007/s10456-024-09928-6

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10456
Publisher PageOpen Publisher Page
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