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Decellularized extracellular matrix derived from human adipose tissue as a potential scaffold for allograft tissue engineering

Authors
Choi, Ji SukKim, Beob SooKim, Jun YoungKim, Jae DongChoi, Young ChanYang, Hyun-JinPark, KinamLee, Hee YoungCho, Yong Woo
Issue Date
Jun-2011
Publisher
WILEY-BLACKWELL
Keywords
extracellular matrix; scaffold; tissue engineering; adipose tissue; allograft
Citation
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, v.97A, no.3, pp 292 - 299
Pages
8
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A
Volume
97A
Number
3
Start Page
292
End Page
299
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/37411
DOI
10.1002/jbm.a.33056
ISSN
1549-3296
1552-4965
Abstract
Decellularized tissues composed of extracellular matrix (ECM) have been clinically used to support the regeneration of various human tissues and organs. Most decellularized tissues so far have been derived from animals or cadavers. Therefore, despite the many advantages of decellularized tissue, there are concerns about the potential for immunogenicity and the possible presence of infectious agents. Herein, we present a biomaterial composed of ECM derived from human adipose tissue, the most prevalent, expendable, and safely harvested tissue in the human body. The ECM was extracted by successive physical, chemical, and enzymatic treatments of human adipose tissue isolated by liposuction. Cellular components including nucleic acids were effectively removed without significant disruption of the morphology or structure of the ECM. Major ECM components were quantified, including acid/pepsin-soluble collagen, sulfated glycosaminoglycan (GAG), and soluble elastin. In an in vivo experiment using mice, the decellularized ECM graft exhibited good compatibility to surrounding tissues. Overall results suggest that the decellularized ECM containing biological and chemical cues of native human ECM could be an ideal scaffold material not only for autologous but also for allograft tissue engineering. (C) 2011 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 97A: 292-299, 2011.
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ERICA 공학대학 (ERICA 배터리소재화학공학과)
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