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Auricular Tissue Engineering Using Osteogenic Differentiation of Adipose Stem Cells with Small Intestine Submucosa.

作者信息

Lin Chih-Hsun, Yang I-Chen, Tsai Chi-Han, Fang Hsu-Wei, Ma Hsu

机构信息

Taipei, Taiwan.

From the Division of Plastic Surgery, Taipei Veterans General Hospital; the Department of Surgery, School of Medicine, National Yang-Ming University; and the Department of Chemical Engineering and Biotechnology, National Taipei University of Technology.

出版信息

Plast Reconstr Surg. 2017 Aug;140(2):297-305. doi: 10.1097/PRS.0000000000003522.

DOI:10.1097/PRS.0000000000003522
PMID:28746277
Abstract

BACKGROUND

Ear reconstruction remains a challenge for plastic surgeons. A tissue-engineering approach could provide another route for obtaining shape maintenance in neoauricular tissue.

METHODS

The authors designed a novel tissue-engineering auricular construct by culturing human adipose stem cells, which differentiated into osteocytes but not chondrocytes, in small intestine submucosa scaffolds. The authors evaluated cell growth potential and mechanical properties. An ear-shaped construct was created in vitro and then implanted in the backs of nude mice. The histology, cellularity, neovascularization, mechanical properties, and ear shape maintenance were investigated.

RESULTS

In vitro, human adipose stem cells could be successfully seeded in the small intestine submucosa and differentiated toward osteogenesis. The ear-shaped human adipose stem cell/small intestine submucosa construct could maintain its shape in vivo up to 1 year. Alizarin Red S staining confirmed osteogenic differentiation. CD31 stain showed prominent angiogenesis in the human adipose stem cell/small intestine submucosa construct at 6 months and persistence up to 1 year. h-MHC stain revealed the maintenance of cellularity at 6 months and persistence up to 1 year. The mechanical properties were similar to those of native ear cartilage.

CONCLUSION

The authors' study found that the combination of human adipose stem cells and small intestine submucosa could provide a more durable ear-shaped construct in vivo. The mechanical properties, shape, and cellularity were maintained in the constructs for up to 12 months.

CLINICAL QUESTION/LEVEL OF EVIDENCE: Therapeutic, V.

摘要

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