Supercritical Carbon Dioxide Decellularization of Porcine Nerve Matrix for Regenerative Medicine

去细胞化 组织工程 糖胺聚糖 细胞外基质 生物医学工程 化学 马森三色染色 解剖 病理 染色 医学 生物化学
作者
Linh Thi Thuy Le,Ngoc Chien Pham,Tung X. Trinh,Ngan Giang Nguyen,Nguyen Van Long,Sun‐Young Nam,Chan Yeong Heo
出处
期刊:Tissue Engineering Part A [Mary Ann Liebert, Inc.]
卷期号:30 (15-16): 447-459 被引量:5
标识
DOI:10.1089/ten.tea.2023.0228
摘要

Tissue engineering scaffolds are often made from the decellularization of tissues. The decellularization of tissues caused by prolonged contact with aqueous detergents might harm the microstructure and leave cytotoxic residues. In this research, we developed a new technique to use supercritical carbon dioxide (Sc-CO 2 )-based decellularization for porcine nerve tissue. The effect of decellularization was analyzed by histological examination, including Hematoxylin and Eosin, Masson's Trichrome staining, and 4′,6-diamidino-2-phenylindole staining. Moreover, biochemical analysis of the decellularized tissues was also performed by measuring DNA content, amount of collagen, and glycosaminoglycans (GAGs) after decellularization. The results showed that the tissue structure was preserved, cells were removed, and the essential components of extracellular matrix, such as collagen fibers, elastin fibers, and GAG fibers, remained after decellularization. In addition, the DNA content was decreased compared with native tissue, and the concentration of collagen and GAGs in the decellularized nerve tissue was the same as in native tissue. The in vivo experiment in the rat model showed that after 6 months of decellularized nerve implantation, the sciatic function index was confirmed to recover in decellularized nerve. Morphological analysis displayed a range of infiltrated cells in the decellularized nerve, similar to that in native tissue, and the number of Schwann cells that play essential for motor function and sensory in the decellularized nerve was confirmed. These findings indicate that tissue decellularization using Sc-CO 2 has been successfully used in tissue engineering.
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