1 Bioengineering Division, Hacettepe University , Ankara, Turkey .
2 Nanotechnology and Nanomedicine Division, Institute of Science, Hacettepe University , Ankara, Turkey .
Tissue Eng Part C Methods. 2017 Sep;23(9):540-547. doi: 10.1089/ten.TEC.2017.0090. Epub 2017 Aug 17.
Tissue engineering approaches utilize both natural and synthetic materials in the repair and regeneration processes. A naturally sourced material for this purpose is required to be free from any antigenic matter such as cells or cellular components. Decellularization of tissues may be achieved through chemical or physical removal agents. Supercritical carbon dioxide (sc-CO) has been used on the purpose of removing bioburden from tissues and offers an alternative to the traditionally used treatment methods. In addition to many advantages it offers with regard to the successful decellularization of tissues, it is known to have a sterilization effect. This study provides an insight into sc-CO-assisted decellularization trials of corneal and aortic tissues. Results showed that high pressure of the fluid bursts the cells during the treatment and rapid depressurization was found to be effective in the removal of the cells from the tissues. sc-CO decellularization offers significantly reduced treatment times, complete decellularization, and preserved extracellular matrix structure.
组织工程方法在修复和再生过程中同时利用天然和合成材料。为此,需要使用天然来源的材料,使其不含任何抗原物质,如细胞或细胞成分。组织的脱细胞化可以通过化学或物理去除剂来实现。超临界二氧化碳(sc-CO)已被用于从组织中去除生物负荷,并为传统使用的处理方法提供了替代方案。除了在成功脱细胞化组织方面具有许多优势外,它还具有杀菌效果。本研究深入了解了 sc-CO 辅助角膜和主动脉组织脱细胞化的试验。结果表明,流体的高压在处理过程中会使细胞破裂,而快速减压被发现可有效地将细胞从组织中去除。sc-CO 脱细胞化可显著缩短处理时间,实现完全脱细胞化,并保留细胞外基质结构。