Huang Ching-Cheng, Chen Ying-Ju, Liu Hsia-Wei
Department of Biomedical Engineering, Ming-Chuan University, Taoyuan City 32033, Taiwan.
Department Life Science, Fu Jen Catholic University, New Taipei City 242062, Taiwan.
Polymers (Basel). 2021 Dec 10;13(24):4326. doi: 10.3390/polym13244326.
Nano-bioscaffolds obtained from decellularized tissues have been employed in several medical applications. Nano-bioscaffolds could provide structural support for cell attachment and a suitable environment with sufficient porosity for cell growth and proliferation. In this study, a new combined method constitutes a decellularization protocol to remove the tissue and cellular molecules from porcine dermis for preparation of nano-bioscaffolds with fibrous extracellular matrix via pre- and post-treatment of supercritical fluids. The supercritical fluids-assisted nano-bioscaffolds were characterized by peptide identification, infrared spectrum of absorption, morphology, histological observations, DNA quantification, and hemocompatibility. Further, the resulting nano-bioscaffolds could be employed to obtain new cross-linked composite nano-bioscaffold containing collagen and acellular matrix.
从脱细胞组织获得的纳米生物支架已应用于多种医学用途。纳米生物支架可为细胞附着提供结构支持,并提供具有足够孔隙率的合适环境,以促进细胞生长和增殖。在本研究中,一种新的组合方法构成了一种脱细胞方案,通过超临界流体的预处理和后处理,从猪真皮中去除组织和细胞分子,以制备具有纤维状细胞外基质的纳米生物支架。通过肽鉴定、红外吸收光谱、形态学、组织学观察、DNA定量和血液相容性对超临界流体辅助的纳米生物支架进行了表征。此外,所得的纳米生物支架可用于获得含有胶原蛋白和无细胞基质的新型交联复合纳米生物支架。