Zhang Meng, Wang Guohui, Zhang Xin, Zheng Yuqi, Lee Shaoxiang, Wang Dong, Yang Yang
College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Shandong Engineering Research Center for Marine Environment Corrosion and Safety Protection, Qingdao University of Science and Technology, Qingdao 266042, China.
Polymers (Basel). 2021 Sep 17;13(18):3151. doi: 10.3390/polym13183151.
In this paper, polyvinyl alcohol/Ag-Metal-organic framework (PVA/Ag@MOF) and polyvinyl alcohol/chitosan (PVA/CS) were used as the inner and outer layers to successfully prepare a bilayer composite hydrogel for tissue engineering scaffold. The performance of bilayer hydrogels was evaluated. The outer layer (PVA/CS) has a uniform pore size distribution, good water retention, biocompatibility and cell adhesion ability. The inner layer (PVA/Ag@MOF) has good antibacterial activity and poor biocompatibility. PVA, PVA/0.1%Ag@MOF, PVA/0.5%Ag@MOF, and PVA/1.0%Ag@MOF show anti-microbial activity in ascending order. However, its use as an inner layer avoids direct contact with cells and prevents infection. The cell viability of all samples was above 90%, indicating that the bilayer hydrogel was non-toxic to A549 cells. The bilayer hydrogel scaffold combines the advantages of the inner and outer layers. In summary, this new bilayer composite is an ideal lung scaffold for tissue engineering.
在本文中,聚乙烯醇/银基金属有机框架(PVA/Ag@MOF)和聚乙烯醇/壳聚糖(PVA/CS)被用作内层和外层,成功制备了一种用于组织工程支架的双层复合水凝胶。对双层水凝胶的性能进行了评估。外层(PVA/CS)具有均匀的孔径分布、良好的保水性、生物相容性和细胞粘附能力。内层(PVA/Ag@MOF)具有良好的抗菌活性,但生物相容性较差。PVA、PVA/0.1%Ag@MOF、PVA/0.5%Ag@MOF和PVA/1.0%Ag@MOF的抗菌活性依次增强。然而,将其用作内层可避免与细胞直接接触并防止感染。所有样品的细胞活力均高于90%,表明双层水凝胶对A549细胞无毒。双层水凝胶支架结合了内层和外层的优点。总之,这种新型双层复合材料是一种理想的组织工程肺支架。