3D printed high-resolution scaffold with hydrogel microfibers for providing excellent biocompatibility
Wenjie Ye, Chaoqi Xie, Yande Liu, Yong He, Qing Gao, Aiguo Ouyang
Journal:JOURNAL OF BIOMATERIALS APPLICATIONS
IF:2.22
DOI:10.1177/0885328220962606
PMID:32996360
Published:2020-09-30
research field:细胞生物学生物医学工程呼吸生物学材料科学组织工程
Abstract
Melt electrowriting (MEW) can print high-resolution scaffolds with the ultrafine fibers from 800 nm to 20 µm. However, the cell seeding efficiency relatively low due to the large pore size of the MEW scaffold. Here, we reported a method to solve this dilemma by electrospinning a gelatin methacrylate (GelMA) hydrogel fibers membrane (HFM) on the MEW scaffold. This composite scaffold can own the controlled structures and porosity and excellent cell seeding performance. We systematically investigate the fabrication, morphology, and biocompatibility of composite scaffolds. The implanting of human umbilical vein endothelial cells(HUVES) showed excellent adhesion and biocompatibility on the composite scaffold. Moreover, the cells migrated gradually into the MEW scaffold along the GelMA HFM to form the cell sheet. We hold the opinion that the composite scaffolds have potential applications in the field of tissue engineering repair.
本文使用的Yeasen产品


