Polymer Research Laboratory, Department of Chemistry, Sharif University of Technology, Azadi Avenue, P.O. Box 11365-9516, Tehran, Iran.
Polymer Research Laboratory, Department of Chemistry, Sharif University of Technology, Azadi Avenue, P.O. Box 11365-9516, Tehran, Iran.
Int J Biol Macromol. 2019 Apr 1;126:310-317. doi: 10.1016/j.ijbiomac.2018.11.256. Epub 2018 Nov 28.
Scaffolds for tissue engineering of specific sites such as cardiac, nerve, and bone tissues need a comprehensive design of three dimensional materials that covers all aspects of chemical composition and physical structures, required for regeneration of desired cells. Hydrogels, possessing highly hydrated and interconnected structures, are promising materials for tissue engineering applications. Improvement of an injectable hydrogel from biocompatible polysaccharides and poly‑N‑isopropyl acryl amide enriched with Au nanoparticles are the main goal of this study. Two main enhancements in this study are included mixture design of the components and addition of Au nanoparticles to access a homogeneous mixture that have potential application in tissue engineering. Chemical and physical properties of the injectable hydrogel are fully characterized. Addition of Au nanoparticles as a conductive component to enhance cell growth and attachment is investigated through MG-63 cell viability assay.
用于心脏、神经和骨骼等特定部位组织工程的支架需要全面设计三维材料,涵盖所需细胞再生的各个方面的化学组成和物理结构。水凝胶具有高度水合和相互连接的结构,是组织工程应用的有前途的材料。本研究的主要目标是用生物相容性多糖和富含金纳米粒子的聚 N-异丙基丙烯酰胺改进可注射水凝胶。本研究包括两个主要改进:一是混合设计成分,二是添加金纳米粒子以获得具有组织工程潜在应用的均匀混合物。对可注射水凝胶的化学和物理性质进行了全面表征。通过 MG-63 细胞活力测定研究了添加金纳米粒子作为增强细胞生长和附着的导电成分的作用。