- 張擁軍 教授
- 南開大學(xué)化學(xué)學(xué)院高分子化學(xué)研究所
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- 張擁軍課題組簡介
- 南開大學(xué)化學(xué)學(xué)院張擁軍
- 加拿大朱曉夏教授
- 中國聚合物網(wǎng)
- 中國流變網(wǎng)
- 中國化學(xué)儀器網(wǎng)
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關(guān)鍵字:microgel
論文來源:期刊
具體來源:Colloids and Surfaces B: Biointerfaces, 2015, 136, 1139-1147
發(fā)表時(shí)間:2015年
The in situ-forming colloidal hydrogels from the thermal gelation of poly(N-isopropylacrylamide) (PNIPAM) microgel dispersions have been exploited for 3D cell culture. The properties of the hydrogel scaffold need to be tuned to further improve its performance. In addition, cellular uptake of the microgel particles need to be reduced to avoid their potential undesired influence. For these purposes we systematically examined the effect of microgel particle size on the hydrogel scaffold. It was found that gel properties could be tuned via changing particle size. Increasing particle size reduces the gel strength and its syneresis degree, both of which are favorable for cell growth. Meanwhile increasing particle size could also reduce significantly the cellular uptake of the microgel particles. Microgel with a size of ~162 nm shows the highest cellular uptake, beyond which cellular uptake decreases with increasing particle size. Hydrogel scaffold from 300 nm microgel, with suitable physical properties and reduced cellular uptake, were successfully used for multicellular spheroid generation.
【關(guān)鍵詞】:Microgels; Colloidal hydrogels; Cellular uptake; 3D cell culture; Multicellular spheroids