用于干细胞工程的单晶纳米多孔氮化镓薄膜。

Lin Han, Jing Zhou, Yubing Sun, Yu Zhang, Jung Han, Jianping Fu, Rong Fan
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引用次数: 3

摘要

制备了孔径在20 ~ 100 nm范围内可调的单晶纳米多孔氮化镓(GaN)薄膜。人间充质干细胞(hMSCs)在这些薄膜上均匀粘附和扩散,在孔径为30 nm的薄膜表面达到峰值。当孔径增加到~ 80 nm时,出现了大量的细胞伸长。hMSCs的成骨分化优先发生在具有30 nm纳米孔的薄膜上,这与细胞扩散的最佳条件相关,这表明粘附、扩散和干细胞分化是相互联系的,可能受纳米形貌的共同调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Single-Crystalline, Nanoporous Gallium Nitride Films With Fine Tuning of Pore Size for Stem Cell Engineering.

Single-Crystalline, Nanoporous Gallium Nitride Films With Fine Tuning of Pore Size for Stem Cell Engineering.

Single-Crystalline, Nanoporous Gallium Nitride Films With Fine Tuning of Pore Size for Stem Cell Engineering.

Single-Crystalline, Nanoporous Gallium Nitride Films With Fine Tuning of Pore Size for Stem Cell Engineering.

Single-crystalline nanoporous gallium nitride (GaN) thin films were fabricated with the pore size readily tunable in 20-100 nm. Uniform adhesion and spreading of human mesenchymal stem cells (hMSCs) seeded on these thin films peak on the surface with pore size of 30 nm. Substantial cell elongation emerges as pore size increases to ∼80 nm. The osteogenic differentiation of hMSCs occurs preferentially on the films with 30 nm sized nanopores, which is correlated with the optimum condition for cell spreading, which suggests that adhesion, spreading, and stem cell differentiation are interlinked and might be coregulated by nanotopography.

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