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Differentiation of neural-type cells on multi-scale ordered collagen-silica bionanocomposites.
Biomaterials Science ( IF 6.6 ) Pub Date : 2020-01-09 , DOI: 10.1039/c9bm01029g
Nicolas Debons 1 , Dounia Dems , Christophe Hélary , Sylvain Le Grill , Lise Picaut , Flore Renaud , Nicolas Delsuc , Marie-Claire Schanne-Klein , Thibaud Coradin , Carole Aimé
Affiliation  

Cells respond to biophysical and biochemical signals. We developed a composite filament from collagen and silica particles modified to interact with collagen and/or present a laminin epitope (IKVAV) crucial for cell-matrix adhesion and signal transduction. This combines scaffolding and signaling and shows that local tuning of collagen organization enhances cell differentiation.

中文翻译:

神经型细胞在多尺度有序胶原-二氧化硅bionanocomposites上的分化。

细胞响应生物物理和生化信号。我们从胶原蛋白和二氧化硅颗粒开发了一种复合长丝,将其与胶原蛋白相互作用和/或提出了层粘连蛋白表位(IKVAV),这对于细胞基质粘附和信号转导至关重要。这将脚手架和信号传导结合在一起,表明胶原蛋白组织的局部调节增强了细胞分化。
更新日期:2020-02-13
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