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A star-PEG-heparin hydrogel platform to aid cell replacement therapies for neurodegenerative diseases.一种用于辅助神经退行性疾病细胞替代疗法的星形聚乙二醇-肝素水凝胶平台。
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Effects of supported lipid monolayer fluidity on the adhesion of hematopoietic progenitor cell lines to fibronectin-derived peptide ligands for alpha5beta1 and alpha4beta1 integrins.支持的脂质单层流动性对造血祖细胞系与α5β1和α4β1整合素的纤连蛋白衍生肽配体黏附的影响。
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Enhanced survival of neural cells embedded in hydrogels composed of collagen and laminin-derived cell adhesive peptide.包埋在由胶原蛋白和层粘连蛋白衍生的细胞黏附肽组成的水凝胶中的神经细胞的存活能力增强。
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Engineering biomaterials for synthetic neural stem cell microenvironments.用于合成神经干细胞微环境的工程生物材料。
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Self-assembling nanofibers inhibit glial scar formation and promote axon elongation after spinal cord injury.自组装纳米纤维可抑制脊髓损伤后胶质瘢痕形成并促进轴突伸长。
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Cell-matrix adhesion.细胞-基质黏附
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Supported phospholipid bilayers as a platform for neural progenitor cell culture.支持性磷脂双层作为神经祖细胞培养的平台。
J Biomed Mater Res A. 2008 Mar 15;84(4):940-53. doi: 10.1002/jbm.a.31358.
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Hyaluronic acid hydrogel for controlled self-renewal and differentiation of human embryonic stem cells.用于人类胚胎干细胞可控自我更新和分化的透明质酸水凝胶
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神经干细胞在 RGD 肽修饰的磷脂双层上的黏附和增殖。

Neural stem cell adhesion and proliferation on phospholipid bilayers functionalized with RGD peptides.

机构信息

Department of Chemical Engineering and Materials Research Laboratory, University of California, Santa Barbara, CA 93106, United States.

出版信息

Biomaterials. 2010 Nov;31(33):8706-15. doi: 10.1016/j.biomaterials.2010.07.104. Epub 2010 Aug 21.

DOI:10.1016/j.biomaterials.2010.07.104
PMID:20728935
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2949453/
Abstract

Peptide-functionalized materials show promise in controlling stem cell behavior by mimicking cell-matrix interactions. Supported lipid bilayers are an excellent platform for displaying peptides due to their ease of fabrication and low non-specific interactions with cells. In this paper, we report on the behavior of adult hippocampal neural stem cells (NSCs) on phospholipid bilayers functionalized with different RGD-containing peptides: either GGGNGEPRGDTYRAY ('bsp-RGD(15)') or GRGDSP. Fluid supported bilayers were prepared on glass surfaces by adsorption and fusion of small lipid vesicles incorporating synthetic peptide amphiphiles. NSCs adhered to bilayers with either GRGDSP or bsp-RGD(15) peptide. After 5 days in culture, NSCs formed neurosphere-like aggregates on GRGDSP bilayers, whereas on bsp-RGD(15) bilayers a large fraction of single adhered cells were observed, comparable to monolayer growth seen on laminin controls. NSCs retained their ability to differentiate into neurons and astrocytes on both peptide surfaces. This work illustrates the utility of supported bilayers in displaying peptide ligands and demonstrates that RGD peptides may be useful in synthetic culture systems for stem cells.

摘要

肽功能化材料通过模拟细胞-基质相互作用,在控制干细胞行为方面显示出巨大的潜力。由于其易于制备和与细胞的非特异性相互作用低,支撑脂质双层是展示肽的极好平台。在本文中,我们报告了成年海马神经干细胞(NSCs)在不同含有 RGD 肽的磷脂双层上的行为:要么是 GGGNGEPRGDTYRAY('bsp-RGD(15) '),要么是 GRGDSP。通过吸附和融合包含合成肽两亲物的小脂质囊泡,在玻璃表面上制备流体支撑的双层。GRGDSP 或 bsp-RGD(15) 肽都能使 NSCs 黏附在双层上。在培养 5 天后,NSCs 在 GRGDSP 双层上形成神经球样聚集,而在 bsp-RGD(15) 双层上观察到大量单个黏附细胞,与层粘连蛋白对照下的单层生长相当。NSCs 在两种肽表面上都保持分化为神经元和星形胶质细胞的能力。这项工作说明了支撑双层在展示肽配体方面的实用性,并表明 RGD 肽可能在干细胞的合成培养系统中有用。