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在合成胶原样支架上的细胞分化的光控。

Optical control of cell differentiation on synthetic collagen-like scaffolds.

机构信息

a Graduate School of Materials Science , Nara Institute of Science and Technology , Ikoma , Japan.

b Graduate School of Biological Sciences , Nara Institute of Science and Technology , Ikoma , Japan.

出版信息

J Biomater Sci Polym Ed. 2019 Sep;30(13):1161-1171. doi: 10.1080/09205063.2019.1622845. Epub 2019 Jul 2.

Abstract

We have developed biocompatible scaffolds that enable cell fate control with visible light. The scaffolds are based on synthetic collagen-like polypeptide, poly(prolyl-hydroxyprolyl-glycyl) {poly(Pro-Hyp-Gly)} which has been used for cosmetics and other healthcare applications. Bioactive peptides were conjugated to the scaffolds via photoactivation reaction utilizing 488 nm visible light. In addition, the use of a photocleavable crosslinker enables dissociation of chemical moieties by 405 nm laser irradiation. The synthesis scheme enables optical control to attach and detach functional peptides in pre-patterned shapes. Using bone forming peptide (BFP), we demonstrate that calcium deposition by rat bone stromal cells can be directed on the scaffold. Using other signaling molecules and three-dimensional scaffolds, controlled differentiation of stem cells can be achieved by spatio-temporally specific irradiation of confocal microscope laser.

摘要

我们开发了一种具有生物相容性的支架,可以利用可见光来控制细胞命运。该支架基于已用于化妆品和其他保健应用的合成胶原样多肽聚(脯氨酰-羟脯氨酰-甘氨酰){聚(Pro-Hyp-Gly)}。通过利用 488nm 可见光的光激活反应将生物活性肽共轭到支架上。此外,使用光可裂解交联剂可以通过 405nm 激光照射使化学部分解离。该合成方案可实现光学控制,以预图案化的形状附着和分离功能肽。使用骨形成肽(BFP),我们证明可以在支架上指导大鼠骨髓基质细胞的钙沉积。通过共聚焦显微镜激光的时空特异性辐照,可以使用其他信号分子和三维支架来实现干细胞的受控分化。

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