Nurlidar Farah, Kobayashi Mime, Terada Kayo, Ando Tsuyoshi, Tanihara Masao
a Graduate School of Materials Science , Nara Institute of Science and Technology , Nara , Japan.
J Biomater Sci Polym Ed. 2017 Oct;28(14):1480-1496. doi: 10.1080/09205063.2017.1331872. Epub 2017 May 28.
Polyion complex (PIC) gel of poly(Pro-Hyp-Gly) was successfully fabricated by simply mixing polyanion and polycation derivatives of poly(Pro-Hyp-Gly), a collagen-like polypeptide. The polyanion, succinylated poly(Pro-Hyp-Gly), and the polycation, arginylated poly(Pro-Hyp-Gly), contain carboxy (pK = 5.2) and guanidinium (pK = 12.4) groups, respectively. Mixing the polyanion and the polycation at physiological pH (pH = 7.4) resulted in PIC gel. The hydrogel formation was optimum at an equimolar ratio of carboxy to guanidinium groups, suggesting that ionic interaction is the main determinant for the hydrogel formation. The hydrogel was successfully used for simultaneous rat bone marrow stromal cell encapsulation. The encapsulated cells survived and proliferated within the hydrogel. In addition, the cells exhibited different morphology in the hydrogel compared with cells cultured on a tissue culture dish as a two-dimensional (2D) control. At day one, a round morphology and homogeneous single cell distribution were observed in the hydrogel. In contrast, the cells spread and formed a fibroblast-like morphology on the 2D control. After three days, the cells in the hydrogel maintained their morphology and some of them formed multicellular aggregates, which is similar to cell morphology in an in vivo microenvironment. These results suggest that the PIC gel of poly(Pro-Hyp-Gly) can serve as a cytocompatible three-dimensional scaffold for stem cell encapsulation, supporting their viability, proliferation, and in vivo-like behavior.
通过简单混合类胶原多肽聚(脯氨酸 - 羟脯氨酸 - 甘氨酸)的聚阴离子和聚阳离子衍生物,成功制备了聚(脯氨酸 - 羟脯氨酸 - 甘氨酸)的聚离子复合物(PIC)凝胶。聚阴离子琥珀酰化聚(脯氨酸 - 羟脯氨酸 - 甘氨酸)和聚阳离子精氨酸化聚(脯氨酸 - 羟脯氨酸 - 甘氨酸)分别含有羧基(pK = 5.2)和胍基(pK = 12.4)基团。在生理pH(pH = 7.4)下混合聚阴离子和聚阳离子会形成PIC凝胶。在羧基与胍基基团等摩尔比时水凝胶形成最佳,这表明离子相互作用是水凝胶形成的主要决定因素。该水凝胶成功用于同时封装大鼠骨髓基质细胞。被封装的细胞在水凝胶内存活并增殖。此外,与在组织培养皿上作为二维(2D)对照培养的细胞相比,细胞在水凝胶中表现出不同的形态。在第1天,在水凝胶中观察到圆形形态和均匀的单细胞分布。相比之下,细胞在二维对照上扩散并形成成纤维细胞样形态。三天后,水凝胶中的细胞保持其形态,其中一些形成多细胞聚集体,这与体内微环境中的细胞形态相似。这些结果表明,聚(脯氨酸 - 羟脯氨酸 - 甘氨酸)的PIC凝胶可以作为用于干细胞封装的细胞相容性三维支架,支持它们的活力、增殖和类似体内的行为。