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碳水化合物与明胶海绵的生物共轭促进三维细胞培养

Bioconjugation of Carbohydrates to Gelatin Sponges Promoting 3D Cell Cultures.

作者信息

Pepe Antonietta, Laezza Antonio, Ostuni Angela, Scelsi Alessandra, Laurita Alessandro, Bochicchio Brigida

机构信息

Laboratory of Protein-Inspired Biomaterials, Department of Science, University of Basilicata, Via Ateneo Lucano, 10, 85100 Potenza, Italy.

Cellular Biochemistry Laboratory, Department of Science, University of Basilicata, Via Ateneo Lucano, 10, 85100 Potenza, Italy.

出版信息

Biomimetics (Basel). 2023 May 6;8(2):193. doi: 10.3390/biomimetics8020193.

Abstract

Gelatin sponges are widely employed as hemostatic agents, and are gaining increasing interest as 3D scaffolds for tissue engineering. To broaden their possible application in the field of tissue engineering, a straightforward synthetic protocol able to anchor the disaccharides, maltose and lactose, for specific cell interactions was developed. A high conjugation yield was confirmed by H-NMR and FT-IR spectroscopy, and the morphology of the resulting decorated sponges was characterized by SEM. After the crosslinking reaction, the sponges preserve their porous structure as ascertained by SEM. Finally, HepG2 cells cultured on the decorated gelatin sponges show high viability and significant differences in the cellular morphology as a function of the conjugated disaccharide. More spherical morphologies are observed when cultured on maltose-conjugated gelatin sponges, while a more flattened aspect is discerned when cultured onto lactose-conjugated gelatin sponges. Considering the increasing interest in small-sized carbohydrates as signaling cues on biomaterial surfaces, systematic studies on how small carbohydrates might influence cell adhesion and differentiation processes could take advantage of the described protocol.

摘要

明胶海绵被广泛用作止血剂,并且作为组织工程的3D支架正受到越来越多的关注。为了拓宽其在组织工程领域的可能应用,开发了一种能够锚定二糖(麦芽糖和乳糖)以实现特定细胞相互作用的直接合成方案。通过H-NMR和FT-IR光谱证实了高共轭产率,并用SEM对所得修饰海绵的形态进行了表征。交联反应后,通过SEM确定海绵保留了其多孔结构。最后,在修饰的明胶海绵上培养的HepG2细胞显示出高活力,并且细胞形态根据共轭二糖的不同而有显著差异。在麦芽糖共轭的明胶海绵上培养时观察到更多球形形态,而在乳糖共轭的明胶海绵上培养时则观察到更扁平的形态。考虑到对作为生物材料表面信号线索的小尺寸碳水化合物的兴趣日益增加,关于小碳水化合物如何影响细胞粘附和分化过程的系统研究可以利用所述方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff0b/10204423/e122fb4e2d36/biomimetics-08-00193-sch001.jpg

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