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用于三维干细胞培养的具有可调节内部尺寸的乳液模板化明胶/氨基酸/壳聚糖大孔水凝胶。

Emulsion-Templated Gelatin/Amino Acids/Chitosan Macroporous Hydrogels with Adjustable Internal Dimensions for Three-Dimensional Stem Cell Culture.

作者信息

Li Kexin, Wang Huimin, Yan Jing, Shi Zuosen, Zhu Song, Cui Zhanchen

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P.R. China.

Department of Prosthetic Dentistry, School and Hospital of Stomatology, Jilin University, Changchun 130012, P.R. China.

出版信息

ACS Biomater Sci Eng. 2024 Aug 12;10(8):4878-4890. doi: 10.1021/acsbiomaterials.4c00501. Epub 2024 Jul 23.

Abstract

The demand for macroporous hydrogel scaffolds with interconnected porous and open-pore structures is crucial for advancing research and development in cell culture and tissue regeneration. Existing techniques for creating 3D porous materials and controlling their porosity are currently constrained. This study introduces a novel approach for producing highly interconnected aspartic acid-gelatin macroporous hydrogels (MHs) with precisely defined open pore structures using a one-step emulsification polymerization method with surface-modified silica nanoparticles as Pickering stabilizers. Macroporous hydrogels offer adjustable pore size and pore throat size within the ranges of 50 to 130 μm and 15 to 27 μm, respectively, achieved through variations in oil-in-water ratio and solid content. The pore wall thickness of the macroporous hydrogel can be as thin as 3.37 μm and as thick as 6.7 μm. In addition, the storage modulus of the macroporous hydrogels can be as high as 7250 Pa, and it maintains an intact rate of more than 92% after being soaked in PBS for 60 days, which is also good performance for use as a biomedical scaffold material. These hydrogels supported the proliferation of human dental pulp stem cells (hDPSCs) over a 30 day incubation period, stretching the cell morphology and demonstrating excellent biocompatibility and cell adhesion. The combination of these desirable attributes makes them highly promising for applications in stem cell culture and tissue regeneration, underscoring their potential significance in advancing these fields.

摘要

对具有相互连通的多孔和开孔结构的大孔水凝胶支架的需求,对于推动细胞培养和组织再生的研究与开发至关重要。目前,用于制造三维多孔材料并控制其孔隙率的现有技术受到限制。本研究介绍了一种新颖的方法,使用表面改性的二氧化硅纳米颗粒作为皮克林稳定剂,通过一步乳化聚合法制备具有精确界定的开孔结构的高度相互连通的天冬氨酸 - 明胶大孔水凝胶(MHs)。大孔水凝胶的孔径和孔喉尺寸分别在50至130μm和15至27μm范围内可调,这是通过水包油比和固含量的变化实现的。大孔水凝胶的孔壁厚度可薄至3.37μm,厚至6.7μm。此外,大孔水凝胶的储能模量可高达7250Pa,在PBS中浸泡60天后,其完整率保持在92%以上,作为生物医学支架材料也具有良好的性能。这些水凝胶在30天的培养期内支持人牙髓干细胞(hDPSCs)的增殖,拉伸细胞形态并显示出优异的生物相容性和细胞粘附性。这些理想特性的结合使其在干细胞培养和组织再生应用中极具前景,突显了它们在推动这些领域发展中的潜在重要性。

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