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用于3D培养和生物打印的海藻酸钠-明胶水凝胶的流变学特性及可打印性

Rheological Characterization and Printability of Sodium Alginate-Gelatin Hydrogel for 3D Cultures and Bioprinting.

作者信息

Dey Mohan Kumar, Devireddy Ram V

机构信息

Bioengineering Laboratory, Department of Mechanical Engineering, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

Biomimetics (Basel). 2025 Jan 4;10(1):28. doi: 10.3390/biomimetics10010028.

Abstract

The development of biocompatible hydrogels for 3D bioprinting is essential for creating functional tissue models and advancing preclinical drug testing. This study investigates the formulation, printability, mechanical properties, and biocompatibility of a novel Alg-Gel hydrogel blend (alginate and gelatin) for use in extrusion-based 3D bioprinting. A range of hydrogel compositions were evaluated for their rheological behavior, including shear-thinning properties, storage modulus, and compressive modulus, which are crucial for maintaining structural integrity during printing and supporting cell viability. The printability assessment of the 7% alginate-8% gelatin hydrogel demonstrated that the 27T tapered needle achieved the highest normalized Printability Index (POI = 1), offering the narrowest strand width (0.56 ± 0.02 mm) and the highest printing accuracy (97.2%) at the lowest printing pressure (30 psi). In contrast, the 30R needle, with the smallest inner diameter (0.152 mm) and highest printing pressure (80 psi), resulted in the widest strand width (0.70 ± 0.01 mm) and the lowest accuracy (88.8%), resulting in a POI of 0.274. The 30T and 27R needles demonstrated moderate performance, with POI values of 0.758 and 0.558, respectively. The optimized 7% alginate and 8% gelatin blend demonstrated favorable printability, mechanical strength, and cell compatibility with MDA-MB-213 breast cancer cells, exhibiting high cell proliferation rates and minimal cytotoxicity over a 2-week culture period. This formulation offers a balanced approach, providing sufficient viscosity for precision printing while minimizing shear stress to preserve cell health. This work lays the groundwork for future advancements in bioprinted cancer models, contributing to the development of more effective tools for drug screening and personalized medicine.

摘要

开发用于3D生物打印的生物相容性水凝胶对于创建功能性组织模型和推进临床前药物测试至关重要。本研究调查了一种用于基于挤出的3D生物打印的新型Alg-Gel水凝胶混合物(海藻酸盐和明胶)的配方、可打印性、机械性能和生物相容性。评估了一系列水凝胶组合物的流变行为,包括剪切变稀特性、储能模量和压缩模量,这些对于在打印过程中维持结构完整性和支持细胞活力至关重要。7%海藻酸盐-8%明胶水凝胶的可打印性评估表明,27T锥形针实现了最高的归一化可打印性指数(POI = 1),在最低打印压力(30 psi)下提供了最窄的股线宽度(0.56±0.02 mm)和最高的打印精度(97.2%)。相比之下,内径最小(0.152 mm)且打印压力最高(80 psi)的30R针导致股线宽度最宽(0.70±0.01 mm)和精度最低(88.8%),POI为0.274。30T和27R针表现出中等性能,POI值分别为0.758和0.558。优化后的7%海藻酸盐和8%明胶混合物表现出良好的可打印性、机械强度以及与MDA-MB-213乳腺癌细胞的细胞相容性,在2周的培养期内显示出高细胞增殖率和最小的细胞毒性。这种配方提供了一种平衡的方法,为精确打印提供了足够的粘度,同时将剪切应力降至最低以保持细胞健康。这项工作为生物打印癌症模型的未来进展奠定了基础,有助于开发更有效的药物筛选和个性化医疗工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f467/11763102/01dd6ff11443/biomimetics-10-00028-g001.jpg

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