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3D打印参数对用于角膜基质制造的医用水凝胶透明度的影响。

Effect of 3D Printing Parameters on the Transparency of Medical Hydrogels for Corneal Stroma Fabrication.

作者信息

Gao Qiang, Yu Kaicheng, Shang Youyun, Lin Zexue, Zhu Min, Lu Lihua, Jiang Tao, Zhang Peng

机构信息

School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150001, China.

Chongqing Research Institute of HIT, Chongqing 401121, China.

出版信息

Gels. 2025 Jul 8;11(7):528. doi: 10.3390/gels11070528.

Abstract

Medical hydrogels represent a promising solution for the treatment of corneal diseases and trauma, offering potential to address the shortage of donor corneas. To meet the functional requirements of artificial corneas in tissue engineering, it is crucial to fabricate biomimetic structures with high optical transparency using 3D printing techniques. As fiber alignment during the printing process has a pronounced impact on light transmittance, precise control of the printing parameters is essential. This study focuses on the experimental optimization of 3D printing conditions for hydrogel materials to improve their physical properties, particularly optical clarity, thereby enhancing their suitability for artificial corneal applications. Collagen derived from bovine Achilles tendons was chosen due to its excellent printability. A series of controlled experiments were conducted to systematically investigate the influence of key process parameters on hydrogel transparency. The findings enabled the identification of an optimized parameter set that significantly improved the optical properties of the 3D-printed biomimetic corneal stroma. Additionally, cell seeding and culture assays confirmed the favorable biocompatibility of the developed material.

摘要

医用水凝胶是治疗角膜疾病和创伤的一种很有前景的解决方案,有望解决供体角膜短缺的问题。为了满足组织工程中人工角膜的功能需求,使用3D打印技术制造具有高光学透明度的仿生结构至关重要。由于打印过程中的纤维排列对透光率有显著影响,精确控制打印参数至关重要。本研究聚焦于水凝胶材料3D打印条件的实验优化,以改善其物理性能,特别是光学清晰度,从而提高其在人工角膜应用中的适用性。选用源自牛跟腱的胶原蛋白,因其具有出色的可打印性。进行了一系列对照实验,系统地研究关键工艺参数对水凝胶透明度的影响。这些发现确定了一组优化参数,显著改善了3D打印仿生角膜基质的光学性能。此外,细胞接种和培养试验证实了所开发材料具有良好的生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c69e/12294522/e4187e5ff324/gels-11-00528-g001.jpg

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