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基于明胶-琼脂糖的 3D 生物打印光固化水凝胶的制备及其体外细胞相容性和细胞模拟天然角膜基质细胞用于角膜基质再生。

Fabrication of GelMA - Agarose Based 3D Bioprinted Photocurable Hydrogel with In Vitro Cytocompatibility and Cells Mirroring Natural Keratocytes for Corneal Stromal Regeneration.

机构信息

Electrochemical Process Engineering, CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi, Tamil Nadu, 630003, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Macromol Biosci. 2024 Oct;24(10):e2400136. doi: 10.1002/mabi.202400136. Epub 2024 Aug 3.

Abstract

The complex anatomy of the cornea and the subsequent keratocyte-fibroblast transition have always made corneal stromal regeneration difficult. Recently, 3D printing has received considerable attention in terms of fabrication of scaffolds with precise dimension and pattern. In the current work, 3D printable polymer hydrogels made of GelMA/agarose are formulated and its rheological properties are evaluated. Despite the variation in agarose content, both the hydrogels exhibited G'>G'' modulus. A prototype for 3D stromal model is created using Solid Works software, mimicking the anatomy of an adult cornea. The fabrication of 3D-printed hydrogels is performed using pneumatic extrusion. The FTIR analysis speculated that the hydrogel is well crosslinked and established strong hydrogen bonding with each other, thus contributing to improved thermal and structural stability. The MTT analysis revealed a higher rate of cell proliferation on the hydrogels. The optical analysis carried out on the 14th day of incubation revealed that the hydrogels exhibit transparency matching with natural corneal stromal tissue. Specific protein marker expression confirmed the keratocyte phenotype and showed that the cells do not undergo terminal differentiation into stromal fibroblasts. The findings of this work point to the potential of GelMA/A hydrogels as a novel biomaterial for corneal stromal tissue engineering.

摘要

角膜的复杂解剖结构和随后的角膜基质细胞向成纤维细胞的转化一直使得角膜基质再生变得困难。最近,3D 打印在制造具有精确尺寸和图案的支架方面受到了相当多的关注。在目前的工作中,我们制备了由 GelMA/琼脂糖组成的可 3D 打印的聚合物水凝胶,并对其流变性能进行了评估。尽管琼脂糖的含量有所不同,但两种水凝胶都表现出 G'>G''模量。使用 Solid Works 软件创建了一个 3D 基质模型的原型,模拟了成年角膜的解剖结构。使用气动挤出法来制造 3D 打印水凝胶。傅里叶变换红外(FTIR)分析推测水凝胶交联良好,并彼此之间建立了牢固的氢键,从而提高了热稳定性和结构稳定性。MTT 分析显示,细胞在水凝胶上的增殖速度更快。在孵育第 14 天进行的光学分析表明,水凝胶的透光率与天然角膜基质组织相匹配。特定蛋白标志物的表达证实了角膜基质细胞的表型,表明细胞不会经历终末分化为基质成纤维细胞。这项工作的结果表明,GelMA/A 水凝胶作为一种新型的角膜基质组织工程生物材料具有潜力。

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