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使用低成本改良3D打印机进行脱细胞角膜基质支架的3D生物打印:一项可行性研究。

3D Bioprinting of Acellular Corneal Stromal Scaffolds with a Low Cost Modified 3D Printer: A Feasibility Study.

作者信息

Gingras Amelia A, Jansen Peter A, Smith Caroline, Zhang Xu, Niu Ye, Zhao Yi, Roberts Cynthia J, Herderick Edward D, Swindle-Reilly Katelyn E

机构信息

Center for Design and Manufacturing Excellence, The Ohio State University, Columbus, OH, USA.

Department of Biomedical Engineering, The Ohio State University, Columbus, OH, USA.

出版信息

Curr Eye Res. 2023 Dec;48(12):1112-1121. doi: 10.1080/02713683.2023.2251172. Epub 2023 Sep 5.

Abstract

PURPOSE

Loss of corneal transparency is one of the major causes of visual loss, generating a considerable health and economic burden globally. Corneal transplantation is the leading treatment procedure, where the diseased cornea is replaced by donated corneal tissue. Despite the rise of cornea donations in the past decade, there is still a huge gap between cornea supply and demand worldwide. 3D bioprinting is an emerging technology that can be used to fabricate tissue equivalents that resemble the native tissue, which holds great potential for corneal tissue engineering application. This study evaluates the manufacturability of 3D bioprinted acellular corneal grafts using low-cost equipment and software, not necessarily designed for bioprinting applications. This approach allows access to 3D printed structures where commercial 3D bioprinters are cost prohibitive and not readily accessible to researchers and clinicians.

METHODS

Two extrusion-based methods were used to 3D print acellular corneal stromal scaffolds with collagen, alginate, and alginate-gelatin composite bioinks from a digital corneal model. Compression testing was used to determine moduli.

RESULTS

The printed model was visually transparent with tunable mechanical properties. The model had central radius of curvature of 7.4 mm, diameter of 13.2 mm, and central thickness of 0.4 mm. The compressive secant modulus of the material was 23.7 ± 1.7 kPa at 20% strain. 3D printing into a concave mold had reliability advantages over printing into a convex mold.

CONCLUSIONS

The printed corneal models exhibited visible transparency and a dome shape, demonstrating the potential of this process for the preparation of acellular partial thickness corneal replacements. The modified printing process presented a low-cost option for corneal bioprinting.

摘要

目的

角膜透明度丧失是视力丧失的主要原因之一,在全球造成了相当大的健康和经济负担。角膜移植是主要的治疗方法,即用捐赠的角膜组织替换患病的角膜。尽管在过去十年中角膜捐赠有所增加,但全球角膜供需之间仍存在巨大差距。3D生物打印是一种新兴技术,可用于制造类似于天然组织的组织等效物,在角膜组织工程应用中具有巨大潜力。本研究评估了使用低成本设备和软件(不一定专为生物打印应用设计)3D生物打印脱细胞角膜移植物的可制造性。这种方法使研究人员和临床医生能够获得3D打印结构,而商业3D生物打印机成本过高且不易获得。

方法

使用两种基于挤压的方法从数字角膜模型中用胶原蛋白、藻酸盐和藻酸盐-明胶复合生物墨水3D打印脱细胞角膜基质支架。使用压缩测试来确定模量。

结果

打印模型在视觉上是透明的,具有可调的机械性能。该模型的中央曲率半径为7.4毫米,直径为13.2毫米,中央厚度为0.4毫米。材料在20%应变下的压缩割线模量为23.7±1.7千帕。3D打印到凹模中比打印到凸模中具有可靠性优势。

结论

打印的角膜模型呈现出可见的透明度和穹顶形状,证明了该过程在制备脱细胞部分厚度角膜替代物方面的潜力。改进的打印工艺为角膜生物打印提供了一种低成本选择。

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