Stereolithographic Rapid Prototyping of Clear, Foldable, Non-Refractive Intraocular Lens Designs: A Proof-of-Concept Study.

IF 1.7 4区 医学 Q3 OPHTHALMOLOGY
Current Eye Research Pub Date : 2024-08-01 Epub Date: 2024-05-19 DOI:10.1080/02713683.2024.2344164
Veronica Hidalgo-Alvarez, Noelia D Falcon, Julie Eldred, Michael Wormstone, Aram Saeed
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引用次数: 0

Abstract

Purpose: A cataract is a cloudy area in the crystalline lens. Cataracts are the leading cause of blindness and the second cause of severe vision impairment worldwide. During cataract surgery, the clouded lens is extracted and replaced with an artificial intraocular lens, which restores the optical power. The fabrication of intraocular lenses using existing molding and lathing techniques is a complex and time-consuming process that limits the development of novel materials and designs. To overcome these limitations, we have developed a stereolithography-based process for producing models of clear lens designs without refractive function, serving as a proof of concept. This process has the potential to contribute toward new lens development, allowing for unlimited design iterations and an expanded range of materials for scientists to explore.

Methods: Lens-like 3D objects without refractive function were fabricated by using stereolithography. A photopolymerizable resin containing 2-phenoxyethyl acrylate, poly (ethylene glycol) dimethacrylate, and a suitable photoinitiator was developed for the production of lens-like 3D object prototypes. The morphology of the printed devices was characterized by scanning electron microscopy. The transparency and thermal properties were analyzed using spectrophotometry and differential scanning calorimetry, respectively. The biocompatibility of the devices was investigated in a cultured human lens cell line (FHL-124), using a standard lactate dehydrogenase assay, and the lenses were folded and implanted in the human capsular bag model.

Results: One-piece lens-like 3D objects without refractive function and with loop-haptic design were successfully fabricated using Stereolithography (SLA) technique. The resulting 3D objects were transparent, as determined by UV spectroscopy. The lactate dehydrogenase test demonstrated the tolerance of lens cells to the prototyping material, and apparent foldability and shape recovery was observed during direct injection into a human capsular bag model in vitro.

Conclusions: This proof-of-principle study demonstrated the potential and significance of the rapid prototyping process for research and development of lens-like 3D object prototypes, such as intraocular lenses.

透明、可折叠、非屈光性眼内透镜设计的立体光刻快速原型制作:概念验证研究。
目的:白内障是晶状体上的混浊区。白内障是全球致盲的主要原因,也是导致严重视力障碍的第二大原因。在白内障手术中,混浊的晶状体被摘除,并用人工眼内晶状体取代,从而恢复光学能力。使用现有的成型和车削技术制造眼内晶状体是一个复杂而耗时的过程,限制了新型材料和设计的开发。为了克服这些限制,我们开发了一种基于立体光刻技术的工艺,用于制作无屈光功能的透明晶状体设计模型,作为概念验证。这种工艺有可能促进新透镜的开发,允许无限制的设计迭代和扩大材料范围,供科学家们探索:方法:利用立体光刻技术制造出无折射功能的透镜类三维物体。开发了一种可光聚合树脂,其中包含 2-苯氧乙基丙烯酸酯、聚(乙二醇)二甲基丙烯酸酯和合适的光引发剂,用于制作透镜样三维物体原型。扫描电子显微镜对打印设备的形态进行了表征。分光光度法和差示扫描量热法分别对透明度和热性能进行了分析。利用标准乳酸脱氢酶测定法,在培养的人类晶状体细胞系(FHL-124)中研究了该装置的生物相容性,并将镜片折叠后植入人类囊袋模型中:结果:利用立体光刻(SLA)技术成功制作出了无屈光功能且具有环形触觉设计的单片透镜状三维物体。经紫外光谱测定,三维物体是透明的。乳酸脱氢酶测试表明晶状体细胞对原型材料具有耐受性,在体外将其直接注入人体囊袋模型时,可观察到明显的可折叠性和形状恢复:这项原理验证研究证明了快速原型制作过程在研究和开发透镜类三维物体原型(如眼内透镜)方面的潜力和意义。
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来源期刊
Current Eye Research
Current Eye Research 医学-眼科学
CiteScore
4.60
自引率
0.00%
发文量
163
审稿时长
12 months
期刊介绍: The principal aim of Current Eye Research is to provide rapid publication of full papers, short communications and mini-reviews, all high quality. Current Eye Research publishes articles encompassing all the areas of eye research. Subject areas include the following: clinical research, anatomy, physiology, biophysics, biochemistry, pharmacology, developmental biology, microbiology and immunology.
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