从制造到功能:对GelMA微针阵列的机械见解

Moloud Amini Baghbadorani , Masoumeh Zargar , Asghar Eskandarinia , Majid Tolouei-Rad
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引用次数: 0

摘要

明胶甲基丙烯酰(GelMA)已成为微针(MN)制造的一种非常合适的材料,具有卓越的生物相容性和成本效益。尽管GelMA水凝胶取得了重大进展,但对GelMA MNs的研究可以追溯到2019年,但没有专门针对GelMA MNs的制造技术和机械性能的综述。本文首次综述了GelMA微针在各种医疗应用中的制造方法和机械特性。此外,它还讨论了机械表征的不同方法,并确定了当前制造技术中的差距。该综述还探讨了GelMA MNs在药物传递和疾病诊断中的潜在意义。最后,提出了未来大规模生产最有前途的增材制造和混合方法,并对其进行了进一步优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

From fabrication to function: Mechanical insights into GelMA microneedle arrays

From fabrication to function: Mechanical insights into GelMA microneedle arrays
Gelatin methacryloyl (GelMA) has emerged as a highly suitable material for microneedle (MN) fabrication, offering exceptional biocompatibility and cost-effectiveness. Despite significant advances introduced by GelMA hydrogels, research on GelMA MNs dates back to 2019, yet no review has specifically focused on the manufacturing techniques and mechanical properties of GelMA MNs. For the first time, this review aims to examine the manufacturing methods and mechanical characteristics of GelMA microneedles across various medical applications. Additionally, it discusses different approaches to mechanical characterization and identifies gaps in current manufacturing technologies. The review also explores the potential implications of GelMA MNs in drug delivery and disease diagnosis. Finally, additive manufacturing and hybrid methods, identified as the most promising techniques for future large-scale production, are proposed for further optimization.
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