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用于生物医学应用的、通过3D打印实现的可定制微针的设计与制造。

Design and fabrication of customizable microneedles enabled by 3D printing for biomedical applications.

作者信息

Loh Jia Min, Lim Yun Jie Larissa, Tay Jin Ting, Cheng Hui Mei, Tey Hong Liang, Liang Kun

机构信息

A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), Singapore.

National Skin Centre (NSC), Singapore.

出版信息

Bioact Mater. 2023 Oct 12;32:222-241. doi: 10.1016/j.bioactmat.2023.09.022. eCollection 2024 Feb.

Abstract

Microneedles (MNs) is an emerging technology that employs needles ranging from 10 to 1000 μm in height, as a minimally invasive technique for various procedures such as therapeutics, disease monitoring and diagnostics. The commonly used method of fabrication, micromolding, has the advantage of scalability, however, micromolding is unable to achieve rapid customizability in dimensions, geometries and architectures, which are the pivotal factors determining the functionality and efficacy of the MNs. 3D printing offers a promising alternative by enabling MN fabrication with high dimensional accuracy required for precise applications, leading to improved performance. Furthermore, enabled by its customizability and one-step process, there is propitious potential for growth for 3D-printed MNs especially in the field of personalized and on-demand medical devices. This review provides an overview of considerations for the key parameters in designing MNs, an introduction on the various 3D-printing techniques for fabricating this new generation of MNs, as well as highlighting the advancements in biomedical applications facilitated by 3D-printed MNs. Lastly, we offer some insights into the future prospects of 3D-printed MNs, specifically its progress towards translation and entry into market.

摘要

微针是一种新兴技术,它使用高度在10至1000微米之间的针,作为用于治疗、疾病监测和诊断等各种程序的微创技术。常用的制造方法——微成型,具有可扩展性的优点,然而,微成型无法在尺寸、几何形状和结构方面实现快速定制,而这些是决定微针功能和功效的关键因素。3D打印通过能够制造出精确应用所需的高尺寸精度的微针提供了一种有前景的替代方法,从而提高了性能。此外,由于其可定制性和一步成型工艺,3D打印微针具有巨大的增长潜力,尤其是在个性化和按需医疗设备领域。这篇综述概述了设计微针时关键参数的考量因素,介绍了用于制造新一代微针的各种3D打印技术,并突出了3D打印微针在生物医学应用方面的进展。最后,我们对3D打印微针的未来前景提供了一些见解,特别是其在转化和进入市场方面的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9074/10589728/01ce8a65de97/ga1.jpg

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