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3D 打印微针用于胰岛素经皮给药。

3D printed microneedles for insulin skin delivery.

机构信息

Medway School of Pharmacy, University of Kent, Medway Campus, Central Avenue, Chatham Maritime, Chatham, Kent ME4 4TB, United Kingdom.

Polytech Marseille Filière Matériaux, Luminy Case 925, 13288 Marseille Cedex 09, France.

出版信息

Int J Pharm. 2018 Jun 15;544(2):425-432. doi: 10.1016/j.ijpharm.2018.03.031. Epub 2018 Mar 16.


DOI:10.1016/j.ijpharm.2018.03.031
PMID:29555437
Abstract

In this study, polymeric microneedle patches were fabricated by stereolithography, a 3D printing technique, for the transdermal delivery of insulin. A biocompatible resin was photopolymerized to build pyramid and cone microneedle designs followed by inkjet print coating of insulin formulations. Trehalose, mannitol and xylitol were used as drug carriers with the aim to preserve insulin integrity and stability but also to facilitate rapid release rates. Circular dichroism and Raman analysis demonstrated that all carriers maintained the native form of insulin, with xylitol presenting the best performance. Franz cell release studies were used for in vitro determination of insulin release rates in porcine skin. Insulin was released rapidly within 30 min irrespectively of the microneedle design. 3D printing was proved an effective technology for the fabrication of biocompatible and scalable microneedle patches.

摘要

在这项研究中,通过立体光刻技术(一种 3D 打印技术)制造了聚合物微针贴片,用于胰岛素的透皮递送。将生物相容性树脂光聚合以构建金字塔和锥形微针设计,然后喷墨打印涂覆胰岛素制剂。海藻糖、甘露醇和木糖醇被用作药物载体,目的是保持胰岛素的完整性和稳定性,同时促进快速释放速率。圆二色性和拉曼分析表明,所有载体都保持了胰岛素的天然形式,其中木糖醇表现出最佳性能。Franz 细胞释放研究用于体外测定猪皮中胰岛素的释放速率。无论微针设计如何,胰岛素都能在 30 分钟内迅速释放。3D 打印被证明是制造生物相容性和可扩展微针贴片的有效技术。

相似文献

[1]
3D printed microneedles for insulin skin delivery.

Int J Pharm. 2018-3-16

[2]
3D printing applications for transdermal drug delivery.

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[3]
Inkjet printing of insulin microneedles for transdermal delivery.

Drug Deliv Transl Res. 2015-8

[4]
3D printed microneedle patches using stereolithography (SLA) for intradermal insulin delivery.

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[5]
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[6]
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[7]
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[8]
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[9]
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[10]
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[1]
Recent advances and perspectives of MicroNeedles for biomedical applications.

Biophys Rev. 2025-4-24

[2]
Designing Multifunctional Microneedles in Biomedical Engineering: Materials, Methods, and Applications.

Int J Nanomedicine. 2025-7-4

[3]
Unique advantages and applications of polysaccharide microneedles as drug delivery materials and in treatment of skin diseases.

Nanoscale Adv. 2025-4-12

[4]
Advances in microneedle-based drug delivery system for metabolic diseases: structural considerations, design strategies, and future perspectives.

J Nanobiotechnology. 2025-5-16

[5]
Therapeutic Potential of Microneedle Assisted Drug Delivery for Wound Healing: Current State of the Art, Challenges, and Future Perspective.

AAPS PharmSciTech. 2025-1-8

[6]
Fabrication and mechanical/biological evaluations of dissolving bird-bill microneedle arrays.

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[7]
Trends in Photopolymerization 3D Printing for Advanced Drug Delivery Applications.

Biomacromolecules. 2025-1-13

[8]
Review of Microneedle Technology for Targeted Therapeutics in Vitiligo: Design Principles, Application Prospects.

Drug Des Devel Ther. 2024

[9]
Development and optimization of hydrogel-forming microneedles fabricated with 3d-printed molds for enhanced dermal diclofenac sodium delivery: a comprehensive in vitro, ex vivo, and in vivo study.

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[10]
Vat-based photopolymerization 3D printing: From materials to topical and transdermal applications.

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