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用于先进应用的可分离微针的研究进展。

Research progress on detachable microneedles for advanced applications.

作者信息

Park SeungHyun, Lee KangJu, Ryu WonHyoung

机构信息

Department of Mechanical Engineering, Yonsei University, Republic of Korea.

School of Healthcare and Biomedical Engineering, Chonnam National University, Republic of Korea.

出版信息

Expert Opin Drug Deliv. 2022 Sep;19(9):1115-1131. doi: 10.1080/17425247.2022.2121388. Epub 2022 Sep 7.

DOI:10.1080/17425247.2022.2121388
PMID:36062366
Abstract

INTRODUCTION

Microneedles (MNs) have undergone great advances in transdermal drug delivery, and commercialized MN applications are currently available in vaccination and cosmetic products. Despite the development of MN technologies, common limitations of MN products still exist. Typical MN patches are applied to target tissues, where the substrate of an MN patch must remain until the drug is delivered, which reduces patients' compliance and hinders the applicability of the MN technique to many diseases in various tissues. MN research is ongoing to solve this issue.

AREAS COVERED

Most recent MNs developed by combining various biomaterials with appropriate fabrication processes are detachable MNs (DeMNs). Because of advances in biomaterials and fabrication techniques, various DeMNs have been rapidly developed. In this review, we discuss four types of DeMN: substrate-separable, multi-layered, crack-inducing, and shell DeMN. These DeMNs deliver various therapeutic agents ranging from small- and large-molecular-weight drugs to proteins and even stem cells for regeneration therapy. Furthermore, DeMNs are applied to skin as well as non-transdermal tissues.

EXPERT OPINION

It has become increasingly evident that novel MN technologies can be expected in terms of designs, fabrication methods, materials, and even possible application sites given the recent advances in DeMNs.

摘要

引言

微针在经皮给药方面取得了巨大进展,目前微针应用已在疫苗接种和化妆品中实现商业化。尽管微针技术有所发展,但微针产品仍存在一些常见局限性。典型的微针贴片应用于目标组织,在药物递送之前微针贴片的基底必须一直保留,这降低了患者的依从性,并阻碍了微针技术在各种组织中对多种疾病的适用性。目前正在进行微针研究以解决这一问题。

涵盖领域

通过将各种生物材料与适当的制造工艺相结合而开发的最新微针是可分离微针(DeMNs)。由于生物材料和制造技术的进步,各种可分离微针迅速发展。在本综述中,我们讨论了四种类型的可分离微针:基底可分离型、多层型、诱导裂纹型和壳型可分离微针。这些可分离微针可递送各种治疗剂,从小分子和大分子药物到蛋白质,甚至用于再生治疗的干细胞。此外,可分离微针可应用于皮肤以及非经皮组织。

专家观点

鉴于可分离微针最近的进展,从设计、制造方法、材料甚至可能的应用部位来看,新型微针技术有望不断涌现,这一点已越来越明显。

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1
Research progress on detachable microneedles for advanced applications.用于先进应用的可分离微针的研究进展。
Expert Opin Drug Deliv. 2022 Sep;19(9):1115-1131. doi: 10.1080/17425247.2022.2121388. Epub 2022 Sep 7.
2
Advances in microneedles for non-transdermal applications.用于非透皮应用的微针研究进展。
Expert Opin Drug Deliv. 2022 Sep;19(9):1081-1097. doi: 10.1080/17425247.2022.2118711. Epub 2022 Sep 14.
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Exploring new frontiers in drug delivery with minimally invasive microneedles: fabrication techniques, biomedical applications, and regulatory aspects.探索微创微针在药物输送中的新前沿:制造技术、生物医学应用和监管方面。
Expert Opin Drug Deliv. 2023 Jun;20(6):739-755. doi: 10.1080/17425247.2023.2201494. Epub 2023 Apr 12.
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Fabrication of coated polymer microneedles for transdermal drug delivery.聚合物涂层微针的制备及其经皮给药应用
J Control Release. 2017 Nov 10;265:14-21. doi: 10.1016/j.jconrel.2017.03.383. Epub 2017 Mar 24.
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Characterization of microneedles and microchannels for enhanced transdermal drug delivery.微针和微通道的特性及其在经皮给药中的增强作用。
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