Application of microneedle arrays in cosmetics: Promises, advances, and challenges

Q3 Medicine
Amarjitsing Rajput , Anuradha Patil , Priyanka Kandhare , Atmaram Pawar
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引用次数: 0

Abstract

Microneedle technology involves skin puncturing and has emerged as an innovative approach for drug delivery and cosmetic applications. MNs offer advantages over traditional injections, such as reduced pain, infection risks, and improved control of drug delivery. Cosmetic products aim to alter or enhance the appearance of the human body, while transdermal drug delivery involves administering drugs via the skin for local or systemic treatment. The use of MNs in combination with cosmetics has shown promise in improving nutrient delivery, skin healing, and penetration of cosmeceuticals. The development of microfabrication technologies has allowed the production of MNs in various sizes, shapes, and materials mainly used for loading cosmetic compounds. Clinical trial studies have explored MNs' clinical potential in drug delivery, diagnosis and administration of cosmeceuticals. The review highlights the superior efficacy of dissolving MNs in enhancing transdermal drug delivery compared to traditional methods, which are currently used by several researchers and evidenced by multiple clinical studies. The current review article compilation encompasses the microneedle in cosmetic delivery and its applications in managing various skin diseases. It differs from earlier available reviews on MNs in several aspects, novelty lies as it describes microneedle applications in cosmetics. It also focuses on recent technologies for transdermal delivery like iontophoresis, sonophoresis, magnetophoresis, electroporation, laser ablation, and jet injectors. It mainly covers the role of MNs in managing various diseases by covering case studies. It also covers challenges, commercial successes, safety measures, regulatory facts, and future perspectives of microneedles in cosmetic delivery. This article highlights the potential of MNs to revolutionize transdermal drug delivery, which will benefit various industries and patients worldwide. Furthermore, this article emphasizes the potential impact of ongoing research and commercialization of MNs.

Abstract Image

微针阵列在化妆品中的应用:前景、进步与挑战
微针技术涉及皮肤穿刺,已成为一种创新的给药和美容应用方法。与传统注射相比,微针具有减轻疼痛、降低感染风险、改善给药控制等优势。美容产品旨在改变或改善人体外观,而透皮给药则是通过皮肤给药进行局部或全身治疗。将 MN 与化妆品结合使用,在改善营养输送、皮肤愈合和化妆品渗透方面大有可为。随着微加工技术的发展,可以生产出各种尺寸、形状和材料的 MN,主要用于装载化妆品化合物。临床试验研究探索了 MNs 在药物输送、诊断和化妆品用药方面的临床潜力。与传统方法相比,本综述强调了溶解型 MNs 在增强透皮给药方面的卓越功效,这些方法目前已被多位研究人员采用,并得到了多项临床研究的证实。本综述文章汇编涵盖了微针在化妆品给药及其在治疗各种皮肤病方面的应用。这篇综述文章在多个方面不同于以往关于微针的综述,其新颖之处在于它描述了微针在化妆品中的应用。它还重点介绍了最近的透皮给药技术,如离子导入、声波导入、磁导入、电穿孔、激光烧蚀和喷射注射器。报告主要通过案例研究,介绍了磁导管在治疗各种疾病中的作用。文章还介绍了微针在美容给药方面面临的挑战、商业成功案例、安全措施、监管情况和未来展望。本文强调了微针在彻底改变透皮给药方式方面的潜力,这将使全球各行各业和患者受益。此外,本文还强调了正在进行的微针研究和商业化的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Medicine in Novel Technology and Devices
Medicine in Novel Technology and Devices Medicine-Medicine (miscellaneous)
CiteScore
3.00
自引率
0.00%
发文量
74
审稿时长
64 days
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