Department of Plastic and Reconstruction Surgery, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Tissue Eng Part B Rev. 2023 Jun;29(3):190-202. doi: 10.1089/ten.TEB.2022.0131. Epub 2023 Mar 8.
Wrinkled and loose skin resulting from collagen degradation along with fibers decreasing reflects the youth diminishing. Microneedles (MNs) have opened up new avenues for the development of painless and noninvasive transdermal drug delivery systems for facial rejuvenation. Encapsulated drugs or molecules are transmitted to targeted tissues via percutaneous microchannels, which eliminate potential gastric stimulation or first-pass metabolic effects, as well as boost patient compliance. Although MNs are considered effective and feasible therapeutic alternatives to metals, silicon, and polymers, traditional procedures with reduction processes continue to encounter methodological limitations. In recent years, promising additive manufacturing processes such as three-dimensional printing and two-photon polymerization manufacturing have been developed with the aim of overcoming the limitations by traditional processes to facilitate an efficient and economic production mode. This review summarizes the design, material selection, and manufacturing method for recently advanced MN systems. Furthermore, we also highlight specific polymeric or natural microneedle products, like hyaluronan, plant derivates, and vitamins, for esthetic applications in this review. Impact Statement In this review, the materials and manufactural routes of microneedles (MNs) are detailed. Moreover, similar to the diagnostic or therapeutic MNs, the feature of dispensation with training and ready-to-use is perfect for beautification and anti-aging, which necessitate repeated and long-term usage. Furthermore, the specific polymeric or natural products for esthetic applications of MNs are highlighted in this review.
胶原降解导致纤维减少,从而导致皮肤出现皱纹和松弛,反映出青春的流逝。微针 (MNs) 为无痛和微创经皮药物传递系统的发展开辟了新途径,用于面部年轻化。封装的药物或分子通过经皮微通道传递到靶向组织,消除了潜在的胃刺激或首过代谢效应,并提高了患者的依从性。尽管 MNs 被认为是替代金属、硅和聚合物的有效且可行的治疗方法,但具有还原过程的传统方法仍然存在方法学限制。近年来,已经开发出有前途的增材制造工艺,如三维打印和双光子聚合制造,旨在克服传统工艺的限制,以促进高效和经济的生产模式。本综述总结了最近先进的 MN 系统的设计、材料选择和制造方法。此外,我们还强调了特定的聚合物或天然微针产品,如透明质酸、植物衍生物和维生素,用于美容应用。
声明:在本综述中,详细介绍了微针 (MNs) 的材料和制造路线。此外,与诊断或治疗用 MNs 类似,无需培训且即插即用的特点非常适合美容和抗衰老,这需要重复和长期使用。此外,本综述还强调了 MNs 用于美容应用的特定聚合物或天然产品。