透皮
药品
黑色素瘤
药物输送
合理设计
医学
靶向给药
计算机科学
风险分析(工程)
药理学
临床疗效
设计要素和原则
纳米技术
临床试验
生化工程
纳米医学
活性成分
行动地点
作者
Mengru Cai,Yiman Jia,Tingting Fu,Jiahui Kong,Yu Qiu,Yukun Zhao,Xiang Li,Yuqin Yang,Dong Yi Bai
摘要
Melanoma is a type of tumor that originates in the skin. Traditional treatment methods are unable to achieve effective drug concentrations at the tumor site. Many new drug delivery systems and treatment strategies have been developed to enhance the therapeutic effect of melanoma. Based on transdermal drug delivery technology, microneedles (MNs) have become a new strategy for the treatment of melanoma. MNs can surpass the limitations of traditional drug delivery methods, achieving remarkable safety and effectiveness, precise targeting, and painless delivery. Currently, MNs are increasingly being used as drug carriers to enhance therapeutic effects by increasing local drug concentrations. Alternatively, MNs are fabricated into platforms with different responsiveness to construct intelligent drug delivery systems, thereby maximizing the efficacy of active substances. This review systematically summarizes the application of MNs in melanoma treatment, including their preparation methods, treatment modes, and responsive design. The advantages and disadvantages of different types of MNs and their applications in the treatment of melanoma have been systematically expounded. Finally, the prospects of intelligent MNs in the treatment of melanoma were also discussed. Although MNs have made significant progress in clinical applications, issues such as the consistency of their size, biocompatibility, and cost control for large-scale production remain major challenges that need to be addressed urgently. Therefore, the clinical application of therapies based on MNs is still limited, highlighting the key opportunities for future research.
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