Tumor cells targetable graphene oxide doped microneedle for synergistic photothermal-chemotherapy treatment of melanoma

光热治疗 化学 石墨烯 氧化物 兴奋剂 黑色素瘤 化疗 癌症研究 纳米技术 光电子学 内科学 医学 材料科学 有机化学
作者
Zhiqiang Zhang,Junfang Ke,Yuxin Dai,Chenxi Fang,Yunfeng Dai,Chen Wang,Chen Wang,Meitao Duan,Jungang Ren,Ming Chen,Chen Wang,Chen Wang
出处
期刊:Journal of Pharmaceutical Analysis [Elsevier BV]
卷期号:15 (10): 101270-101270 被引量:6
标识
DOI:10.1016/j.jpha.2025.101270
摘要

Melanoma is characterized by high malignancy, ranking the third among skin malignancies, and is associated with lack of specific treatment options and poor prognosis. Therefore, the development of effective therapies for melanoma is imperative. A critical challenge in addressing subcutaneous disease lies in overcoming the skin barrier. In this study, we engineered a microneedle (MN) system that integrates chemotherapy, photothermal therapy (PTT), and targeted therapy to enhance anti-tumor efficacy while effectively penetrating the skin barrier. In vitro studies have demonstrated that the MN drug delivery system (DDS) can effectively penetrate the stratum corneum of the skin, deliver therapeutics to subcutaneous tumor sites, and establish a drug reservoir at these locations to exert anti-tumor effects. Cellular experiments indicated that the engineered PTT chemotherapy-targeted MNs can be internalized by tumor cells, exhibiting enhanced cytotoxicity against them. In vivo pharmacological investigations revealed that the combination of PTT and chemotherapy delivered via this MN DDS produced synergistic anti-tumor effects, achieving a tumor inhibition rate of up to 98.15%. This in situ DDS minimizes involvement with other organs, significantly reducing chemotherapy-related side effects. In summary, the PTT chemotherapy-targeted MNs developed in this study demonstrate promising application potential by enhancing anti-tumor efficacy while minimizing adverse effects. • The microneedle transdermal drug delivery system based on graphene oxide loaded with DOX and ICG was established. • In situ drug release, chemotherapy, dual photothermal therapy work together enhanced the anti-melanoma efficiency. • The synergistic photothermal-chemotherapy perfected anti-melanoma efficiency while minimizing side effects.
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