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pH-activatable oxidative stress amplifying dissolving microneedles for combined chemo-photodynamic therapy of melanoma.

Authors :
Yanjuan Huang
Hualu Lai
Jingwen Jiang
Xiaoyu Xu
Zishan Zeng
Lingling Ren
Qiuxing Liu
Meixu Chen
Tao Zhang
Xin Ding
Chunshun Zhao
Shengmiao Cui
Source :
Asian Journal of Pharmaceutical Sciences; Aug2022, Vol. 17 Issue 5, p679-696, 18p
Publication Year :
2022

Abstract

Photodynamic therapy (PDT)-mediated oxidation treatment is extremely attractive for skin melanoma ablation, but the strong hydrophobicity and poor tumor selectivity of photosensitizers, as well as the oxygen-consuming properties of PDT, leading to unsatisfactory therapeutic outcomes. Herein, a tumor acidic microenvironment activatable dissolving microneedle (DHA@HPFe-MN) was developed to realize controlled drug release and excellent chemo-photodynamic therapy of melanoma via oxidative stress amplification. The versatile DHA@HPFe-MN was fabricated by crosslinking a selfsynthesized protoporphyrin (PpIX)-ADH-hyaluronic acid (HA) conjugate HA-ADH-PpIX with "iron reservoir" PA-Fe<superscript>3+</superscript> complex in the needle tip via acylhydrazone bond formation, and dihydroartemisinin (DHA) was concurrently loaded in the hydrogel network. HA-ADH-PpIX with improved water solubility averted undesired aggregation of PpIX to ensure enhanced PDT effect. DHA@HPFe-MN with sharp needle tip, efficient drug loading and excellent mechanical strength could efficiently inserted into skin and reach the melanoma sites, where the acidic pH triggered the degradation of microneedles, enabling Fe-activated and DHA-mediated oxidation treatment, as evidenced by abundant reactive oxygen species (ROS) generation. Moreover, under light irradiation, a combined chemo-photodynamic therapeutic effect was achieved with amplified ROS generation. Importantly, the Fecatalyzed ROS production of DHA was oxygen-independent, which work in synergy with the oxygen-dependent PDT to effectively destroy tumor cells. This versatile microneedles with excellent biosafety and biodegradability can be customized as a promising localized drug delivery system for combined chemo-photodynamic therapy of melanoma. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
18180876
Volume :
17
Issue :
5
Database :
Complementary Index
Journal :
Asian Journal of Pharmaceutical Sciences
Publication Type :
Academic Journal
Accession number :
160123927
Full Text :
https://doi.org/10.1016/j.ajps.2022.08.003