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用于真菌感染快速、高效及高组织穿透性治疗的传统草药(艾绒)改性氧化锌纳米片

Traditional Herb (Moxa) Modified Zinc Oxide Nanosheets for Quick, Efficient and High Tissue Penetration Therapy of Fungal Infection.

作者信息

Weng Zhenzhen, Wei Qi, Ye Cheng, Xu Yingying, Gao Jie, Zhang Wei, Liu Lubing, Zhang Yue, Hu Jiangnan, Zhong Qin, Sun Jian, Wang Xiaolei

机构信息

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, Jiangxi 330088, P. R. China.

The National Engineering Research Center for Bioengineering Drugs and the Technologies, Institute of Translational Medicine, Nanchang University, Nanchang, Jiangxi 330088, P. R. China.

出版信息

ACS Nano. 2024 Feb 13;18(6):5180-5195. doi: 10.1021/acsnano.3c13164. Epub 2024 Feb 1.

DOI:10.1021/acsnano.3c13164
PMID:38299982
Abstract

Fungal infection possesses the characteristics of high invasion depth and easy formation of a biofilm under the skin, which greatly hinders the treatment process. Here, traditional Chinese medicine moxa is carbonized and modified with zinc oxide (ZnO) nanosheets to synthesize carbonized moxa@ZnO (CMZ) with the dual response properties of yellow light (YL) and ultrasound (US) for synergistic antifungal therapy. CMZ with narrow bandgap can respond to long-wavelength YL that is highly safe and helpful for skin repair. Simultaneously, CMZ with a piezoelectric effect can further enhance the photocatalytic efficiency under the stimulation of US with high tissue penetration. Gene mechanism investigation indicates that when exposed to US and YL irradiation, CMZ-based therapy can adjust the expression of genes associated with fungal virulence, metabolic activity, mycelial growth and biofilm development, thus efficaciously eradicating planktonic (. ) and mature biofilm. Importantly, despite the 1.00 cm thick tissue barrier, CMZ can rapidly eliminate 99.9% of . within 4 min, showing a satisfactory deep fungicidal efficacy. The therapeutic effect of this strategy is demonstrated in both open wound and deep cutaneous infection tests, speaking of dramatically better efficacy than the traditional fungicide ketoconazole (KTZ).

摘要

真菌感染具有侵袭深度高和易于在皮肤下形成生物膜的特点,这极大地阻碍了治疗过程。在此,将传统中药艾绒用氧化锌(ZnO)纳米片碳化改性,合成具有黄光(YL)和超声(US)双重响应特性的碳化艾绒@ZnO(CMZ)用于协同抗真菌治疗。具有窄带隙的CMZ可响应高安全性且有助于皮肤修复的长波长YL。同时,具有压电效应的CMZ在具有高组织穿透性的US刺激下可进一步提高光催化效率。基因机制研究表明,当受到US和YL照射时,基于CMZ的治疗可调节与真菌毒力、代谢活性、菌丝生长和生物膜形成相关的基因表达,从而有效根除浮游菌(. )和成熟生物膜。重要的是,尽管存在1.00厘米厚的组织屏障,CMZ仍可在4分钟内迅速清除99.9%的. ,显示出令人满意的深部杀菌效果。该策略的治疗效果在开放性伤口和深部皮肤感染试验中均得到证实,其疗效明显优于传统杀菌剂酮康唑(KTZ)。

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