Ju Xingkai, Kong Jiao, Qi Guohua, Hou Shuping, Diao Xingkang, Dong Shaojun, Jin Yongdong
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, 230026, China.
Nat Commun. 2024 Jan 26;15(1):762. doi: 10.1038/s41467-024-45070-z.
A wearable biological patch capable of producing multiple responses to light and electricity without interfering with daily activities is highly desired for skin cancer treatment, but remains a key challenge. Herein, the skin-mountable electrostimulation-augmented photothermal patch (eT-patch) comprising transparent ionic gel with MXene (TiCT doping is developed and applied for the treatment of melanoma under photostimulation at 0.5 W/cm. The eT-patch designed has superior photothermal and electrical characteristics owing to ionic gels doped with MXene which provides high photothermal conversion efficiency and electrical conductivity as a medium. Simultaneously, the ionic gel-based eT-patch having excellent optical transparency actualizes real-time observation of skin response and melanoma treatment process under photothermal and electrical stimulation (PES) co-therapy. Systematical cellular study on anti-tumor mechanism of the eT-patch under PES treatment revealed that eT-patch under PES treatment can synergically trigger cancer cell apoptosis and pyroptosis, which together lead to the death of melanoma cells. Due to the obvious advantages of relatively safe and less side effects in healthy organs, the developed eT-patch provides a promising cost-effective therapeutic strategy for skin tumors and will open a new avenue for biomedical applications of ionic gels.
一种能够在不干扰日常活动的情况下对光和电产生多种响应的可穿戴生物贴片在皮肤癌治疗中具有很高的需求,但仍然是一个关键挑战。在此,开发了一种可贴附在皮肤上的电刺激增强光热贴片(eT贴片),其包含含有MXene(TiCT)的透明离子凝胶,并将其应用于在0.5 W/cm的光刺激下治疗黑色素瘤。所设计的eT贴片由于掺杂了MXene的离子凝胶作为介质,具有高光热转换效率和电导率,因此具有优异的光热和电学特性。同时,基于离子凝胶的eT贴片具有出色的光学透明度,可在光热和电刺激(PES)联合治疗下实现对皮肤反应和黑色素瘤治疗过程的实时观察。对eT贴片在PES治疗下的抗肿瘤机制进行的系统细胞研究表明,PES治疗下的eT贴片可协同触发癌细胞凋亡和焦亡,共同导致黑色素瘤细胞死亡。由于在健康器官中相对安全且副作用较小的明显优势,所开发 的eT贴片为皮肤肿瘤提供了一种有前景的经济高效治疗策略,并将为离子凝胶的生物医学应用开辟一条新途径。