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二维 MXene 增强了一种用于第二近红外生物窗口光学生物可植入药物的治疗性微针贴片。

A two-dimensional MXene potentiates a therapeutic microneedle patch for photonic implantable medicine in the second NIR biowindow.

机构信息

School of Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, P. R. China.

出版信息

Nanoscale. 2020 May 14;12(18):10265-10276. doi: 10.1039/d0nr01444c.

Abstract

Due to the refractory nature and recurrence of cancer, the related treatments are continuously updated and improved. Here, we designed a soluble polyvinylpyrrolidone (PVP) microneedle system loaded with a two-dimensional (2D) MXene (Nb2C nanosheets) for medical implantation and photothermal ablation of superficial tumors in the second near infrared biological window (NIR-II). In this system, 2D Nb2C nanosheets acted as high-performance photothermal nanoagents, and biocompatible PVP functioned as matrix material to maintain the structure of the needles. The microneedle system exhibited sufficient skin-penetration ability and distinctive dissolution behavior. After being inserted into the skin of the tumor site, it can be dissolved within a short period to release the loaded 2D Nb2C nanosheets. The temperature of the tumor site increased rapidly to almost 70 °C under the irradiation of a 1064 nm laser at a power density of 1 W cm-2, and this could provide sufficient conditions for photonic tumor ablation. After two weeks of treatment, the tumor growth was significantly suppressed, compared to that of the control group, and the survival rate of mice was clearly improved. In addition, the biocompatibility of the microneedle system was tested on mice, in which no significant toxicity or side effects were observed. Therefore, this kind of microneedle system with minimally invasive, safe and effective features is expected to be developed as an intriguing strategy for localized superficial cancer treatment.

摘要

由于癌症的难治性和复发性,相关治疗方法在不断更新和改进。在这里,我们设计了一种可溶解的聚乙烯吡咯烷酮(PVP)微针系统,负载二维(2D)MXene(Nb2C 纳米片),用于医学植入和近红外二区(NIR-II)中浅层肿瘤的光热消融。在该系统中,二维 Nb2C 纳米片作为高性能光热纳米试剂,生物相容性的 PVP 作为基质材料来维持针的结构。微针系统表现出足够的皮肤穿透能力和独特的溶解行为。在插入肿瘤部位的皮肤后,它可以在短时间内溶解,释放负载的二维 Nb2C 纳米片。在 1 W cm-2 的 1064nm 激光照射下,肿瘤部位的温度迅速升高到近 70°C,这为光热肿瘤消融提供了足够的条件。经过两周的治疗,与对照组相比,肿瘤生长明显受到抑制,小鼠的存活率明显提高。此外,我们在小鼠身上测试了微针系统的生物相容性,没有观察到明显的毒性或副作用。因此,这种具有微创、安全、有效的特点的微针系统有望被开发为局部浅层癌症治疗的一种有吸引力的策略。

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