MXene-Assisted Ablation of Cells with a Pulsed Near-Infrared Laser

MXenes公司 材料科学 光热治疗 激光器 光电子学 烧蚀 生物相容性 纳米技术 生物医学工程 光学 医学 物理 内科学 冶金
作者
Sergiy Kyrylenko,Oleksiy Gogotsi,Ivan Baginskiy,Vitalii Balitskyi,Veronika Zahorodna,Yevheniia Husak,Ilya Yanko,Mykola Pernakov,Anton Roshchupkin,Mykola Serhiiovych Lyndin,Bernhard B. Singer,Vladimir Buranich,A.D. Pogrebnjak,Oksana Sulaieva,Oleksandr Solodovnyk,Yury Gogotsi,Мaksym Pogorielov
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (25): 28683-28696 被引量:18
标识
DOI:10.1021/acsami.2c08678
摘要

Innovative therapies are urgently needed to combat cancer. Thermal ablation of tumor cells is a promising minimally invasive treatment option. Infrared light can penetrate human tissues and reach superficial malignancies. MXenes are a class of 2D materials that consist of carbides/nitrides of transition metals. The transverse surface plasmons of MXenes allow for efficient light absorption and light-to-heat conversion, making MXenes promising agents for photothermal therapy (PTT). To date, near-infrared (NIR) light lasers have been used in PTT studies explicitly in a continuous mode. We hypothesized that pulsed NIR lasers have certain advantages for the development of tailored PTT treatment targeting tumor cells. The pulsed lasers offer a wide range of controllable parameters, such as power density, duration of pulses, pulse frequency, and so on. Consequently, they can lower the total energy applied and enable the ablation of tumor cells while sparing adjacent healthy tissues. We show for the first time that a pulsed 1064 nm laser could be employed for selective ablation of cells loaded with Ti3C2Tx MXene. We demonstrate both low toxicity and good biocompatibility of this MXene in vitro, as well as a favorable safety profile based on the experiments in vivo. Furthermore, we analyze the interaction of MXene with cells in several cell lines and discuss possible artifacts of commonly used cellular metabolic assays in experiments with MXenes. Overall, these studies provide a basis for the development of efficient and safe protocols for minimally invasive therapies for certain tumors.
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