Center for Physical Sciences and Technology, Sauletekio Ave. 3, 10257, Vilnius, Lithuania.
Institute for Nuclear Problems, Belarusian State University, Bobruiskaya 11, 220006, Minsk, Belarus.
Sci Rep. 2020 Dec 17;10(1):22174. doi: 10.1038/s41598-020-79238-6.
Theranostics is the emerging field of medicine that uniquely combines diagnostic techniques and active agents to diagnose and treat medical conditions simultaneously or sequentially. Finding a theranostic agent capable to cure the affected cells and being safe for the healthy ones is the key for successful treatment. Here, we demonstrate that agglomerated single-walled carbon nanotubes (SWCNTs) are promising theranostic agent that enables photo-activated 'cold' destruction of the cancer cells keeping their environment alive. The absorption of picosecond pulses by SWCNT agglomerates results in the mechanical (due to photoacoustic effect) rather than photothermal cancer cell destruction, which was visualized by micro-Raman and ultrafast near-infrared CARS. The developed theoretical model allows us to distinguish photothermal, photoacoustic, and photothermoacoustic regimes of the cancer cell destruction, and also to optimize SWCNT-based theranostics recipe.
治疗学是一门新兴的医学领域,它独特地将诊断技术和活性剂结合起来,同时或顺序地诊断和治疗医疗状况。寻找一种能够治愈受影响细胞同时对健康细胞安全的治疗剂是成功治疗的关键。在这里,我们证明了聚集的单壁碳纳米管(SWCNT)是一种很有前途的治疗剂,它能够通过光激活的“冷”破坏癌细胞,同时保持其周围环境的存活。SWCNT 聚集体吸收皮秒脉冲会导致机械(由于光声效应)而不是光热癌细胞破坏,这可以通过微拉曼和超快近红外 CARS 来可视化。所开发的理论模型允许我们区分癌细胞破坏的光热、光声和光热声区域,并优化基于 SWCNT 的治疗方案。