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In vivo near-infrared mediated tumor destruction by photothermal effect of carbon nanotubes

机译:碳纳米管的光热效应体内近红外介导的肿瘤破坏

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摘要

The photothermal therapy using nanomaterials has been recently attracted as an efficient strategy for the next generation of cancer treatments. Single walled carbon nanotube (SWNT) is an upcoming potent candidate for the photothermal therapeutic agent since it generates significant amounts of heat upon excitation with near-infrared light (NIR, λ = 700-1100 nm) which is transparent to biological systems including skins. Such a photothermal effect can be employed to induce thermal cell death in a noninvasive manner. Here, we demonstrate in vivo obliteration of solid malignant tumors by the combined treatments of SWNTs and NIR irradiation. The photothermally treated mice displayed complete destruction of the tumors without harmful side effects or recurrence of tumors over 6 months, while the tumors treated in other control groups were continuously grown until the death of the mice. Most of the injected SWNTs were almost completely excreted from mice bodies in about 2 months through biliary or urinary pathway. These results suggest that SWNTs may potentially serve as an effective photothermal agent and pave the way to future cancer therapeutics.
机译:最近,使用纳米材料的光热疗法已成为下一代癌症治疗的有效策略。单壁碳纳米管(SWNT)是光热治疗剂的潜在候选者,因为它在被包括皮肤在内的生物系统透明的近红外光(NIR,λ= 700-1100 nm)激发时会产生大量热量。可以采用这种光热效应以无创方式诱导热细胞死亡。在这里,我们证明了SWNTs和近红外辐射的联合治疗在体内消除实体恶性肿瘤。经光热处理的小鼠在6个月内显示出肿瘤的完全破坏,没有有害的副作用或肿瘤复发,而在其他对照组中治疗的肿瘤则持续生长直至小鼠死亡。大约2个月内,大多数经注射的SWNTs通过胆道或尿路几乎完全从小鼠体内排出。这些结果表明,SWNTs可能会充当有效的光热剂,并为将来的癌症治疗铺平道路。

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