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NIR -I and NIR-II irradiation tumor ablation using NbS2 nanosheets as the photothermal agent

机译:使用近红外光谱- i和NIR-II照射肿瘤消融NbS2 nanosheets光热光谱分析代理

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摘要

Photothermal therapy has been considered a powerful means of cancer therapy due to its minimal invasiveness, effectiveness, and convenience. Although promising, the therapeutic effects are greatly limited as they rely on the photothermal agent (PTA). It is urgent to develop new PTAs with high photothermal conversion performance, especially under irradiation in the long-wavelength biowindows. Herein, a dual-biowindow-responsive PTA made of NbS2-PVP nanosheets was fabricated to be used both in the first near-infrared (NIR-I) and the second near-infrared (NIR-II) biowindows. With excellent hydrophilicity and biocompatibility, the nanosheets could effectively convert the near-infrared (NIR) light into heat, showing prominent photothermal stability. The calculated photothermal conversion efficiencies reached 59.2% (under NIR-I excitation) and 69.1% (under NIR-II excitation), respectively, which are comparable to those of metallic PTAs. The NbS2-PVP nanosheets had low cytotoxicity and could trigger strong photothermal treatment and cause cancer cell death upon irradiation by NIR-I or NIR-II light in vitro. Moreover, we have also demonstrated the highly efficient tissue ablation and tumor inhibition capability of NbS2-PVP nanosheets in vivo. This work explores an effective PTA of two-dimensional nanomaterials in NIR-I and NIR-II biowindows and offers a reference for the design of new kinds of PTAs.
机译:光照疗法被认为是癌症治疗由于它的强有力的手段最小的侵袭性、有效性和方便。效果非常有限,因为他们依赖光热光谱分析代理(PTA)。新协议正在高光照转换性能,特别是在辐照下长波biowindows。dual-biowindow-responsive PTA NbS2-PVP做的nanosheets是捏造的第一近红外(NIR-I)和第二近红外(NIR-II) biowindows。亲水性和生物相容性nanosheets可以有效地转换近红外(NIR)光成热,显示著名的光热光谱分析的稳定性。光热光谱分析转换效率达到59.2%(在NIR-I激励)和69.1%(下NIR-II激发),分别是类似的金属和平。NbS2-PVP nanosheets低细胞毒性可能会引发强烈的光照治疗和导致癌症细胞死亡后由NIR-I辐照或NIR-II光体外。证明了高效的组织消融NbS2-PVP和肿瘤抑制功能nanosheets体内。有效的二维纳米材料在PTANIR-I和NIR-II biowindows和提供了一个参考设计的新型和平。

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