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Bottom-up synthesis of ultra-small molybdenum disulfide-polyvinylpyrrolidone nanosheets for imaging-guided tumor regression

机译:自底向上合成超小二硫化钼-聚乙烯吡咯烷酮纳米片的成像指导肿瘤消退

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摘要

The two-dimensional molybdenum disulfide (MoS2) nanosheet has been extensively studied as a novel photothermal transducing agent. However, top-down exfoliation to produce MoS2 nanosheets is inefficient, and MoS2 nanosheet surface modification procedures are complex. Here, we report the synchronous synthesis and surface modification of 2D MoS2 nanosheets with a polyvinylpyrrolidone (PVP)-assisted one-pot hydrothermal method. Due to the chelating-coordinating effect between the lone-pair electrons of the PVP carbonyl oxygen and the unoccupied 4d orbitals of molybdenum, the PVP chains could graft onto the surface of MoS2 and guide the growth of the nanosheets. The resultant MoS2-PVP nanosheets were ultra-small (21.4 ± 4.4 nm) and exhibited excellent colloidal stability. Moreover, the strong near-infrared absorption of the MoS2-PVP nanosheets enabled sensitive photothermal conversion performance (with a mass extinction coefficient of 23.33 L g−1 cm−1) and in vitro/in vivo photoacoustic imaging. The MoS2-PVP nanosheets had excellent in vitro and in vivo compatibility and were used for highly efficient tumor photothermal therapy in xenograft tumor-bearing mice. The findings in this report will facilitate the rational design of stable colloidal 2D transition-metal dichalcogenides for effective photothermal cancer therapy.
机译:二维二硫化钼(MoS2)纳米片已被广泛研究作为一种新型的光热转换剂。然而,自上而下的剥落以生产MoS2纳米片是无效的,并且MoS2纳米片的表面改性程序很复杂。在这里,我们报告用聚乙烯吡咯烷酮(PVP)辅助的一锅水热法同步合成和二维MoS2纳米片的表面改性。由于PVP羰基氧的孤对电子与钼的未占据4d轨道之间的螯合配位作用,PVP链可以接枝到MoS2的表面上并指导纳米片的生长。所得的MoS2-PVP纳米片超小(21.4±4.4 nm),并具有出色的胶体稳定性。此外,MoS2-PVP纳米片材的强近红外吸收能力实现了灵敏的光热转换性能(质量消光系数为23.33 L g -1 cm -1 )和体外/体内光声成像。 MoS2-PVP纳米片具有优异的体外和体内相容性,可用于异种移植荷瘤小鼠的高效肿瘤光热疗法。本报告中的发现将有助于合理设计稳定的胶体2D过渡金属二硫代双氰化物,以进行有效的光热癌症治疗。

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