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Ultrasound assisted one-step synthesis of Au@Pt dendritic nanoparticles with enhanced NIR absorption for photothermal cancer therapy

机译:超声波辅助Au @ Pt树突纳米粒子的一步合成,具有增强的光热癌疗法的NIR吸收

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摘要

Near-infrared (NIR) light-mediated non-invasive photothermal therapy (PTT) has attracted considerable attention for cancer treatment. Strong optical absorption located in the NIR region and high performance in converting light to heat should be emphasized for the development of ideal photothermal agents. In this report, Au@Pt bimetallic nanoparticles (Au@Pt NPs) with dendritic structure were synthesized through an ultrasound assisted one-step method in aqueous solution. The absorption of Au@Pt NPs at 808 nm was obviously enhanced compared to that of Au NPs and could be easily manipulated via the amount of Pt NPs. Au@Pt NPs exhibited excellent photostability with a photothermal conversion efficiency of 44.2%, which is significantly higher than those in most reported studies. Au@Pt NPs with thiol PEG functionalization presented improved cellular killing capacity upon NIR laser irradiation. Moreover, the potential application of Au@Pt NPs was also investigated in xenograft tumor mouse model. Overall, the remarkable therapeutic characteristics of PEGylated Au@Pt NPs provide them with great potential for future cancer treatment.
机译:近红外(NIR)光介导的无侵袭性光热疗(PTT)吸引了癌症治疗的相当大的关注。应强调位于NIR区域的强光学吸收和在将光转换为热量的高性能,以便在理想的光热试剂的发展中强调。在本报告中,通过在水溶液中的超声辅助一步法合成具有树突结构的Au @ Pt双金属纳米颗粒(Au @ Pt nps)。与Au NPS相比,808nm的Au @ pt nps的吸收明显增强,并且可以通过Pt NPS容易地操纵。 Au @ Pt NPS表现出优异的光稳定性,光热转换效率为44.2%,显着高于大多数报告研究中的光激性。具有硫醇PEG官能化的AU @ Pt NPS在NIR激光照射时提高了细胞杀伤能力。此外,在异种移植肿瘤小鼠模型中还研究了Au @ pt nps的潜在应用。总体而言,聚乙二醇化AU @ Pt NPS的显着治疗特性为未来癌症治疗提供了极大的潜力。

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    《RSC Advances》 |2019年第49期|共7页
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  • 正文语种 eng
  • 中图分类 化学;
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