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首页> 外文期刊>International Journal of Nanomedicine >Near-infrared light-mediated photodynamic/photothermal therapy nanoplatform by the assembly of Fe3O4 carbon dots with graphitic black phosphorus quantum dots
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Near-infrared light-mediated photodynamic/photothermal therapy nanoplatform by the assembly of Fe3O4 carbon dots with graphitic black phosphorus quantum dots

机译:Fe 3 O 4 碳点与石墨黑磷量子点的组装近红外光介导的光动力/光热疗法纳米平台

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摘要

Background: Recently, combined photodynamic therapy (PDT) and photothermal therapy (PTT) has become a desired treatment for cancer. However, the development of economic, high-efficiency, and safe photosensitizers/photothermal agents remains a significant challenge. Methods: A novel nanocomposite has been developed via the assembly of iron oxide carbon dot (Fe3O4-CDs) nanoparticles and black phosphorus quantum dots (genipin [GP]-polyglutamic acid [PGA]-Fe3O4-CDs@BPQDs), and this nanocomposite shows a broad light-absorption band and a photodegradable character. Results: In vitro and in vivo assays indicated that GP-PGA-Fe3O4-CDs@BPQDs were highly biocompatible and exhibited excellent tumor-inhibition efficacy, due to the synergistic PTT and PDT via a near-infrared laser. Importantly, in vivo tumor magnetic resonance imaging (MRI) results illustrated that GP-PGA-Fe3O4-CDs@BPQDs can be specifically applied for enhanced T 2 MRI of tumors. This work presents the first combined application of a PDT and PTT effect deriving from BPQDs and MRI from Fe3O4-CDs, which may promote utilization of black BPQDs in biomedicine. Conclusion: As expected, GP-PGA-Fe3O4-CDs@BPQDs displayed a dramatically enhanced ability to destroy tumor cells, due to the synergistic combination of PTT and PDT.
机译:背景技术:最近,光动力疗法(PDT)和光热疗法(PTT)的结合已成为治疗癌症的理想方法。然而,经济,高效和安全的光敏剂/光热剂的开发仍然是重大挑战。方法:通过组装氧化铁碳点(Fe 3 O 4 -CDs)纳米粒子和黑磷量子点(genipin [GP]-聚谷氨酸[PGA] -Fe 3 O 4 -CDs @ BPQDs),并且该纳米复合材料显示出较宽的光吸收带和可光降解的特性。结果:体外和体内试验表明,GP-PGA-Fe 3 O 4 -CDs @ BPQDs具有高度的生物相容性,并且由于具有良好的抑瘤作用,因此具有良好的抑瘤作用。通过近红外激光实现PTT和PDT协同作用。重要的是,体内肿瘤磁共振成像(MRI)结果表明GP-PGA-Fe 3 O 4 -CDs @ BPQDs可以专门用于增强的T 2 肿瘤的MRI。这项工作提出了PD
和PTT效应在Fe 3 O 4 -CD中的BPQD和MRI的首次联合应用,这可能会促进黑色BPQD在生物医学中的利用。结论:正如预期的那样,由于PTT和PDT的协同作用,GP-PGA-Fe 3 O 4 -CDs @ BPQDs显示出显着增强的破坏肿瘤细胞的能力。

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