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Plasmonic MXene-based nanocomposites exhibiting photothermal therapeutic effects with lower acute toxicity than pure MXene

机译:基于等离子MXene的纳米复合材料具有光热治疗作用,其急性毒性比纯MXene低

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Purpose: Here, we fabricated two plasmonic 2D Tisub3/subCsub2/subTsubx/sub-based nanocomposites (Au/MXene and Au/Fesub3/subOsub4/sub/MXene) with similarly high anti-cancer photothermal therapy (PTT) capabilities, but with less in vivo toxicity than a pure MXene. Methods: Au/MXene was synthesized by in situ reduction of tetrachloroauric acid using NaBHsub4/sub on Tisub3/subCsub2/subTsubx/sub flakes. For targeted PTT, magnetic Au/Fesub3/subOsub4/sub/MXene was synthesized via a reaction between freshly prepared magnetite Fesub3/subOsub4/sub NPs and MXene solution, followed by in situ integration of gold nanoparticles (AuNPs). Results: Morphological characterization by XRD, SEM, and TEM revealed the successful synthesis of Au/MXene and Au/Fesub3/subOsub4/sub/MXene. Both new composites exhibited a significant in vitro dose-dependent PTT effect against human breast cancer cells MCF7. Interestingly, in vivo acute toxicity assays using zebrafish embryos indicated that Au/MXene and Au/Fesub3/subOsub4/sub/MXene had less embryonic mortality (LCsub50/sub ? 1000 μg/mL) than pure MXene (LCsub50/sub=257.46 μg/mL). Conclusion: Our new Au/MXene and Au/Fesub3/subOsub4/sub/MXene nanocomposites could be safer and more suitable than the pure MXene for biomedical applications, especially when targeted PTT is warranted.
机译:目的:在此,我们制备了两种基于等离子的2D Ti 3 C 2 T x 基纳米复合材料(Au / MXene和Au / Fe 3 O 4 / MXene)具有类似的高抗癌光热疗法(PTT)功能,但体内毒性低于纯MXene。方法:在Ti 3 C 2 T x 上用NaBH 4 原位还原四氯金酸合成Au / MXene。子>薄片。对于目标PTT,通过新制备的磁铁矿Fe 3 O 4之间的反应合成了Au / Fe 3 O 4 / MXene磁性 NPs和MXene溶液,然后原位整合金纳米颗粒(AuNPs)。结果:通过X射线衍射,扫描电镜和透射电镜的表征,表明成功合成了Au / MXene和Au / Fe 3 O 4 / MXene。两种新的复合材料均对人乳腺癌细胞MCF7表现出显着的体外剂量依赖性PTT效应。有趣的是,使用斑马鱼胚胎进行的体内急性毒性试验表明,Au / MXene和Au / Fe 3 O 4 / MXene的胚胎死亡率较低(LC 50 1000μg/ mL)比纯MXene(LC 50 = 257.46μg/ mL)。结论:我们的新型Au / MXene和Au / Fe 3 O 4 / MXene纳米复合材料比纯MXene更安全,更适合用于生物医学应用,尤其是在靶向PTT保证。

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