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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Multifunctional hybrid materials for combined photo and chemotherapy of cancer
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Multifunctional hybrid materials for combined photo and chemotherapy of cancer

机译:用于癌症的光化学疗法的多功能混合材料

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Combined chemo and photothermal therapy in in vitro testing has been achieved by means of multifunctional nanoparticles formed by plasmonic gold nanoclusters with a protecting shell of porous silica that contains an antitumor drug. We propose a therapeutic nanoplatform that associates the optical activity of small gold nanoparticles aggregates with the cytotoxic activity of 20(S)-camptothecin simultaneously released for the efficient destruction of cancer cells. For this purpose, a method was used for the controlled assembly of gold nanoparticles into stable clusters with a tailored absorption cross-section in the vis/NIR spectrum, which involves aggregation in alkaline medium of 15 nm diameter gold colloids protected with a thin silica layer. Clusters were further encapsulated in an ordered homogeneous mesoporous silica coating that provides biocompatibility and stability in physiological fluids. After internalization in 42-MG-BA human glioma cells, these protected gold nanoclusters were able to produce effective photothermolysis under femtosecond pulse laser irradiation of 790 nm. Cell death occurred by combination of a thermal mechanism and mechanical disruption of the membrane cell due to induced generation of micrometer-scale bubbles by vaporizing the water inside the channels of the mesoporous silica coating. Moreover, the incorporation of 20(S)-camptothecin within the pores of the external shell, which was released during the process, provoked significant cell death increase. This therapeutic model could be of interest for application in the treatment and suppression of non-solid tumors.
机译:化学和光热疗法相结合的体外测试已经通过由等离子金纳米团簇形成的多功能纳米颗粒实现,该多功能纳米颗粒具有包含抗肿瘤药的多孔二氧化硅保护壳。我们提出了一种治疗性纳米平台,该平台将小金纳米颗粒聚集体的光学活性与同时释放的20(S)-喜树碱的细胞毒活性相关联,以有效破坏癌细胞。为此,使用一种方法将金纳米颗粒有控制地组装成可见/近红外光谱中具有定制吸收截面的稳定簇,该方法涉及在碱性介质中聚集15纳米直径的金胶体,并用二氧化硅薄层保护。 。将团簇进一步封装在有序的均相介孔二氧化硅涂层中,该涂层在生理流体中提供生物相容性和稳定性。在42-MG-BA人类神经胶质瘤细胞内化后,这些受保护的金纳米簇在790 nm飞秒脉冲激光照射下能够产生有效的光热解。通过使介孔二氧化硅涂层的通道内的水蒸发而引起的微米级气泡的诱导,导致膜细胞的热机制和机械破裂相结合而发生细胞死亡。此外,在该过程中释放的外壳孔中掺入20(S)-喜树碱引起了明显的细胞死亡增加。该治疗模型对于在治疗和抑制非实体瘤中可能是感兴趣的。

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