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首页> 外文期刊>Acta biomaterialia >Thermally responsive nanoparticle-encapsulated curcumin and its combination with mild hyperthermia for enhanced cancer cell destruction.
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Thermally responsive nanoparticle-encapsulated curcumin and its combination with mild hyperthermia for enhanced cancer cell destruction.

机译:热响应纳米颗粒包裹的姜黄素及其与温和的高温的组合,可增强癌细胞的破坏力。

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In this study, thermally responsive polymeric nanoparticle-encapsulated curcumin (nCCM) was prepared and characterized. The nCCM is ≈ 22 and 300 nm in diameter at 37 and 22 °C, respectively. The smaller size of the nCCM at 37 °C was found to significantly facilitate its uptake in vitro by human prostate adenocarcinoma PC-3 cancer cells. However, the intracellular nCCM decreases rapidly (rather than plateaus) after reaching its peak at ≈ 1.5 h during a 3-day incubation of the PC-3 cells with nCCM. Moreover, a mild hyperthermia (with negligible cytotoxicity alone) at 43 °C applied between 1 and 1.5 h during the 3-day incubation not only increases the peak uptake but also alters intracellular distribution of nCCM (facilitating its delivery into cell nuclei), which helps to retain a significantly much higher level of intracellular curcumin. These effects of mild hyperthermia could be due in part to the thermal responsiveness of the nCCM: they are more positively charged at 43 °C and can be more easily attracted to the negatively charged nuclear membrane to enter nuclei as a result of electrostatic interaction. Ultimately, a combination of the thermally responsive nCCM and mild hyperthermia significantly enhances the anticancer capability of nCCM, resulting in a more than 7-fold decrease in its inhibitory concentration to reduce cell viability to 50% (IC50). Further mechanistic studies suggest injury pathways associated with heat shock proteins 27 and 70 should contribute to the enhanced cancer cell destruction by inducing cell apoptosis and necrosis. Overall, this study demonstrates the potential of combining mild hyperthermia and thermally responsive nanodrugs such as nCCM for augmented cancer therapy.
机译:在这项研究中,制备并表征了热响应性聚合物纳米颗粒包裹的姜黄素(nCCM)。 nCCM在37和22°C时的直径分别约为≈22和300 nm。发现在37°C时较小的nCCM尺寸可以显着促进人前列腺癌PC-3癌细胞在体外的摄取。但是,在PC-3细胞与nCCM孵育3天后,细胞内nCCM在约1.5 h达到峰值后迅速下降(而不是平稳)。此外,在3天的孵育过程中,在1到1.5小时之间于43°C进行的温和热疗(仅具有微不足道的细胞毒性)不仅增加了峰值吸收,而且改变了nCCM的细胞内分布(促进其向细胞核中的递送),帮助保留明显更高的细胞内姜黄素水平。轻度高温的这些作用可能部分归因于nCCM的热响应性:它们在43°C时带正电,并且由于静电相互作用而更容易被带负电的核膜吸引进入核。最终,热响应nCCM和温和的高温的组合显着增强了nCCM的抗癌能力,导致其抑制浓度降低了7倍以上,从而将细胞活力降低到50%(IC50)。进一步的机理研究表明,与热休克蛋白27和70相关的损伤途径应通过诱导细胞凋亡和坏死来促进癌细胞的破坏。总的来说,这项研究证明了将温和的热疗和热响应性纳米药物(例如nCCM)结合用于增强癌症治疗的潜力。

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