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首页> 外文期刊>Acta biomaterialia >A nanogel of on-site tunable pH-response for efficient anticancer drug delivery
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A nanogel of on-site tunable pH-response for efficient anticancer drug delivery

机译:可现场调节pH响应的纳米凝胶,可有效递送抗癌药物

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A smart, soft and small nanoparticulate drug carrier that can efficiently transport therapeutics into tumor cells to control the intracellular drug concentration will enable major advancements in cancer therapy. To facilitate a remote modulation of the intracellular pH-regulated drug release, we have designed a new class of pH-responsive chitosan-based nanogels (<200 nm) by the physical interpenetration of chitosan chains into a nonlinear poly(ethylene glycol) (nonlinear PEG) chain network. The resultant PEG-chitosan nanogels not only respond to the changes in environmental pH over the physiologically important range of 5.0-7.4, but - more importantly - also enable us to remotely modulate the pH response by external cooling/heating. The nanogel, as well as the nanogel loaded with a model anticancer drug 5-fluorouracil (5-FU), is capable of varying its surface charge from nearly neutral to positive around tumor extracellular pH (~6.0-6.2) to facilitate cell internalization. Subsequently, the significantly increased acidity in subcellular compartments (~5.0) can trigger 5-FU release from the endocytosed drug carriers. While this nanogel serving as a drug carrier exhibits a reduced toxicity in combined chemo-thermo treatments, it has shown significantly enhanced therapeutic efficacy in combined chemo-cryo treatments of the model B16F10 melanoma cells, indicating its great potential for cancer therapy.
机译:一种智能,柔软且小的纳米颗粒药物载体,可以有效地将治疗药物输送到肿瘤细胞中以控制细胞内药物浓度,这将使癌症治疗取得重大进展。为了促进细胞内pH调节药物释放的远程调节,我们通过壳聚糖链的物理互穿成非线性聚乙二醇(非线性),设计了一类新型的基于pH响应的壳聚糖纳米凝胶(<200 nm)。 PEG)链网络。所得的PEG-壳聚糖纳米凝胶不仅在5.0-7.4的重要生理范围内响应环境pH的变化,而且-更重要的是-还使我们能够通过外部冷却/加热来远程调节pH响应。纳米凝胶以及装有模型抗癌药5-氟尿嘧啶(5-FU)的纳米凝胶,能够将其表面电荷在肿瘤细胞外pH(〜6.0-6.2)附近从几乎中性变为正电荷,以促进细胞内在化。随后,亚细胞区室中显着增加的酸度(〜5.0)可以触发5-FU从内吞药物载体释放。尽管这种用作药物载体的纳米凝胶在化学热疗联合治疗中显示出降低的毒性,但在B16F10型黑色素瘤细胞化学热疗联合治疗中显示出显着增强的治疗功效,表明其具有巨大的癌症治疗潜力。

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