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Spatiotemporally and Sequentially-Controlled Drug Release from Polymer Gatekeeper–Hollow Silica Nanoparticles

机译:时空和顺序控制的药物从聚合物Gatekeeper-空心二氧化硅纳米颗粒的释放。

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摘要

Combination chemotherapy has become the primary strategy against cancer multidrug resistance; however, accomplishing optimal pharmacokinetic delivery of multiple drugs is still challenging. Herein, we report a sequential combination drug delivery strategy exploiting a pH-triggerable and redox switch to release cargos from hollow silica nanoparticles in a spatiotemporal manner. This versatile system further enables a large loading efficiency for both hydrophobic and hydrophilic drugs inside the nanoparticles, followed by self-crosslinking with disulfide and diisopropylamine-functionalized polymers. In acidic tumour environments, the positive charge generated by the protonation of the diisopropylamine moiety facilitated the cellular uptake of the particles. Upon internalization, the acidic endosomal pH condition and intracellular glutathione regulated the sequential release of the drugs in a time-dependent manner, providing a promising therapeutic approach to overcoming drug resistance during cancer treatment.
机译:联合化疗已成为抵抗癌症多药耐药性的主要策略。然而,实现多种药物的最佳药代动力学递送仍然是挑战。在本文中,我们报告了一种顺序组合药物输送策略,该策略利用pH触发和氧化还原开关以时空方式从空心二氧化硅纳米颗粒释放货物。这种通用的系统进一步提高了纳米颗粒内部疏水和亲水药物的装载效率,然后与二硫化物和二异丙胺官能化的聚合物进行自交联。在酸性肿瘤环境中,由二异丙胺部分质子化产生的正电荷促进了颗粒的细胞吸收。内化后,酸性内体pH条件和细胞内谷胱甘肽以时间依赖性方式调节药物的顺序释放,为克服癌症治疗期间的耐药性提供了一种有希望的治疗方法。

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