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首页> 外文期刊>Biomaterials >Real-time visualization of pH-responsive PLGA hollow particles containing a gas-generating agent targeted for acidic organelles for overcoming multi-drug resistance
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Real-time visualization of pH-responsive PLGA hollow particles containing a gas-generating agent targeted for acidic organelles for overcoming multi-drug resistance

机译:实时可视化pH响应的PLGA空心颗粒,其中包含针对酸性细胞器的产气剂,以克服多药耐药性

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Chemotherapy research highly prioritizes overcoming the multi-drug resistance (MDR) effect in cancer cells. To overcome the drug efflux mediated by P-glycoprotein (P-gp) transporters, we developed pH-responsive poly(D,L-lactic-co-glycolic acid) hollow particles (PLGA HPs), capable of delivering doxorubicin (DOX) into MDR cells (MCF-7/ADR). The shell wall of PLGA HPs contained DiO (a hydrophobic dye), and their aqueous core carried DOX hydrochloride salt and sodium bicarbonate, a gas-generating agent when present in acidic environments. Both DiO and DOX could serve as fluorescence probes to localize HPs and visualize their intracellular drug release in real-time. Real-time confocal images provided visible evidences of the acid-responsive intracellular release of DOX from PLGA HPs in MDR cells. Via the macropinocytosis pathway, PLGA HPs taken up by cells experienced an increasingly acidic environment as they trafficked through the early endosomes and then matured into more acidic late endosomes/lysosomes. The progressive acidification of the internalized particles in the late endosomes/lysosomes generated CO 2 bubbles, leading to the disruption of HPs, prompt release of DOX, its accumulation in the nuclei, and finally the death of MDR cells. Conversely, taken up via a passive diffusion mechanism, free DOX was found mainly at the perimembrane region and barely reached the cell nuclei; therefore, no apparent cytotoxicity was observed. These results suggest that the developed PLGA HPs were less susceptible to the P-gp-mediated drug efflux in MDR cells and is a highly promising approach in chemotherapy.
机译:化学疗法研究高度重视克服癌细胞中的多重耐药性(MDR)效应。为了克服由P-糖蛋白(P-gp)转运蛋白介导的药物外流,我们开发了pH响应型聚(D,L-乳酸-乙醇酸)空心颗粒(PLGA HPs),能够将阿霉素(DOX)输送到MDR细胞(MCF-7 / ADR)。 PLGA HP的壳壁含有DiO(一种疏水性染料),其含水核带有DOX盐酸盐和碳酸氢钠(在酸性环境中存在时会产生气体)。 DiO和DOX都可以用作荧光探针来定位HP,并实时观察其细胞内药物释放。实时共聚焦图像提供了MDR细胞中PLGA HPs对酸敏感的DOX释放的酸证据。通过巨胞饮途径,被细胞吸收的PLGA HPs通过早期的内体运输,然后逐渐成熟为更酸性的晚期内体/溶酶体,从而经历了越来越酸性的环境。晚期内体/溶酶体中内在化颗粒的逐渐酸化产生CO 2气泡,从而导致HP破坏,DOX迅速释放,其在细胞核中积累以及最终MDR细胞死亡。相反,通过被动扩散机制吸收的游离DOX主要在膜周围区域,几乎没有到达细胞核。因此,没有观察到明显的细胞毒性。这些结果表明,已开发的PLGA HPs对MDR细胞中P-gp介导的药物流出的敏感性较低,并且在化学疗法中是一种很有前途的方法。

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