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首页> 外文期刊>International Journal of Nanomedicine >A NAG-Guided Nano-Delivery System for Redox- and pH-Triggered Intracellularly Sequential Drug Release in Cancer Cells
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A NAG-Guided Nano-Delivery System for Redox- and pH-Triggered Intracellularly Sequential Drug Release in Cancer Cells

机译:用于氧化还原和pH-触发的癌细胞内细胞内连续药物释放的纳瓦引导纳米递送系统

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Aim: Sequential treatment with paclitaxel (PTXL) and gemcitabine (GEM) is considered clinically beneficial for non-small-cell lung cancer. This study aimed to investigate the effectiveness of a nano-system capable of sequential release of PTXL and GEM within cancer cells. Methods: PTXL-ss-poly(6- O -methacryloyl-d-galactopyranose)-GEM (PTXL-ss-PMAGP-GEM) was designed by conjugating PMAGP with PTXL via disulfide bonds (-ss-), while GEM via succinic anhydride (PTXL:GEM=1:3). An amphiphilic block copolymer N-acetyl-d-glucosamine(NAG)-poly(styrene-alt-maleic anhydride)sub58/sub-b-polystyrenesub130/sub acted as a targeting moiety and emulsifier in formation of nanostructures (NLCs). Results: The PTXL-ss-PMAGP-GEM/NAG NLCs (119.6 nm) provided a sequential in vitro release of, first PTXL (redox-triggered), then GEM (pH-triggered). The redox- and pH-sensitive NLCs readily distributed homogenously in the cytoplasm. NAG augmented the uptake of NLCs by the cancer cells and tumor accumulation. PTXL-ss-PMAGP-GEM/NAG NLCs exhibited synergistic cytotoxicity in vitro and strongest antitumor effects in tumor-bearing mice compared to NLCs lacking pH/redox sensitivities or free drug combination. Conclusion: This study demonstrated the abilities of PTXL-ss-PMAGP-GEM/NAG NLCs to achieve synergistic antitumor effect by targeted intracellularly sequential drug release.
机译:目的:用紫杉醇(PTX1)和吉西他滨(GEM)顺序处理被认为是非小细胞肺癌的临床有益。本研究旨在探讨能够在癌细胞中顺序释放PTX1和GEM的纳米系统的有效性。方法:通过二硫键(-SS-)将PMAGP与PTX1缀合PMAGP,设计PTXL-SS-Poly(6-O-甲基丙烯酰基-D-半乳糖醇) - Gem(PTXL-SS-PMAGP-GEM)设计。 (PTXL:GEM = 1:3)。两亲嵌段共聚物N-乙酰基-D-葡糖胺(NAG) - 聚(苯乙烯 - ALT-马来酸酐)<亚> 58 -B-聚苯乙烯<亚> 130 作为靶向部分和乳化剂形成纳米结构(NLCS)。结果:PTXL-SS-PMAGP-GEM / NAG NLC(119.6nm)提供了第一PTX1(氧化还原)的顺序体外释放,然后是宝石(pH-触发)。氧化还原和pH敏感性NLC在细胞质中容易均匀分布。 NAG通过癌细胞和肿瘤积累增强了NLC的摄取。与缺乏pH /氧化还原敏感性或游离药物组合的NLC相比,PTXL-SS-PMAGP-GEM / NAG NLCs在携带的肿瘤小鼠中表现出体外和最强的抗肿瘤作用的体外和最强的抗肿瘤作用。结论:本研究表明PTXL-SS-PMAGP-GEM / NAG NLC的能力通过靶向细胞内连续药物释放来实现协同抗肿瘤效果。

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