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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Stepwise dual pH and redox-responsive cross-linked polypeptide nanoparticles for enhanced cellular uptake and effective cancer therapy
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Stepwise dual pH and redox-responsive cross-linked polypeptide nanoparticles for enhanced cellular uptake and effective cancer therapy

机译:逐步双pH和氧化还原交联多肽纳米颗粒,用于增强细胞摄取和有效癌症治疗

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摘要

The systemic toxicity, reduced cellular internalization, and uncontrollable intracellular drug release of smart nanoparticles (NPs) still need to be overcome for effective cancer therapy. Herein, a series of stepwise dual pH and redox responsive cross-linked polypeptides based on poly(L-lysine-co-N,Nbis(acryloyl)cystamine-co-g-glutamic acid) (PLBG), were prepared for enhanced cellular uptake and effective cancer therapy. The prepared cross-linked PLBG nanoparticles (PLBG-NPs) exhibit negatively charged surfaces under physiological conditions, and the surface charge of the PLBG-NPs was observed to switch from negative to positive in a slightly acidic tumor extracellular environment at a pH level of similar to 6.5. Finally, the endosome escape of the PLBG-NPs was facilitated via a "proton-sponge" effect via protonation of the polymer chain in the endo/lysosome environment of the tumor cell at a pH level of similar to 5.0. Moreover, rapid drug release was triggered by a high concentration of reducing glutathione (GSH) in tumor cells via destruction of the disulfide linkages in the PLBG-NPs. Cytotoxicity assays demonstrated that no noticeable cytotoxicity was observed for the PLBG-NPs. However, DOX-loaded PLBG-NPs (PLBG-NPs-DOX) demonstrated remarkable tumor cell killing effects. In HeLa tumor-bearing mice, PLBG-NPs-DOX showed sustained tumor accumulation and enhanced inhibitory effects on tumor growth and angiogenesis. In conclusion, it is suggested that the as-designed novel charge-conversion PLBG-NPs with stepwise pH-responsivity and biodegradability could be used as a potential drug carrier for effective cancer therapy with less systemic toxicity.
机译:仍需要克服有效的癌症治疗的全身毒性,降低细胞内化和智能纳米粒子(NPS)的无法控制的细胞内药物释放。本文中,制备了一系列基于聚(L-赖氨酸-CO-N,Nbis(丙烯酰基)胱胺-CO-G-谷氨酸)(PLBG)的逐步双pH和氧化还原响应性交联多肽以增强细胞摄取有效的癌症治疗。制备的交联PLBG纳米颗粒(PLBG-NPS)在生理条件下表现出负电荷的表面,观察PLBG-NPS的表面电荷在略微酸性肿瘤细胞外环境中从阴性切换为阳性,在相似的pH水平到6.5。最后,通过在肿瘤细胞的末端/溶酶体环境中的聚合物链的质子化在类似于5.0的pH水平的肿瘤细胞的聚合物链中的“质子 - 海绵”效果促进了PLBG-NP的内体逸出。此外,通过销毁PLBG-NPS中的二硫键,通过肿瘤细胞中的高浓度减少谷胱甘肽(GSH)引发快速药物释放。细胞毒性测定表明,对于PLBG-NPS没有观察到明显的细胞毒性。然而,DOX加载的PLBG-NPS(PLBG-NPS-DOX)显示出显着的肿瘤细胞杀伤效果。在HeLa肿瘤造山鼠中,PLBG-NPS-DOX显示出持续的肿瘤积累和增强对肿瘤生长和血管生成的抑制作用。总之,建议,具有逐步pH响应性和生物降解性的诸如设计的新型电荷转化PLBG-NPS可以用作有效癌症治疗的潜在药物载体,其具有较少的系统性毒性。

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    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

    Chengdu Med Coll Sch Biomed Sci &

    Technol Xindu Rd 783 Chengdu 610500 Sichuan Peoples R China;

    Southwest Minzu Univ Coll Chem &

    Environm Protect First Ring Rd 4th Sect 16 Chengdu 610041 Sichuan Peoples R China;

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  • 正文语种 eng
  • 中图分类 分析化学;
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