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易于构建的生物还原交联多肽胶束用于增强癌症联合治疗。

Facile construction of bioreducible crosslinked polypeptide micelles for enhanced cancer combination therapy.

机构信息

College of Pharmacy, Yeungnam University, 214-1, Dae-dong, Gyeongsan 712-749, Republic of Korea.

Biophysical Chemistry Lab, Yeungnam University, 214-1, Dae-dong, Gyeongsan 712-749, Republic of Korea.

出版信息

Acta Biomater. 2017 Nov;63:135-149. doi: 10.1016/j.actbio.2017.09.002. Epub 2017 Sep 7.

Abstract

UNLABELLED

In this study, we developed pH and redox-responsive crosslinked polypeptide-based combination micelles for enhanced chemotherapeutic efficacy and minimized side effects. The stability and drug release properties of the polypeptide micelles were efficiency balanced by the corona-crosslinking of the triblock copolymer, poly(ethylene glycol)-b-poly(aspartic acid)-b-poly(tyrosine) (PEG-b-pAsp-b-pTyr) with coordinated redox and pH dual-sensitivity by introducing disulfide crosslinkages. Because of the crosslinking of the middle shell of the triblock polypeptide micelles, their robust structure was maintained in strong destabilization conditions and exhibited excellent stability. GSH concentrations were significantly higher in tumor tissue than in normal tissue, which formed the basis for our design. Drug release was elevated under redox and low acidic conditions. Furthermore, crosslinked micelles showed a superior anticancer effect compared to that of non-crosslinked micelles. Incorporation of docetaxel (DTX) and lonidamine (LND) in crosslinked polypeptide micelles increased the intracellular reactive oxygen species (ROS) level and oxidative stress and caused damage to intracellular components that resulted in greater apoptosis of cancer cells than when DTX or LND was used alone. The combination of DTX and LND in crosslinked micelles exhibited efficacious inhibition of tumor growth with an excellent safety profile compared to that reported for drug cocktail combinations and non-crosslinked micelles. Overall, redox/pH-responsive polypeptide micelles could be an interesting platform for efficient chemotherapy.

STATEMENT OF SIGNIFICANCE

We have synthesized a biodegradable polypeptide block copolymer to construct a facile pH and redox-responsive polymeric micelle asan advanced therapeutic system for cancer therapy. We have designed a corona-crosslinked triblock copolymer (poly (ethylene glycol)-b-poly(aspartic acid)-b-poly(tyrosine) (PEG-b-pAsp-b-pTyr)) micelles co-loaded with docetaxel and lonidamine (cl-M/DL). The corona of triblock polymer was crosslinked to maintain its structural integrity in the physiological environment. The mitochondrial targeting LND is expected to generate ROS, oxidative stress and thereby synergize the chemotherapeutic efficacy of DTX in killing cancer cells. Consistently, cl-M/DL exhibited excellent antitumor efficacy in xenograft tumor model with remarkable tumor regression. Overall, we demonstrated the construction of bioreducible nanosystem for the effective synergistic delivery of DTX/LND in tumor tissues towards cancer treatment.

摘要

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在这项研究中,我们开发了 pH 值和氧化还原响应交联多肽基组合胶束,以提高化疗疗效和最小化副作用。通过引入二硫键交联,三嵌段共聚物聚(乙二醇)-b-聚(天冬氨酸)-b-聚(酪氨酸)(PEG-b-pAsp-b-pTyr)的冠交联使多肽胶束的稳定性和药物释放性能得到有效平衡,并具有氧化还原和 pH 值双重敏感性。由于三嵌段多肽胶束的中间壳交联,其坚固的结构在强去稳定化条件下得以维持,并表现出优异的稳定性。与正常组织相比,肿瘤组织中的 GSH 浓度明显更高,这是我们设计的基础。在氧化还原和低酸性条件下,药物释放增加。此外,交联胶束显示出比非交联胶束更好的抗癌效果。将多西紫杉醇(DTX)和 lonidamine(LND)掺入交联多肽胶束中会增加细胞内活性氧(ROS)水平和氧化应激,并导致细胞内成分受损,从而导致癌细胞凋亡比单独使用 DTX 或 LND 更多。与药物鸡尾酒组合和非交联胶束相比,交联胶束中 DTX 和 LND 的组合表现出有效的抑制肿瘤生长作用,具有极好的安全性。总的来说,氧化还原/pH 响应多肽胶束可以作为一种有效的化疗平台。

意义声明

我们合成了一种可生物降解的多肽嵌段共聚物,构建了一种简便的 pH 值和氧化还原响应性聚合物胶束,作为癌症治疗的先进治疗系统。我们设计了一种带有 corona 的交联三嵌段共聚物(聚(乙二醇)-b-聚(天冬氨酸)-b-聚(酪氨酸)(PEG-b-pAsp-b-pTyr))共载多西紫杉醇和 lonidamine(cl-M/DL)。三嵌段聚合物的 corona 被交联以在生理环境中保持其结构完整性。预期线粒体靶向 LND 会产生 ROS、氧化应激,从而协同 DTX 杀死癌细胞的化疗疗效。一致地,cl-M/DL 在异种移植肿瘤模型中表现出优异的抗肿瘤疗效,肿瘤明显消退。总的来说,我们展示了构建用于在肿瘤组织中有效协同递送达西紫杉醇/ LND 的生物还原性纳米系统,以用于癌症治疗。

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