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首页> 外文期刊>International Journal of Nanomedicine >iRGD-modified lipid–polymer hybrid nanoparticles loaded with isoliquiritigenin to enhance anti-breast cancer effect and tumor-targeting ability
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iRGD-modified lipid–polymer hybrid nanoparticles loaded with isoliquiritigenin to enhance anti-breast cancer effect and tumor-targeting ability

机译:iRGD修饰的脂质-聚合物杂化纳米颗粒负载异黄体生成素,可增强抗乳腺癌作用和靶向肿瘤的能力

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Isoliquiritigenin (ISL), a natural anti-breast cancer dietary compound, has poor delivery characteristics and low bioavailability. In order to promote the therapeutic outcome of ISL, a tumor-targeting lipid–polymer hybrid nanoparticle (NP) system modified by tumor-homing iRGD peptides has been developed. The hybrid NPs were prepared by a modified single-step nanoprecipitation method to encapsulate ISL. iRGD peptides were anchored on the surface by a postinsertion method (ISL-iRGD NPs). The stable lipid–polymer structure of ISL-iRGD NPs, with high encapsulation and loading efficiency, was confirmed. Compared to free ISL and non-iRGD-modified counterparts, ISL-iRGD NPs showed higher cytotoxicity and cell apoptosis against the different type of breast cancer cells. This was attributable to higher cellular accumulation mediated by the iRGD-integrin recognition and the nanoscale effect. More importantly, based on the active tumor-tissue accumulation by iRGD peptides and the prolonged in vivo circulation by the stealth nanostructure, ISL-iRGD NPs displayed higher tumor-growth inhibition efficiency in 4T1-bearing breast-tumor mouse models. Therefore, the constructed iRGD modified lipid–polymer hybrid NPs would provide a promising drug-delivery strategy to improve ISL in anti-breast cancer efficacy.
机译:异抗胃泌素原素(ISL)是一种天然的抗乳腺癌饮食化合物,其递送特性较差且生物利用度较低。为了促进ISL的治疗结果,已开发了通过肿瘤归巢iRGD肽修饰的靶向肿瘤的脂质-聚合物杂化纳米颗粒(NP)系统。杂化纳米粒子通过改进的一步纳米沉淀法制备,以包封ISL。 iRGD肽通过插入后方法(ISL-iRGD NP)锚定在表面上。 ISL-iRGD NPs具有稳定的脂质-聚合物结构,具有较高的包封和装载效率。与游离ISL和非iRGD修饰的对应物相比,ISL-iRGD NPs对不同类型的乳腺癌细胞显示出更高的细胞毒性和细胞凋亡。这归因于由iRGD-整联蛋白识别和纳米级效应介导的更高的细胞蓄积。更重要的是,基于iRGD肽在肿瘤组织中的活跃积累以及隐身纳米结构在体内的延长循环,ISL-iRGD NP在带有4T1的乳腺肿瘤小鼠模型中显示出更高的肿瘤生长抑制效率。因此,构建的iRGD修饰的脂质-聚合物杂化NP将提供有希望的药物递送策略,以改善ISL的抗乳腺癌功效。

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