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首页> 外文期刊>Bioconjugate Chemistry >Tumor-Targeting, pH-Responsive, and Stable Unimolecular Micelles as Drug Nanocarriers for Targeted Cancer Therapy
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Tumor-Targeting, pH-Responsive, and Stable Unimolecular Micelles as Drug Nanocarriers for Targeted Cancer Therapy

机译:靶向肿瘤,pH敏感和稳定的单分子胶束作为靶向癌症治疗的药物纳米载体

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A new type of multifunctional unimolecular micelle drug nanocarrier based on amphiphilic hyperbranched block copolymer for targeted cancer therapy was developed. The core of the unimolecular micelle was a hyperbranched aliphatic polyester, Boltorn H40. The inner hydrophobic layer was composed of random copolymer of poly(ε-caprolactone) and poly(malic acid) (PMA-co-PCL) segments, while the outer hydrophilic shell was composed of poly(ethylene glycol) (PEG) segments. Active tumor-targeting ligands, i.e., folate (FA), were selectively conjugated to the distal ends of the PEG segments. An anticancer drug, i.e., doxorubicin (DOX) molecules, was conjugated onto the PMA segments with pH-sensitive drug binding linkers for pH-triggered drug release. Transmission electron microscopy (TEM) and dynamic light scattering (DLS) analysis showed that the unimolecular micelles were uniform with a mean hydrodynamic diameter around 25 nm. The drug loading content was determined to be 14.2%. The drug release profile, cell uptake and distribution, and cytotoxicity of the unimolecular micelles were evaluated in vitro. The folate-conjugated micelles can be internalized by the cancer cells via folate-receptor-mediated endocytosis; thus, they exhibited enhanced cell uptake and cytotoxicity. At pH 7.4, the physiological condition of bloodstream, DOX conjugated onto the unimolecular micelles exhibited excellent stability; however, once the micelles were internalized by the cancer cells, the pH-sensitive hydrazone linkages were cleavable by the intracellular acidic environment, which initially caused a rapid release of DOX. These findings indicate that these unique unimolecular micelles may offer a very promising approach for targeted cancer therapy.
机译:开发了一种基于两亲性超支化嵌段共聚物的新型多功能单分子胶束药物纳米载体,用于靶向治疗。单分子胶束的核心是超支化脂族聚酯Boltorn H40。内部疏水层由聚ε-己内酯和聚苹果酸(PMA-co-PCL)链段的无规共聚物组成,而外部亲水壳由聚乙二醇(PEG)链段组成。活性靶向肿瘤的配体,即叶酸(FA),被选择性地缀合到PEG片段的远端。用pH敏感的药物结合接头将抗癌药物即阿霉素(DOX)分子偶联到PMA片段上,以触发pH释放药物。透射电子显微镜(TEM)和动态光散射(DLS)分析表明,单分子胶束是均匀的,平均流体动力学直径约为25 nm。载药量确定为14.2%。在体外评估了单分子胶束的药物释放曲线,细胞摄取和分布以及细胞毒性。叶酸偶联的胶束可以通过叶酸受体介导的内吞作用而被癌细胞内化。因此,它们表现出增强的细胞摄取和细胞毒性。在pH 7.4时,缀合在单分子胶束上的血流生理条件DOX表现出优异的稳定性;然而,一旦胶束被癌细胞内化,pH敏感的linkage键就可以被细胞内酸性环境裂解,这最初会导致DOX的快速释放。这些发现表明,这些独特的单分子胶束可能为靶向癌症治疗提供非常有前途的方法。

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