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Estrone-Decorated Polyion Complex Micelles for Targeted Melittin Delivery to Hormone-Responsive Breast Cancer Cells

机译:Estrone装饰聚硫末胶束,用于靶向素霉素递送至激素响应乳腺癌细胞

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摘要

Tumor targeting has revolutionized cancer research, especially active cellular targeting of nanoparticles, where they are specifically homed to the pathological site to deliver the therapeutics. This strategy, which involves the utilization of affinity ligands on the surface of the nanocarriers, minimizes the nonspecific uptake of nanocarriers and the subsequent harmful side effects in healthy cells. Estrone, one of the mammalian estrogens, has affinity for estrogen receptors (ER alpha), which are overexpressed in hormone-responsive breast cancers. Despite holding promise, the potential of estrone in active targeting of nanoparticles has barely been explored. Herein, we developed an estrone-appended polyion complex (PIC) micelle to deliver melittin, a cytotoxic peptide, to breast cancer cells. Amino functionalization of estrone was performed to conjugate estrone to the diblock polymer synthesized by reversible addition- fragmentation chain-transfer (RAFT) polymerization. Estrone-conjugated poly(ethylene glycol) methyl ether methacrylate-b-poly tert-butyl methacrylate (POEGMEMA-P(t)BuMA) could complex with melittin to form PIC micelles of size around 60 nm ensuing from the electrostatic interaction of the deprotected polymer and melittin in aqueous media. Poly(ethylene glycol) methyl ether acrylate-b-poly acrylic acid (POEGMEA-PAA) was also later incorporated to afford PIC micelles that could exhibit similar cytotoxicity to free melittin in the cytotoxicity studies. The estrone-attached PIC micelles exhibited improved cytotoxicity in two-dimensional (2D) and three-dimensional (3D) cellular models of MCF-7 cells. Cross-linking of the PIC micelles was also performed to improve the stability of the micelles and prevent melittin degradation from enzymatic attack. Flow cytometry demonstrated an enhanced cellular uptake greater than sixfold with the estrone-conjugated PIC micelles, thereby establishing a profound difference in the targeting efficacy of the PIC micelles between MCF-7 and MDA-MB-231 cells. Furthermore, the distribution of the PIC micelles in the spheroids was revealed by light sheet microscopy. The results demonstrate the potential of estrone-anchored PIC micelles for targeted delivery of therapeutics to hormone-responsive breast cancer cells.
机译:肿瘤靶向具有革命性的癌症研究,特别是纳米颗粒的活性细胞靶向,其中它们被特定于病理遗址递送治疗方法。该策略包括在纳米载体表面上利用亲和性配体,最小化纳米载体的非特异性摄取以及随后在健康细胞中的有害副作用。哺乳动物雌激素之一的雌激素对雌激素受体(ERα)具有亲和力,其在激素响应性乳腺癌中过表达。尽管持有希望,但培养纳米颗粒活跃靶向的潜力几乎没有探讨。在此,我们开发了雌激素屈服的聚硫酮络合物(PIC)胶束,以将甜瓜,一种细胞毒性肽,乳腺癌细胞传递给乳腺癌细胞。对雌激素的氨基官能化进行缀合物,以通过可逆添加 - 碎裂链转移(筏)聚合而合成的二嵌段聚合物。雌激素缀合的聚(乙二醇)甲基醚甲基丙烯酸甲酯-B-聚叔丁基甲基丙烯酸酯(POEGMEMA-P(T)BUMA)可以复合熔融素,以形成从脱保护聚合物的静电相互作用随后形成约60nm的尺寸约为60nm的胶束和水性介质中的甜瓜。聚(乙二醇)甲基醚丙烯酸乙酸酯-B-聚丙烯酸(Poegmea-Paa)也稍后掺入,该胶束可以表现出类似的细胞毒性在细胞毒性研究中的游离茂热蛋白。附着的PIC胶束在MCF-7细胞的二维(2D)和三维(3D)细胞模型中表现出改善的细胞毒性。还进行了PIC胶束的交联以改善胶束的稳定性,并防止酶促发作中的熔融蛋白降解。流式细胞术用雌激素共轭的PICELLES表现出大于六倍的增强的蜂窝摄取,从而在MCF-7和MDA-MB-231细胞之间建立了PIC胶束的靶向效果的深刻差异。此外,通过光薄片显微镜显露,揭示了球状体中的PIC胶束的分布。结果证明了雌激素锚定的PICELLES用于针对激素响应性乳腺癌细胞的治疗剂的靶向递送的潜力。

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