通过适体靶向与透明质酸酶共递送增强阿霉素对乳腺癌球体的细胞毒性

IF 2.6 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Murat Kavruk, Dide Su Demirel, Farzaneh Bonyadi, Buket Çakmak Güner, Ali Doğan Dursun, Cekdar Vakifahmetoglu, Bilge Güvenç Tuna, Uğur Şahin, Veli Cengiz Ozalp
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引用次数: 0

摘要

乳腺癌是女性中最常见的实体肿瘤之一,根据分子特征,如激素受体状态和HER2表达,可以分为不同的亚型。适配体是一种高度特异性的亲和分子,被广泛研究用于利用纳米载体靶向给药以提高抗癌效果。本研究的重点是通过适配体门控介孔二氧化硅纳米颗粒将阿霉素和透明质酸酶通过her2反应性共同递送,以改善实体肿瘤的治疗效果。SK-BR-3球体被用作实体瘤耐药肿瘤环境的模型。以往的研究表明,细胞毒性药物与纳米颗粒或细胞结合可增强药物对肿瘤球体的渗透。在这项工作中,阿霉素被装载到介孔二氧化硅纳米颗粒中,并被her2特异性适配体覆盖,而颗粒表面被透明质酸酶功能化。与缺乏透明质酸酶的适配体靶向递送相比,这种双功能化纳米载体系统的细胞毒性增加了约8.5倍。这种增强的效果归因于透明质酸酶介导的球体结构松动,促进纳米颗粒渗透和高浓度阿霉素在her2阳性细胞上的局部释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced Doxorubicin Cytotoxicity on Breast Cancer Spheroids by Aptamer Targeted Co-Delivery with Hyaluronidase

Enhanced Doxorubicin Cytotoxicity on Breast Cancer Spheroids by Aptamer Targeted Co-Delivery with Hyaluronidase

Breast cancer is one of the most prevalent solid tumors in women and can be classified into subtypes based on molecular characteristics, such as hormone receptor status and HER2 expression. Aptamers, highly specific affinity molecules, are extensively studied for targeted drug delivery using nanocarriers to enhance anti-cancer efficacy. This study focused on HER2-responsive co-delivery of doxorubicin and hyaluronidase via aptamer-gated mesoporous silica nanoparticles to improve therapeutic outcomes in solid tumors. SK-BR-3 spheroids are employed as a model for resistant tumor environments in solid tumors. Previous research is shown that conjugating cytotoxic drugs with nanoparticles or cells enhances drug penetration into tumor spheroids. In this work, doxorubicin is loaded into mesoporous silica nanoparticles and capped with HER2-specific aptamers, while the particle surface is functionalized with hyaluronidase. This dual-functionalized nanocarrier system achieves an ≈8.5-fold increase in cytotoxicity compared to aptamer-targeted delivery lacking hyaluronidase. The enhanced effect is attributed to hyaluronidase-mediated loosening of the spheroid structure, facilitating nanoparticle penetration and localized release of doxorubicin at high concentrations on HER2-positive cells.

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来源期刊
Advanced Therapeutics
Advanced Therapeutics Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
7.10
自引率
2.20%
发文量
130
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