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外泌体伪装壳聚糖/氧化锌/碳量子点纳米载体用于乳腺癌治疗中 pH 响应性阿霉素递送

英文原题:Exosome-camouflaged chitosan/zinc oxide/carbon quantum dot nanocarriers for pH-responsive doxorubicin delivery in breast cancer treatment.

PubMed 2026/04/21(内容时间) Carbohydr Polym Q1 · IF 13.2(JCR 2025)

研究概要

这些发现表明,壳聚糖驱动的 pH 响应性,结合无机组分和仿生表面伪装,为基于碳水化合物的药物递送设计提供了一种有效且化学上保守的策略。

中文摘要

多柔比星(DOX)化疗用于乳腺癌时受到系统性毒性和肿瘤选择性有限的制约,因此需要开发多糖载体,使其 pH 响应性来自聚合物本身的性质,而非化学修饰。本研究以壳聚糖作为主要结构材料和 pH 响应基质,通过 W1/O/W2 复乳法整合氧化锌纳米颗粒(ZnO)与碳量子点(CQD),随后在表面结合骨髓来源间充质干细胞(BM-MSC)的外泌体膜,制备以糖类为核心的仿生纳米载体。所得 CS/ZnO/CQDs@DOX 纳米载体的平均流体动力学直径为 180 nm,与外泌体结合后增至 205 nm,并伴有部分表面电荷屏蔽。理化分析支持其主要由非共价作用组装,未发现壳聚糖主链发生改变;载药包封率为 88.75 ± 2.1%,载药量为 6.8 ± 0.5 wt%。体外研究显示,多柔比星释放具有明显 pH 依赖性,对 MCF-7 细胞的细胞毒性增强(IC 值为 0.8 ± 0.1;原摘要浓度单位缺失),同时对正常细胞的毒性极低。总体而言,这些结果表明,以壳聚糖实现 pH 响应,并辅以无机组分和仿生表面伪装,可为多糖类药物递送设计提供有效且尽量避免化学改变的策略。

展开英文摘要原文

Doxorubicin (DOX) chemotherapy for breast cancer is constrained by systemic toxicity and limited tumor selectivity, underscoring the need for polysaccharide-based carriers in which pH responsiveness arises from intrinsic polymer properties rather than chemical modification. In this study, a carbohydrate-centered biomimetic nanocarrier was developed using chitosan as the primary structural and pH-responsive matrix, integrating zinc oxide nanoparticles (ZnO) and carbon quantum dots (CQDs) through a W1/O/W2 double-emulsion process, followed by surface association with bone marrow-derived mesenchymal stem cell (BM-MSC) exosomal membranes. The resulting CS/ZnO/CQDs@DOX nanocarriers exhibited an average hydrodynamic diameter of 180 nm, which increased to 205 nm after exosome association, accompanied by partial surface charge shielding. Physicochemical analyses supported a predominantly non-covalent assembly without evidence of alteration of the chitosan backbone, yielding a high encapsulation efficiency (88.75 2.1%) and a drug loading of 6.8 0.5 wt%. In vitro studies revealed pronounced pH-dependent doxorubicin release and enhanced cytotoxicity toward MCF-7 cells (IC = 0.8 0.1 M), while maintaining minimal toxicity toward normal cells. Overall, these findings demonstrate that chitosan-driven pH responsiveness, complemented by inorganic components and biomimetic surface camouflaging, provides an effective and chemically conservative strategy for carbohydrate-based drug delivery design.

论文信息

作者
Pourmasoumi P、Pourmadadi M
第一作者单位
Department of Biomedical Engineering, Central Tehran Branch, Islamic Azad University, Tehran, Iran; Department of Biology and Anatomical Sciences, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran. Electronic address: pari.pourmasoumi@gmail.com.Iran
通讯作者单位
Protein Research Center, Shahid Beheshti University, GC, Tehran, 1983963113, Iran. Electronic address: mehrabpourmadadi@gmail.com.Iran
期刊
Carbohydrate polymers2026 Jul 15
原文标识
PubMed 42097777 · DOI 10.1016/j.carbpol.2026.125345