Chemical Engineering Department, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran.
Chemical Engineering Department, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran.
Biomed Pharmacother. 2023 Aug;164:114971. doi: 10.1016/j.biopha.2023.114971. Epub 2023 Jun 7.
Mg/N doped-carbon quantum dots (CQDs) with dual drug targeting and cell imaging properties was synthesized. Mg/N doped-CQDs synthesized by a hydrothermal method. Operating pyrolysis parameters such as temperature, time, and pH were optimized to achieve CQDs with high quantum yield (QY). This CQD applied in cellular imaging. For the first time, dual active targeting of Mg/N doped CQDs performed using folic acid and hyaluronic acid (CQD-FA-HA). Then, epirubicin (EPI) loaded on this nanocarrier as the final complex (CQD-FA-HA-EPI). Cytotoxicity analysis, cellular uptake, and cell photography performed for the complex on three cell lines, including 4T1, MCF-7, and CHO. In vivo studies were performed in BALB/c inbred female mice models bearing breast cancer. Characterization results showed the successful formation of Mg/N doped-CQDs with a high QY of 89.44%. In vitro drug release approved pH dependency of synthesized nanocarrier with a controlled release behavior. Cytotoxicity tests and cellular uptake results demonstrated increased toxicity and absorption into 4T1 and MCF-7 cell lines for targeted nanoparticles compared to free drug. In cell imaging, an increase in the entry of the complex into 4T1 and MCF-7 cells compared to free drug, confirmed the proper function of the synthesized complex. In vivo results indicated that the tumor volume of mice receiving CQD-FA-HA-EPI was the lowest among other studied groups, along with the lowest damage to the liver, spleen, and heart according to the histopathological analysis. Finally, CQD-FA-HA proposed as a novel platform with tumor targeting, drug carrier, and photoluminescence properties.
Mg/N 掺杂的碳量子点(CQDs)具有双重药物靶向和细胞成像特性,被合成出来。通过水热法合成了 Mg/N 掺杂的 CQDs。优化了操作热解参数,如温度、时间和 pH,以获得具有高量子产率(QY)的 CQDs。这种 CQD 应用于细胞成像。首次使用叶酸和透明质酸(CQD-FA-HA)对 Mg/N 掺杂的 CQD 进行双重主动靶向。然后,将表阿霉素(EPI)负载在这个纳米载体上作为最终的复合物(CQD-FA-HA-EPI)。对三种细胞系(包括 4T1、MCF-7 和 CHO)的复合物进行了细胞毒性分析、细胞摄取和细胞摄影。在荷乳腺癌的 BALB/c 近交雌性小鼠模型中进行了体内研究。表征结果表明成功合成了具有高 QY 为 89.44%的 Mg/N 掺杂的 CQDs。体外药物释放证实了合成纳米载体具有 pH 依赖性,具有控制释放行为。细胞毒性试验和细胞摄取结果表明,与游离药物相比,靶向纳米颗粒对 4T1 和 MCF-7 细胞系的毒性和吸收增加。在细胞成像中,与游离药物相比,复合物进入 4T1 和 MCF-7 细胞的能力增强,证实了合成复合物的适当功能。体内结果表明,接受 CQD-FA-HA-EPI 的小鼠的肿瘤体积在其他研究组中最低,根据组织病理学分析,对肝脏、脾脏和心脏的损伤最小。最后,CQD-FA-HA 被提议为一种具有肿瘤靶向、药物载体和光致发光特性的新型平台。