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pH-sensitive Au–BSA–DOX–FA nanocomposites for combined CT imaging and targeted drug delivery

机译:pH敏感的Au–BSA–DOX–FA纳米复合材料可结合CT成像和靶向药物输送

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摘要

Albumin-based nanoparticles (NPs) as a drug delivery system have attracted much attention owing to their nontoxicity, non-immunogenicity, great stability and ability to bind to many therapeutic drugs. Herein, bovine serum albumin (BSA) was utilized as a template to prepare Au–BSA core/shell NPs. The outer layer BSA was subsequently conjugated with cis-aconityl doxorubicin (DOX) and folic acid (FA) to create Au–BSA–DOX–FA nanocomposites. A list of characterizations was undertaken to identify the successful conjugation of drug molecules and targeted agents. In vitro cytotoxicity using a cell counting kit-8 (CCK-8) assay indicated that Au–BSA NPs did not display obvious cytotoxicity to MGC-803 and GES-1 cells in the concentration range of 0–100 μg/mL, which can therefore be used as a safe drug delivery carrier. Furthermore, compared with free DOX, Au–BSA–DOX–FA nanocomposites exhibited a pH-sensitive drug release ability and superior antitumor activity in a drug concentration-dependent manner. In vivo computed tomography (CT) imaging experiments showed that Au–BSA–DOX–FA nanocomposites could be used as an efficient and durable CT contrast agent for targeted CT imaging of the folate receptor (FR) overexpressed in cancer tissues. In vivo antitumor experiments demonstrated that Au–BSA–DOX–FA nanocomposites have selective antitumor activity effects on FR-overexpressing tumors and no adverse effects on normal tissues and organs. In conclusion, the Au–BSA–DOX–FA nanocomposite exhibits selective targeting activity, X-ray attenuation activity and pH-sensitive drug release activity. Therefore, it can enhance CT imaging and improve the targeting therapeutic efficacy of FR-overexpressing gastric cancers. Our findings suggest that Au–BSA–DOX–FA nanocomposite is a novel drug delivery carrier and a promising candidate for cancer theranostic applications.
机译:基于白蛋白的纳米颗粒(NPs)作为一种药物输送系统,由于其无毒,无免疫原性,出色的稳定性以及与多种治疗药物的结合能力而备受关注。在本文中,牛血清白蛋白(BSA)被用作制备Au-BSA核/壳NP的模板。随后将外层BSA与顺式阿古尼基阿霉素(DOX)和叶酸(FA)偶联,形成Au–BSA–DOX–FA纳米复合材料。进行了一系列表征,以鉴定药物分子和靶向药物的成功结合。使用细胞计数试剂盒8(CCK-8)测定的体外细胞毒性表明,Au–BSA NP在0–100μg/ mL的浓度范围内对MGC-803和GES-1细胞没有明显的细胞毒性。因此可以用作安全的药物输送载体。此外,与游离DOX相比,Au–BSA–DOX–FA纳米复合材料以药物浓度依赖性的方式表现出pH敏感的药物释放能力和优异的抗肿瘤活性。体内计算机断层扫描(CT)成像实验表明,Au–BSA–DOX–FA纳米复合材料可作为有效且持久的CT造影剂,用于在癌组织中过表达的叶酸受体(FR)的靶向CT成像。体内抗肿瘤实验表明,Au–BSA–DOX–FA纳米复合材料对过表达FR的肿瘤具有选择性的抗肿瘤活性作用,而对正常组织和器官无不利影响。总之,Au–BSA–DOX–FA纳米复合材料具有选择性靶向活性,X射线衰减活性和pH敏感药物释放活性。因此,它可以增强CT成像并提高FR过表达胃癌的靶向治疗效果。我们的发现表明,Au–BSA–DOX–FA纳米复合材料是一种新型的药物输送载体,也是癌症治疗学应用的有希望的候选者。

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