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Designing multifunctional cancer-targeted nanosystem for magnetic resonance molecular imaging-guided theranostics of lung cancer

机译:设计用于磁共振分子成像引导的肺癌治疗学的多功能靶向癌症的纳米系统

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摘要

The integration of diagnosis and therapy is an effective way to improve therapeutic effects for cancer patients, which has acquired widely attentions from researchers. Herein, a multifunctional drug-loaded nanosystem (F/A-PLGA@DOX/SPIO) has been designed and synthesized to reduce the side effects of traditional chemotherapy drugs and realize simultaneous tumor diagnosis and treatment. The surface modification of folic acid (FA) and activatable cell-penetrating peptide (ACPP) endows the nanosystem with excellent cancer targeting capabilities, thus reducing toxicity to normal organs. Besides, the F/A-PLGA@DOX/SPIO nanosystem can serve as an excellent magnetic resonance imaging (MRI) T2-negative contrast agent. More importantly, according to in vitro experiments, the F/A-PLGA@DOX/SPIO nanosystem can promote the overproduction of reactive oxygen species (ROS) within A549 lung cancer cells, inducing cell apoptosis, greatly enhancing the antineoplastic effect. Furthermore, with the help of MRI technology, the targeting imaging of the F/A-PLGA@DOX/SPIO nanosystem within tumors and the dynamic monitoring of medicine efficacy can be realized. Therefore, this study provided a multifunctional drug-loaded F/A-PLGA@DOX/SPIO targeted nanosystem for magnetic resonance molecular imaging-guided theranostics, which has excellent potential for the application in tumor diagnosis and therapy.
机译:诊断与治疗相结合是提高癌症患者治疗效果的有效途径,已引起研究人员的广泛关注。在此,设计并合成了多功能的载药纳米系统(F / A-PLGA @ DOX / SPIO),以减少传统化学疗法药物的副作用并实现肿瘤的同时诊治。叶酸(FA)和可激活细胞穿透肽(ACPP)的表面修饰赋予纳米系统以优异的癌症靶向能力,从而降低了对正常器官的毒性。此外,F / A-PLGA @ DOX / SPIO纳米系统可以作为出色的磁共振成像(MRI)T2阴性造影剂。更重要的是,根据体外实验,F / A-PLGA @ DOX / SPIO纳米系统可以促进A549肺癌细胞内活性氧(ROS)的过量产生,诱导细胞凋亡,从而大大增强抗肿瘤作用。此外,借助MRI技术,可以实现肿瘤内F / A-PLGA @ DOX / SPIO纳米系统的靶向成像以及对药效的动态监控。因此,本研究为磁共振分子成像引导的治疗学提供了多功能的载药F / A-PLGA @ DOX / SPIO靶向纳米系统,在肿瘤的诊断和治疗中具有广阔的应用前景。

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