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首页> 外文期刊>Biochemical and Biophysical Research Communications >Folate-modified PLGA nanoparticles for tumor-targeted delivery of pheophorbide a in vivo
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Folate-modified PLGA nanoparticles for tumor-targeted delivery of pheophorbide a in vivo

机译:用于肿瘤的叶酸修饰的PLGA纳米粒子用于肿瘤靶向酚磷脂A在体内

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摘要

Targeted drug delivery has been an important issue for tumor therapy including photodynamic therapy (PDT). The purpose of our study is to increase the targeting efficiency of photosensitizer (PS) using folatemodified nanoparticles (NPs) to tumor site in vivo. Folate receptor is over-expressed on the surface of many human cancer cells. We prepared poly (lactic-co-glycolic acid) (PLGA) NPs containing pheophorbide a (Pba), a PS that is used in PDT and generates free radical for killing cancer cells. The surface of NPs was composed of phospholipids modified with polyethylene glycol (PEG) and folate (FA). The size of the resulting FA-PLGA-Pba NPs was about 200 nm in PBS at pH 7.4 and they were stable for long time. They showed faster cellular uptake to MKN28 human gastric cancer cell line than control PLGA-Pba NPs by high-affinity binding with folate receptors on cell surface. In MTT assay, FA-PLGA-Pba NPs also showed enhanced tumor cell killing compared to control PLGA-Pba NPs. In vivo and ex vivo imaging showed high accumulation of FA-PLGA-Pba NPs in tumor site during 24 h after intravenous injection to MKN28 tumor bearing mice model. These results demonstrate that our FA-PLGA-Pba NPs are useful for tumor-targeted delivery of PS for cancer treatment by PDT. (C) 2018 Elsevier Inc. All rights reserved.
机译:靶向药物递送是肿瘤治疗,包括光动力治疗(PDT)的重要问题。我们研究的目的是使用Folatemodifed纳米颗粒(NPS)来增加光敏剂(PS)的靶向效率,以体内肿瘤部位。叶酸受体在许多人类癌细胞的表面上过度表达。我们制备了含有野吩(PBA)的聚(乳酸共聚糖酸)(PLGA)NPS,PDT中使用的PS并产生用于杀死癌细胞的自由基。 NPS的表面由用聚乙二醇(PEG)和叶酸(FA)改性的磷脂组成。在pH7.4的PBS中,所得FA-PLGA-PBA NPS的大小约为200nm,长时间稳定。它们表现出比在细胞表面上的叶酸受体的高亲和力结合对控制PLGA-PBA NPS更快的细胞摄取到MKN28人胃癌细胞系。在MTT测定中,与对照PLGA-PBA NPS相比,FA-PLGA-PBA NPS还显示出增强的肿瘤细胞杀灭。体内和前体内成像在静脉注射到MKN28肿瘤轴承小鼠模型中,在24小时内显示出肿瘤部位的Fa-PLGA-PBA NPS高积累。这些结果表明,我们的FA-PLGA-PBA NPS可用于肿瘤针对PS的肿瘤靶向癌症治疗PDT。 (c)2018年Elsevier Inc.保留所有权利。

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