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首页> 外文期刊>Journal of experimental & clinical cancer research : >Efficient targeted tumor imaging and secreted endostatin gene delivery by anti-CD105 immunoliposomes
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Efficient targeted tumor imaging and secreted endostatin gene delivery by anti-CD105 immunoliposomes

机译:抗CD105免疫脂质体有效靶向肿瘤成像并分泌内皮抑素基因

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Anti-CD105 mAb-conjugated immunoliposomes, loaded with secreted mouse endostatin gene, were developed for targeted tumor imaging and antiangiogenic gene therapy. The liposomes were investigated for size, zeta-potential, lipid content, antibody binding ability, and pcDNA loading capacity. The ability of immunoliposomes to target tumor-derived endothelial cells and perform gene transfer in vitro was measured and their basic biocompatibility was evaluated. A nude mouse/breast cancer xenograft model was used to examine the tumor internalization of fluorescent-labeled liposomes and the clinical potential of immnuoliposomes loaded with pcDNA3.1-CSF1-endostatin. Loaded immunoliposomes were homogenously distributed with a well-defined spherical shape and bilayer, diameter of 122?±?11 nm, and zeta potential +?1.40 mV.?No significant differences were observed in body weight, liver index, oxidative stress, or liver and kidney function in mice after liposomes exposure. The addition of CD105 mAb to liposomes conferred the ability to target tumor-derived endothelial cells in vitro and in vivo. Systemic intravenous administration of fluorescent immunoliposomes in the xenograft model resulted in selective and efficient internalization in tumor vasculature. Treatment of mice with pcDNA3.1-CSF1-endostatin-loaded immunoliposomes suppressed tumor growth by 71%. These data demonstrate the advantages of using anti-CD105 mAb-conjugated immunoliposomes to enhance tumor targeting, imaging, and gene transfer applications.
机译:已开发了载有分泌的小鼠内皮抑素基因的抗CD105 mAb缀合的免疫脂质体,用于靶向肿瘤成像和抗血管生成基因治疗。研究脂质体的大小,ζ电位,脂质含量,抗体结合能力和pcDNA负载能力。测量了免疫脂质体靶向肿瘤来源的内皮细胞并进行体外基因转移的能力,并评估了它们的基本生物相容性。裸鼠/乳腺癌异种移植模型用于检查荧光标记脂质体的肿瘤内在化和负载pcDNA3.1-CSF1-endostatin的脂质体的临床潜力。负载的免疫脂质体均匀分布,具有明确的球形和双层结构,直径为122?±?11 nm,ζ电位为+?1.40 mV。?脂质体暴露后小鼠的肾脏和肾脏功能向脂质体中添加CD105 mAb可在体外和体内靶向肿瘤来源的内皮细胞。在异种移植模型中全身静脉内施用荧光免疫脂质体导致肿瘤脉管系统的选择性和有效内在化。用pcDNA3.1-CSF1-内皮抑素负载的免疫脂质体对小鼠进行治疗可将肿瘤生长抑制71%。这些数据证明了使用抗CD105 mAb偶联的免疫脂质体来增强肿瘤靶向,成像和基因转移应用的优势。

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