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首页> 外文期刊>Nanotechnology >Octreotide-modification enhances the delivery and targeting of doxorubicin-loaded liposomes to somatostatin receptors expressing tumor in vitro and in vivo
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Octreotide-modification enhances the delivery and targeting of doxorubicin-loaded liposomes to somatostatin receptors expressing tumor in vitro and in vivo

机译:奥曲肽修饰增强了阿霉素脂质体在体内外表达肿瘤的生长抑素受体的递送和靶向作用

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Octreotide is believed to be the ligand of somatostatin receptors (SSTRs) which are widely used in tumor diagnosis and clinical therapy. In the present work, a new targeting conjugate, octreotide-polyethylene glycol- phosphatidylethanolamine (Oct-PEG-PE), was developed for the assembling of liposome, and the effect of octreotide-modification on the enhancement of the delivery and targeting of doxorubicin-loaded liposomes was investigated in vitro and in vivo. Oct-PEG-PE was synthesized by a three-step reaction involving two derivative intermediate formations of bis (p-nitrophenyl carbonate)-PEG ((pNP)_2-PEG) and pNP-PEG-PE. The Oct-modified and unmodified liposomes (DOX-OL and DOX-CL) were prepared by the ammonium sulfate gradient method. Both drug uptake assay and cell apoptosis assay suggested that DOX-OL noticeably increased the uptake of DOX in SMMC-7721 cells and showed a more significant cytotoxicity, compared with DOX-CL. The effect of DOX-OL was remarkably inhibited by free octreotide. In contrast, no significant difference in drug cytotoxicty was found between DOX-OL and DOX-CL in CHO cells without obvious expression of SSTRs. The study of ex vivo fluorescence tissues imaging of BALB/c mice and in vivo tissue distribution of B16 tumor-bearing mice indicated that DOX-OL caused remarkable accumulation of DOX in melanoma tumors and the pancreas, in which the SSTRs are highly expressed.
机译:奥曲肽被认为是生长抑素受体(SSTR)的配体,其广泛用于肿瘤诊断和临床治疗。在目前的工作中,开发了一种新的靶向缀合物,奥曲肽-聚乙二醇-磷脂酰乙醇胺(Oct-PEG-PE),用于脂质体的组装,以及奥曲肽修饰对增强阿霉素-脂质体的递送和靶向作用的影响体外和体内研究了负载脂质体。通过三步反应合成Oct-PEG-PE,该反应涉及双(碳酸对硝基苯酯)-PEG((pNP)_2-PEG)和pNP-PEG-PE的两种衍生中间体形式。通过硫酸铵梯度法制备Oct修饰和未修饰的脂质体(DOX-OL和DOX-CL)。药物吸收测定和细胞凋亡测定均表明,与DOX-CL相比,DOX-OL显着增加了SMMC-7721细胞中DOX的吸收并显示出更显着的细胞毒性。游离奥曲肽显着抑制了DOX-OL的作用。相反,在没有明显表达SSTR的CHO细胞中,DOX-OL和DOX-CL之间没有发现药物细胞毒性的显着差异。对BALB / c小鼠的离体荧光组织成像和B16荷瘤小鼠的体内组织分布的研究表明,DOX-OL在黑色素瘤肿瘤和胰腺中引起DOX的显着积累,其中SSTRs高表达。

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