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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Temperature-triggered tumor-specific delivery of anticancer agents by cRGD-conjugated thermosensitive liposomes
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Temperature-triggered tumor-specific delivery of anticancer agents by cRGD-conjugated thermosensitive liposomes

机译:通过CRGD缀合的热敏性脂质体触发温度触发的肿瘤特异性抗癌剂

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摘要

One of the most effective methods to treat cancer is the specific delivery of anticancer drugs to the target site. To achieve this goal, we designed an anticancer drug with mild hyperthermia-mediated triggering and tumor-specific delivery. To enhance the thermosensitive drug release, we incorporated elastin-like polypeptide (ELP), which is known to be a thermally responsive phase transition peptide into the dipalmitoylphosphatidylcholine (DPPC)-based liposome surface. Additionally, cyclic arginine-glycine-aspartic acid (cRGD) binds to α_vβ_3 integrin, which is overexpressed in angiogenic vasculature and tumor cells, was introduced on the liposome. ELP-modified liposomes with the cRGD targeting moiety were prepared using a lipid film hydration method, and doxorubicin (DOX) was loaded into the liposome by the ammonium sulfate-gradient method. The cRGD-targeted and ELP-modified DOX-encapsulated liposomes (RELs) formed spherical vesicles with a mean diameter of 181 nm. The RELs showed 75% and 83% DOX release at 42 °Cand 45 °C, respectively. The stability of RELs was maintained up to 12 h without the loss of their thermosensitive function for drug release. Flow cytometry results showed that the cellular uptake of DOX in RELs into α_vβ_3 integrin-overexpressing U87MG and HUVEC cells was 8-fold and 10-fold higher, respectively, than that of non-targeting liposomes. Confocal microscopy revealed that REL released DOX only under the mild hyperthermia condition at 42 oC by showing the localization of DOX in nuclei and the liposomes in the cytosol. The cell cytotoxicity results demonstrated that REL can efficiently kill U87MG cells through cRGD targeting and thermal triggering. The in vivo tumoral accumulation measurement showed that the tumor-targeting effect of RELs was 5-fold higher than that of non-targeting liposomes. This stable, target-specific, and thermosensitive liposome shows promise to enhance therapeutic efficacy if it is applied along with a relevant external heat-generating medical system.
机译:治疗癌症最有效的方法之一是对靶位点的抗癌药物的具体递送。为实现这一目标,我们设计了一种抗癌药,具有轻度热热介导的触发和肿瘤特异性递送。为了增强热敏药物释放,我们掺入ELASTIN样多肽(ELP),已知是热响应相转变肽进入Dipalmitoylphosphatidyl胆碱(DPPC)的基础脂质体表面。另外,在脂质体上引入血脂组中在血管生成脉管系统和肿瘤细胞中过表达的α_vβ_3整联蛋白的环状精氨酸 - 甘氨酸 - 天冬氨酸(CRGD)。使用脂质膜水合方法制备具有CRGD靶向部分的ELP改性脂质体,通过硫酸铵梯度法将多柔比星(DOX)加载到脂质体中。 CRGD靶向和ELP改性的DOX封装的脂质体(rels)形成了平均直径为181nm的球形囊泡。 rels在42°C 40°C下显示75%和83%的DOX释放。 Rels的稳定性保持高达12小时,而不会损失其用于药物释放的热敏功能。流式细胞术的结果表明,在α_Vβ_3整合蛋白过表达U87MG和HUVEC细胞中的DOX细胞摄取分别比非靶向脂质体的8倍和10倍。共聚焦显微镜显示,通过在42℃下显示在42℃下的温和热疗条件下释放DOX,通过显示核苷酸中的DOX的定位和细胞溶质中的脂质体。细胞细胞毒性结果表明,Rel可以通过CRGD靶向和热触发有效地杀死U87mg细胞。体内肿瘤累积测量表明,rels的肿瘤靶向效果比非靶向脂质体高5倍。这种稳定的目标特异性和热敏性脂质体表明,如果施用相关的外部发热医疗系统,则可以提高治疗效果。

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  • 作者单位

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

    Drug Delivery System Group Bio Research Center Samsung Advanced Institute of Technology (SAIT) Samsung Electronics Co. Ltd. Yongin 446-712 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 胶体化学(分散体系的物理化学) ;
  • 关键词

    Drug delivery; RGD conjugation; Temperature sensitive; Liposome;

    机译:药物递送;RGD缀合;温度敏感;脂质体;

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