首页> 美国卫生研究院文献>International Journal of Nanomedicine >A dual-mediated liposomal drug delivery system targeting the brain: rational construction integrity evaluation across the blood–brain barrier and the transporting mechanism to glioma cells
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A dual-mediated liposomal drug delivery system targeting the brain: rational construction integrity evaluation across the blood–brain barrier and the transporting mechanism to glioma cells

机译:针对大脑的双重介导脂质体药物输送系统:合理的结构跨血脑屏障的完整性评估以及向神经胶质瘤细胞的转运机制

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摘要

As the global population ages, cancer rates increase worldwide, and degenerative diseases of the central nervous system (CNS), brain tumors, and inflammation threaten human health more frequently. We designed a dual-mediated (receptor-mediated and adsorption-mediated) liposome, named transferrin–cell penetrating peptide–sterically stabilized liposome (TF-CPP-SSL), to improve therapy for gliomas through combining molecular recognition of transferrin receptors (TF-Rs) on the blood–brain barrier (BBB) and glioma cells with the internalization and lysosomal escaping ability of CPP. Based on the systematic investigation of structure–activity relations on the cellular level, we constructed TF-CPP-SSL rationally by conjugating TF and CPP moieties to the liposomes via PEG3.4K and PEG2.0K, respectively, and found the optimum densities of TF and CPP were 1.8% and 4%, respectively. These liposomes had the highest targeting efficacy for brain microvascular endothelial cell and C6 cell uptake but avoided capture by normal cells. Fluorescence resonance energy transfer technology and coculture models of BBB and glioma C6 cells indicated that TF-CPP-SSL was transported across the BBB without drug leakage, liposome breakup, or cleavage of ligand. TF-CPP-SSL offered advantages for crossing the BBB and entering into glioma C6 cells. Real-time confocal viewing revealed that TF-CPP-SSL was entrapped in endosomes of glioma C6 cells and then escaped from lysosomes successfully to release the liposomal contents into the cytosol. Entrapped contents, such as doxorubicin, could then enter the nucleus to exert pharmacological effects.
机译:随着全球人口的老龄化,全世界的癌症发病率在增加,中枢神经系统退行性疾病(CNS),脑瘤和炎症威胁着人类的健康。我们设计了一种双重介导的(受体介导和吸附介导的)脂质体,称为转铁蛋白-细胞穿透肽-空间稳定脂质体(TF-CPP-SSL),通过结合转铁蛋白受体的分子识别(TF- Rs)在血脑屏障(BBB)和神经胶质瘤细胞上具有CPP的内在化和溶酶体逃逸能力。在细胞水平上结构-活性关系的系统研究的基础上,我们通过分别通过PEG3.4K和PEG2.0K将TF和CPP部分与脂质体结合,合理地构建了TF-CPP-SSL,并找到了TF的最佳密度和CPP分别为1.8%和4%。这些脂质体对脑微血管内皮细胞和C6细胞的吸收具有最高的靶向功效,但避免了正常细胞的捕获。 BBB和神经胶质瘤C6细胞的荧光共振能量转移技术和共培养模型表明,TF-CPP-SSL跨BBB转运,没有药物泄漏,脂质体破裂或配体裂解。 TF-CPP-SSL为穿越BBB并进入神经胶质瘤C6细胞提供了优势。实时共聚焦观察显示,TF-CPP-SSL被包裹在胶质瘤C6细胞的内体中,然后成功地从溶酶体中逸出,从而将脂质体内容物释放到细胞质中。被夹带的内含物(例如阿霉素)然后可以进入细胞核发挥药理作用。

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