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用于靶向递送疏水抗肿瘤治疗药物的树枝状聚合物稳定的智能纳米颗粒(DSSN)平台。

Dendrimer-stabilized smart-nanoparticle (DSSN) platform for targeted delivery of hydrophobic antitumor therapeutics.

作者信息

Tekade Rakesh K, Tekade Muktika, Kumar Manoj, Chauhan Abhay S

机构信息

Preclinical Nuclear Imaging Laboratory, The University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, Texas, 75390, USA,

出版信息

Pharm Res. 2015 Mar;32(3):910-28. doi: 10.1007/s11095-014-1506-0. Epub 2014 Sep 10.

Abstract

PURPOSE

To formulate dendrimer-stabilized smart-nanoparticle (DSSN; pD-ANP-f) for the targeted delivery of the highly hydrophobic anticancer drug, Paclitaxel (PTXL).

METHOD

The developed nanoformulations were evaluated for particle size, surface-charge, loading efficiency, particle density, in-vitro drug release, SEM/TEM, cytotoxicity assay, fluorescence uptake, HPLC quantitative cell uptake assay, flow cytometry, tubulin polymerization, and stability assessments.

RESULTS

The developed pD-ANP-f nanoformulation (135.17 ± 7.39 nm; -2.05 ± 0.37 mV and 80.11 ± 4.39% entrapment) exhibited a pH-dependent drug release; remained stable in physiological pH, while rapid releasing PTXL under tumorous environment (pH 5.5). The cytotoxicity assay performed in cervical, breast, blood, and liver cancer cell lines showed pD-ANP-f to be strongly suppressing the growth of cancer cells. We investigated the fluorescence based intracellular trafficking and HPLC based cellular uptake of nanoformulated drug and the result indicates higher cellular uptake of pD-ANP-f compared to other formulations. pD-ANP-f prominently induced apoptosis (73.11 ± 3.84%) and higher polymerization of tubulins (59.73 ± 6.22%). DSSN nanoformulation was found to be extremely biocompatible (<1% hemolytic) compared to naked PTXL (19.22 ± 1.01%) as well as PTXL-dendrimer nanocomplex (8.29 ± 0.71%).

CONCLUSION

DSSN strategy is a novel and promising platform for biomedical applications that can be effectively engaged for the delivery of drug/gene/siRNA targeting.

摘要

目的

制备树枝状聚合物稳定的智能纳米颗粒(DSSN;pD-ANP-f),用于靶向递送高度疏水的抗癌药物紫杉醇(PTXL)。

方法

对所制备的纳米制剂进行粒径、表面电荷、负载效率、颗粒密度、体外药物释放、扫描电子显微镜/透射电子显微镜、细胞毒性测定、荧光摄取、高效液相色谱法定量细胞摄取测定、流式细胞术、微管蛋白聚合和稳定性评估。

结果

所制备的pD-ANP-f纳米制剂(粒径135.17±7.39 nm;表面电荷-2.05±0.37 mV,包封率80.11±4.39%)呈现pH依赖性药物释放;在生理pH值下保持稳定,而在肿瘤环境(pH 5.5)中快速释放PTXL。在宫颈、乳腺、血液和肝癌细胞系中进行的细胞毒性测定表明,pD-ANP-f能强烈抑制癌细胞生长。我们研究了基于荧光的纳米制剂药物细胞内转运和基于高效液相色谱法的细胞摄取,结果表明与其他制剂相比,pD-ANP-f的细胞摄取更高。pD-ANP-f显著诱导细胞凋亡(73.11±3.84%)和更高的微管蛋白聚合(59.73±6.22%)。与游离PTXL(19.22±1.01%)以及PTXL-树枝状聚合物纳米复合物(8.29±0.71%)相比,发现DSSN纳米制剂具有极高的生物相容性(溶血率<1%)。

结论

DSSN策略是一种用于生物医学应用的新型且有前景的平台,可有效用于药物/基因/小干扰RNA的靶向递送。

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