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首页> 外文期刊>International Journal of Pharmaceutics >Tamoxifen encapsulation within polyethylene glycol-coated nanospheres. A new antiestrogen formulation.
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Tamoxifen encapsulation within polyethylene glycol-coated nanospheres. A new antiestrogen formulation.

机译:他莫昔芬在聚乙二醇包覆的纳米球中的封装。一种新的抗雌激素制剂。

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When dealing with solid tumors in vivo, pegylated long-circulating carrier systems show, after intravenous administration, an attractive extravasation profile with an enhanced localization in the tumoral interstitium. These systems could be of help for the delivery of cancer fighting drugs, such as Tamoxifen, a well known antiestrogen used in breast cancer therapy that possesses an extended biodistribution in vivo. This work aimed at encapsulating Tamoxifen in long-circulating poly(MePEGcyanoacrylate-co-hexadecylcyanoacrylate) 1:4 nanospheres. Tamoxifen-loaded poly(MePEGcyanoacrylate-co-hexadecylcyanoacrylate) nanospheres were successfully synthesized and characterized in terms of hydrophilicity/hydrophobicity by a model made up from near infrared spectra using principal component analysis. Zeta potential, drug loading, encapsulation efficiency, as well as biological effect, in vitro release and nanospheres integrity were also investigated. Even though near infrared spectroscopy could not detect Tamoxifen, it revealed that Pluronic F68 was associated with the pegylated nanospheres. HPLC measurements demonstrated that Tamoxifen was encapsulated in the pegylated nanospheres following a partition equilibrium between the polymeric and the aqueous phases. The Tamoxifen encapsulated in the nanospheres still showed a transcription inhibitory activity in ex vivo experiments. However, zeta potential and in vitro release suggested that Tamoxifen was essentially localized at the nanoparticles surface, resulting in an important and immediate drug release.
机译:当在体内处理实体瘤时,聚乙二醇化的长循环载体系统在静脉内给药后显示出诱人的外渗特征,在肿瘤间质中的定位增强。这些系统可能有助于抗癌药物的输送,例如他莫昔芬,这是一种用于乳腺癌治疗的众所周知的抗雌激素药,在体内具有广泛的生物分布。这项工作旨在将他莫昔芬封装在长循环的聚(MePEG氰基丙烯酸酯-共十六烷基氰基丙烯酸酯)1:4纳米球中。成功地合成了他莫昔芬负载的聚(MePEG氰基丙烯酸酯-共十六烷基氰基丙烯酸酯)纳米球,并通过基于近红外光谱的主成分分析模型对亲水性/疏水性进行了表征。还研究了ζ电势,载药量,包封效率以及生物学效应,体外释放和纳米球完整性。即使近红外光谱无法检测到他莫昔芬,也表明Pluronic F68与聚乙二醇化纳米球有关。 HPLC测量表明,在聚合物相和水相之间的分配平衡之后,他莫昔芬被包封在聚乙二醇化的纳米球中。封装在纳米球中的他莫昔芬在离体实验中仍显示出转录抑制活性。然而,ζ电位和体外释放表明他莫昔芬基本上位于纳米颗粒表面,导致重要且立即的药物释放。

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