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甘羟聚醚-聚乙二醇接枝共聚物纳米粒作为多西紫杉醇口服给药载体。

Nanoparticles from Gantrez® AN-poly(ethylene glycol) conjugates as carriers for oral delivery of docetaxel.

机构信息

Department of Chemistry and Pharmaceutical Technology, NANO-VAC Research Group, University of Navarra, Spain.

Department of Chemistry and Pharmaceutical Technology, NANO-VAC Research Group, University of Navarra, Spain.

出版信息

Int J Pharm. 2019 Nov 25;571:118699. doi: 10.1016/j.ijpharm.2019.118699. Epub 2019 Sep 16.

Abstract

The oral delivery of docetaxel (DTX) is challenging due to a low bioavailability, related to an important pre-systemic metabolism. With the aim of improving the bioavailability of this cytotoxic agent, nanoparticles from conjugates based on the copolymer of methyl vinyl ether and maleic anhydride (poly(anhydride)) and two different types of PEG, PEG2000 (PEG2) or methoxyPEG2000 (mPEG2), were evaluated. Nanoparticles, with a DTX loading close to 10%, were prepared by desolvation and stabilized with calcium, before purification and lyophilization. For the pharmacokinetic study, nanoparticles were orally administered to mice at a single dose of 30 mg/kg. The plasma levels of DTX were high, prolonged in time and, importantly, quantified within the therapeutic window. The relative oral bioavailability was calculated to be up to 56% when DTX was loaded in nanoparticles from poly(anhydride)-mPEG2000 conjugate (DTX-NP-mPEG2). Finally, a comparative toxicity study between equitoxic doses of free iv DTX and oral DTX-NP-mPEG2 was conducted in mice. Animals orally treated with DTX-loaded nanoparticles displayed less severe signs of hypersensitivity reactions, peripheral neurotoxicity, myelosuppression and hepatotoxicity than free iv docetaxel. In summary, poly(anhydride)-PEG conjugate nanoparticles appears to be adequate carries for the oral delivery of docetaxel.

摘要

由于生物利用度低,与重要的预系统性代谢有关,因此将多西紫杉醇(DTX)经口给药具有挑战性。为了提高这种细胞毒性药物的生物利用度,评估了基于甲基乙烯基醚和马来酸酐的共聚物(聚(酸酐))和两种不同类型的聚乙二醇(PEG2000(PEG2)或甲氧基聚乙二醇 2000(mPEG2)的缀合物的纳米粒子。通过去溶剂化并使用钙稳定,在纯化和冷冻干燥之前制备载有接近 10%DTX 负载的纳米粒子。为了进行药代动力学研究,将纳米粒子以 30mg/kg 的单剂量口服给予小鼠。DTX 的血浆水平很高,时间延长,重要的是,在治疗窗内定量。当 DTX 负载在聚(酸酐)-mPEG2000 缀合物的纳米粒子中时,计算出相对口服生物利用度高达 56%(DTX-NP-mPEG2)。最后,在小鼠中进行了等毒性剂量的游离 iv DTX 和口服 DTX-NP-mPEG2 的比较毒性研究。与游离 iv 多西紫杉醇相比,口服给予载有 DTX 的纳米粒子的动物表现出较轻的过敏反应,周围神经毒性,骨髓抑制和肝毒性迹象。总之,聚(酸酐)-PEG 缀合物纳米粒子似乎是多西紫杉醇口服给药的合适载体。

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