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离子交换柱技术作为一种新型方法,用于评估不同脂质纳米粒中多西他赛的释放。

Ion exchange column technique as a novel method for evaluating the release of docetaxel from different lipid nanoparticles.

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, Umm Al Qura University, Mecca, Saudi Arabia.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Helwan-University, Cairo, Egypt.

出版信息

Drug Deliv Transl Res. 2022 Jan;12(1):282-293. doi: 10.1007/s13346-021-00937-2. Epub 2021 Mar 25.

Abstract

Lipid nanoparticles with their unique characters showed many advantages as carriers for anticancer drugs. To compare between these nanoparticles as carriers for anticancer drugs, it was important to evaluate and characterize their drug retention and release properties. In this study, ion exchange column is used as a new evaluation technique. Solid lipid nanoparticles (SLN), nanostructured lipid carrier (NLC), and cubic nanoparticles were prepared using the homogenization technique. Characterization of these nanoparticles was carried out by measuring particle size, zeta potential, and entrapment efficiency. The ion exchange column was used to evaluate docetaxel release from the different nanoparticles as donors to acceptor liposomes that mimic the cell membranes. Both populations were mixed and at different time points, separated using the columns. The amounts of docetaxel in the eluted nanoparticles and retained liposomes were calculated. The particle size of all donors was in the nanometer range with almost neutral zeta potential. The particle size of the acceptor liposomes was 135 nm with a high negative zeta potential -55 mV. Ion exchange columns showed excellent retention of the negative acceptor liposomes while less than 1% of the different donors were retained on the columns. Cubic nanoparticles showed the highest entrapment efficiency (95%) and the slowest drug transfer in comparison with SLN and NLC. In conclusion, the ion exchange column technique can be applied successfully to evaluate the release of docetaxel from the different lipid nanoparticles to acceptor liposomes. Cubic nanoparticles showed advantageous docetaxel incorporation and transfer over SLN and NLC.

摘要

脂质纳米粒具有独特的性质,作为抗癌药物载体具有许多优势。为了比较这些纳米粒作为抗癌药物载体的性能,评估和表征它们的药物保留和释放特性非常重要。在这项研究中,离子交换柱被用作一种新的评价技术。采用匀质技术制备固体脂质纳米粒(SLN)、纳米结构脂质载体(NLC)和立方纳米粒。通过测量粒径、Zeta 电位和包封效率对这些纳米粒进行表征。离子交换柱用于评估不同纳米粒(作为供体)向模拟细胞膜的脂质体(作为受体)释放多西紫杉醇。将两种粒子混合,在不同时间点,使用柱子进行分离。计算洗脱纳米粒和保留脂质体中多西紫杉醇的含量。所有供体的粒径均在纳米范围内,Zeta 电位几乎为中性。受体脂质体的粒径为 135nm,Zeta 电位为负 -55mV。离子交换柱对带负电的受体脂质体具有极好的保留作用,而不同供体在柱子上的保留率不到 1%。与 SLN 和 NLC 相比,立方纳米粒显示出最高的包封效率(95%)和最慢的药物传递。总之,离子交换柱技术可成功应用于评估不同脂质纳米粒向受体脂质体释放多西紫杉醇的情况。立方纳米粒在包封和传递多西紫杉醇方面优于 SLN 和 NLC。

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