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大黄素固体脂质纳米粒的载药研究:制剂设计与体外抗癌研究。

Aloe-emodin loaded solid lipid nanoparticles: formulation design and in vitro anti-cancer study.

机构信息

State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau , Macau , China.

出版信息

Drug Deliv. 2015;22(5):666-74. doi: 10.3109/10717544.2014.882446. Epub 2014 Feb 11.

DOI:10.3109/10717544.2014.882446
PMID:24512431
Abstract

Aloe-emodin (AE) is a promising anti-tumor candidate for its significant activity against various tumors such as lung cancer, hepatic cancer, breast cancer and so on. Nevertheless, AE is clinically limited due to its poor water solubility and low bioavailability. This study was designed to prepare AE-loaded solid lipid nanoparticles (AE-SLNs) in an attempt to improve the anti-cancer efficacy of AE. The AE-SLNs were prepared with optimized prescription using high pressure homogenization (HPH) technique. Ultimately, the AE-SLNs showed stable particle size at 88.9 ± 5.2 nm, ideal drug entrapment efficiency (EE) of 97.71 ± 0.5% and good stability with regard to zeta-potential as high as -42.8 mV. The in vitro release profiles revealed that AE achieved sustained release by loading into SLNs. Moreover, AE-SLNs showed significantly higher in vitro cytotoxicity against human breast cancer MCF-7 cells and human hepatoma HepG2 cells as compared to the AE solution, while they showed no significant toxicity on human mammary epithelial MCF-10A cells. Hoechst 33342 staining and Annexin V/PI double staining indicated that AE-SLNs induced higher apoptotic rates in MCF-7 cells. Further study elucidated that the improved anti-cancer efficacy may be attributed to the increased cellular uptake of AE. Based on these findings, we believe that the development of AE-SLNs is an effective way for improving the anti-cancer efficacy of AE.

摘要

大黄素(AE)是一种很有前途的抗肿瘤候选药物,因为它对肺癌、肝癌、乳腺癌等多种肿瘤具有显著的活性。然而,由于其水溶性差和生物利用度低,AE 在临床上受到限制。本研究旨在制备载有大黄素的固体脂质纳米粒(AE-SLNs),试图提高 AE 的抗癌疗效。AE-SLNs 采用高压匀质(HPH)技术,根据优化的处方制备。最终,AE-SLNs 的粒径稳定在 88.9±5.2nm,理想的药物包封效率(EE)为 97.71±0.5%,并且在高达-42.8mV 的 ζ 电位方面具有良好的稳定性。体外释放曲线表明,AE 通过负载到 SLNs 中实现了持续释放。此外,与 AE 溶液相比,AE-SLNs 对人乳腺癌 MCF-7 细胞和人肝癌 HepG2 细胞表现出明显更高的体外细胞毒性,而对人乳腺上皮 MCF-10A 细胞没有明显毒性。Hoechst 33342 染色和 Annexin V/PI 双重染色表明,AE-SLNs 诱导 MCF-7 细胞凋亡率更高。进一步研究表明,抗癌疗效的提高可能归因于 AE 的细胞摄取增加。基于这些发现,我们相信 AE-SLNs 的开发是提高 AE 抗癌疗效的有效途径。

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