Centre for Pharmaceutical Nanotechnology, Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar (Mohali), Punjab, 160062, India.
AAPS PharmSciTech. 2018 Jan;19(1):460-469. doi: 10.1208/s12249-017-0851-9. Epub 2017 Aug 7.
Present investigation deals with formulation and evaluation of tamoxifen (TMX)-loaded liquid crystalline nanoparticles (TMX-LCNPs) for improving oral bioavailability and safety of the existing treatment. Hexagonal Glyceryl monooleate-based TMX-LCNPs (GLCNPs) and Phytantriol-based TMX-LCNPs (PLCNPs) were prepared by dilution-through-hydrotrope method for oral administration. Oleic acid was incorporated in the lipid matrix to enhance the drug loading in the LCNPs. Optimized LCNPs displayed small particle size with a narrow distribution, sustained drug release and high gastrointestinal stability. TMX-LCNPs were found to be considerably higher cytotoxic to MCF-7 cells as compared to free TMX. Substantial fold enhancement in oral bioavailability (~7- and ~5-folds with TMX-GLCNPs and TMX-PLCNPs, respectively) was evident followed by significant reduction in tumor burden with lesser hepatotoxicity. Out of the two LCNP formulations, PLCNPs were found to be better in convalescing the disease.
本研究旨在通过制备和评价他莫昔芬(TMX)负载的液晶纳米粒(TMX-LCNPs),改善现有治疗方法的口服生物利用度和安全性。通过稀释-through-增溶法制备了基于六甘醇单油酸酯的 TMX-LCNPs(GLCNPs)和基于植烷三醇的 TMX-LCNPs(PLCNPs),用于口服给药。将油酸掺入脂质基质中,以提高 LCNPs 中的药物载量。优化后的 LCNPs 粒径小,分布窄,药物释放持续时间长,胃肠道稳定性高。与游离 TMX 相比,TMX-LCNPs 对 MCF-7 细胞的细胞毒性显著增加。口服生物利用度显著提高(TMX-GLCNPs 和 TMX-PLCNPs 分别提高约 7 倍和 5 倍),肿瘤负担显著减轻,肝毒性降低。在两种 LCNP 制剂中,PLCNPs 在恢复疾病方面表现更好。