| Literature DB >> 28986321 |
Lina Chen1, Bingchen Chen2, Li Deng1, Baoan Gao3, Yuansheng Zhang4, Chan Wu1, Nong Yu4, Qinqin Zhou5, Jianzhong Yao6, Jianming Chen7.
Abstract
The discovery of new intravenous drug delivery carrier for water-insoluble drug is a challenging task. In this paper, novel two-vial formulation of paclitaxel (PTX)-loaded lipid nanoemulsions (TPLEs) with particle sizes of 110nm (TPLE-1), 220nm (TPLE-2) and 380nm (TPLE-3), which were formed by mixing a PEG400 solution of PTX and 10% (w/w) blank lipid emulsions (BLEs) with different particle size prior to use, were developed and comparatively evaluated for their pharmaceutics, pharmacokinetics, biodistribution, in vitro and in vivo anticancer efficiency. Among them, TPLE-1 displayed higher PTX-loading, slower PTX-release and larger PTX-distribution in oil-phase, significantly reduced extraction by RES organs, increased tumor-uptake, showed stronger cytotoxicity against MCF-7 cells and more potent anticancer efficacy on MCF-7 tumor-bearing nude mice, and had greater plasma AUC0-∞ value, smaller plasma clearance (CL), longer mean residence time (MRT) and elimination half-life (T1/2) in SD rats. It also exhibited the same in vivo efficacy as Taxol® and even produced less hemolysis and intravenous irritation. Moreover, its LD50 was 4.3-fold higher than that of Taxol®. All results demonstrate that TPLE-1 is a promising candidate drug due to its high tumor-accumulation and effectiveness, low toxicity, good safety and druggability in clinical application for the cancer therapy.Entities:
Keywords: Anticancer; Lipid nanoemulsion; MCF-7 cell; Paclitaxel; Two-vial formulation
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Year: 2017 PMID: 28986321 DOI: 10.1016/j.ijpharm.2017.10.005
Source DB: PubMed Journal: Int J Pharm ISSN: 0378-5173 Impact factor: 5.875