University of Antwerp, Department of Pharmaceutical Technology and Biopharmacy, Universiteitsplein 1, 2610 Wilrijk, Belgium.
Janssen Pharmaceutica, Nonclinical Safety, Pathology/Toxicology, Turnhoutseweg 30, 2340 Beerse, Belgium.
Eur J Pharm Biopharm. 2021 Jun;163:158-170. doi: 10.1016/j.ejpb.2021.04.004. Epub 2021 Apr 10.
The purpose of this work was to evaluate solid lipid nanoparticles (SLNs) as a long acting injectable drug delivery platform for intramuscular and subcutaneous administration. SLNs were developed with a low (unsaturated) and high (supersaturated) drug concentration at equivalent lipid doses. The impact of the drug loading as well as the administration route for the SLNs using two model compounds with different physicochemical properties were explored for their in vitro and in vivo performance. Results revealed that drug concentration had an influence on the particle size and entrapment efficiency of the SLNs and, therefore, indirectly an influence on the C/dose and AUC/dose after administration to rats. Furthermore, the in vitro drug release was compound specific, and linked to the affinity of the drug compounds towards the lipid matrix and release medium. The pharmacokinetic parameters resulted in an increased t, t and mean residence time (MRT) for all formulations after intramuscular and subcutaneous dosing, when compared to intravenous administration. Whereas, the subcutaneous injections performed better for those parameters than the intramuscular injections, because of the higher blood perfusion in the muscles compared with the subcutaneous tissues. In conclusion, SLNs extend drug release, need to be optimized for each drug, and are appropriate carriers for the delivery of drugs that require a short-term sustained release in a timely manner.
本研究旨在评估固体脂质纳米粒(SLNs)作为一种长效可注射药物传递平台,用于肌肉内和皮下给药。SLNs 是在等量脂质剂量下,以低(不饱和)和高(过饱和)药物浓度开发的。使用两种具有不同理化性质的模型化合物,探索了药物载药量以及 SLNs 的给药途径对其体外和体内性能的影响。结果表明,药物浓度对 SLNs 的粒径和包封效率有影响,因此间接影响了大鼠给药后的 C/dose 和 AUC/dose。此外,体外药物释放具有化合物特异性,并与药物化合物与脂质基质和释放介质的亲和力有关。与静脉注射相比,药代动力学参数表明,所有制剂的 t 1/2 、t max 和平均驻留时间(MRT)在肌肉内和皮下给药后均增加。然而,与肌肉内注射相比,皮下注射在这些参数方面表现更好,因为与皮下组织相比,肌肉中的血液灌注更高。总之,SLNs 延长了药物释放,需要针对每种药物进行优化,并且是需要及时进行短期持续释放的药物的合适载体。