费斯特共振能量转移
药代动力学
纳米囊
化学
PEG比率
体内
生物物理学
材料科学
纳米技术
纳米颗粒
药理学
荧光
生物
医学
物理
生物技术
经济
量子力学
财务
作者
Vincent Lebreton,Norraseth Kaeokhamloed,Anastasiia Vasylaki,Grégory Hilairet,Adélie Mellinger,Jérôme Bejaud,Patrick Saulnier,Frédéric Lagarce,Florence Gattacceca,Samuel Legeay,Emilie Roger
标识
DOI:10.1016/j.jconrel.2022.09.057
摘要
The present study investigated the pharmacokinetics of intact lipid nanocapsules (LNCs) after intravenous administration in rats. Six different Förster resonance energy transfer LNCs (FRET-LNCs) have been studied with 2 sizes (50 and 85 nm) and 3 coating types (none, DSPE-mPEG 2000 or stearylamine). A FRET-LNCs blood extraction method was developed to retain an accurate FRET signal. Intact FRET-LNCs were specifically quantified through combination of FRET signal and Nano Tracker Analysis. Pharmacokinetic data were first described by non-compartmental analysis, then used to develop a population pharmacokinetic model. The pharmacokinetic elimination of FRET-LNCs was non-linear and dependent on size and surface modification, while the distribution was dependent on size. The LNCs 85 nm volume of distribution was lower than LNCs 50 nm. As expected, LNCs 85 nm with PEG coating displayed a lower clearance than other formulations. Surprisingly, this study highlighted a faster elimination of LNCs 50 nm with PEG compared to other formulations which could be explained by instability in blood. This first pharmacokinetic model of intact LNCs allowed a thorough understanding of the influence of size and coating on pharmacokinetic properties and paves the way for future mechanistic modeling approaches to predict the fate of LNCs in vivo.
科研通智能强力驱动
Strongly Powered by AbleSci AI