Bender Valentin, Fuchs Leon, Süss Regine
Department of Pharmaceutics, Institute of Pharmaceutical Sciences, University of Freiburg, Sonnenstraße 5, 79104 Freiburg, Germany.
Int J Pharm X. 2024 May 4;7:100255. doi: 10.1016/j.ijpx.2024.100255. eCollection 2024 Jun.
The use of lipids as suitable excipients for drug carrier systems has been established for years. Liposomes or lipid nanoparticles (LNPs) in general have been shown capable of delivering both hydrophilic and hydrophobic drugs. The Covid-19 pandemic and the resulting vaccines have significantly increased interest in the potential for these lipid-based systems, which can carry different types of therapeutic RNAs. LNPs used for the transfection of RNA are usually a multi-component mixture of phospholipids and other lipids. Essential components are positively charged or ionizable lipids such as DOTAP or SM-102, but also uncharged helper lipids such as cholesterol, DOPE, DSPC, DMG-PEG or DSPE-PEG. Due to the differences in charge, simultaneous detection is a challenge. Here, we present a reversed-phase high-performance liquid chromatography charged-aerosol-detector method (RP-HPLC-CAD method) using a C-18 column for the simultaneous determination of charged and uncharged lipids. Our method has been validated according to the ICH-Q2 (R2) guideline for accuracy, precision, specificity and working range, including the limit of detection (LOD) and quantification (LOQ), as well as the calibration range. We were able to show satisfactory results in both precision and accuracy. The working range also shows great potential with a calibration range from 9.375 to 1000 μg/ml, LODs <1.85 μg/ml and LOQs <6.16 μg/ml. This method represents a fast and reproducible procedure for quantifying the lipids mentioned. In combination with the novel approach for the production of LNPs using dual centrifugation (DC), it offers the possibility of extremely rapid production of RNA-loaded LNPs, and the immediate analysis for their lipid components.
脂质作为药物载体系统的合适辅料已应用多年。一般来说,脂质体或脂质纳米颗粒(LNP)已被证明能够递送亲水性和疏水性药物。新冠疫情及由此产生的疫苗显著提高了人们对这些基于脂质的系统潜力的兴趣,这些系统可以携带不同类型的治疗性RNA。用于RNA转染的LNP通常是磷脂和其他脂质的多组分混合物。基本成分是带正电荷或可电离的脂质,如DOTAP或SM - 102,还有不带电荷的辅助脂质,如胆固醇、DOPE、DSPC、DMG - PEG或DSPE - PEG。由于电荷差异,同时检测是一项挑战。在此,我们提出一种反相高效液相色谱带电气溶胶检测法(RP - HPLC - CAD法),使用C - 18柱同时测定带电荷和不带电荷的脂质。我们的方法已根据ICH - Q2(R2)指南针对准确性、精密度、特异性和工作范围进行了验证,包括检测限(LOD)和定量限(LOQ)以及校准范围。我们能够在精密度和准确性方面都展示出令人满意的结果。工作范围也显示出巨大潜力,校准范围为9.375至1000μg/ml,LOD<1.85μg/ml,LOQ<6.16μg/ml。该方法是一种快速且可重复的定量上述脂质的程序。结合使用双离心(DC)生产LNP的新方法,它提供了极快速生产载RNA的LNP以及对其脂质成分进行即时分析的可能性。