Analytical Research & Development, MRL, Merck & Co., Inc., Rahway, NJ, 07065, USA.
Sterile and Specialty Products, MRL, Merck & Co., Inc., Kenilworth, NJ, 07033, USA.
Anal Chim Acta. 2022 Oct 16;1230:340395. doi: 10.1016/j.aca.2022.340395. Epub 2022 Sep 15.
Long-acting parenteral (LAP) implant has garnered the attraction as a drug delivery technique in recent years. Understanding the drug release process is critical for the study of underlying release mechanism. In this paper, we present a novel application of matrix-assisted laser desorption/ionization-mass spectrometry imaging (MADLI-MSI) for the direct visualization of the drug release process from non-conductive polymeric based LAP implants at molecular level. Custom-made sample holders were designed for LAP sample introduction in place of traditional conductive glass slides. The main technical obstacles of applying MALDI-MSI to study non-conductive materials are surface conductivity which can lead to charge build-up. In order to obtain homogeneous imaging of non-conductive sample surfaces, we developed a new sample surface treatment procedure, which is a critical control step to ensure the data reliability and accuracy in understanding kinetics of drug release process of LAP. Overall, this is the first comprehensive report of a sample preparation methodology tailored for imaging LAP at molecular level, allowing for the direct chemical identification and 2D mapping of an active pharmaceutical ingredient (API) distribution during LAP release process. Furthermore, this work has established the foundation to apply MALDI-MSI to the understanding of LAP implant formulation homogeneity, chemical composition, and degradation. More importantly, this work enabled the extension of MALDI-MSI technique to study a wide range of non-conductive materials.
近年来,长效型(LAP)植入剂作为一种药物输送技术引起了人们的关注。了解药物释放过程对于研究潜在的释放机制至关重要。在本文中,我们提出了一种新的应用,即基质辅助激光解吸/电离质谱成像(MALDI-MSI),用于直接观察非导电聚合物 LAP 植入物在分子水平上的药物释放过程。定制了样品架用于 LAP 样品引入,替代了传统的导电玻璃载玻片。将 MALDI-MSI 应用于研究非导电材料的主要技术障碍是表面导电性,这可能导致电荷积累。为了获得非导电样品表面的均匀成像,我们开发了一种新的样品表面处理程序,这是确保数据可靠性和理解 LAP 药物释放过程动力学准确性的关键控制步骤。总的来说,这是第一个专门用于在分子水平上成像 LAP 的样品制备方法的综合报告,允许在 LAP 释放过程中直接进行活性药物成分(API)分布的化学鉴定和 2D 映射。此外,这项工作为应用 MALDI-MSI 来理解 LAP 植入剂配方均匀性、化学成分和降解奠定了基础。更重要的是,这项工作使 MALDI-MSI 技术能够扩展到研究广泛的非导电材料。