Mansour Heidi M, Hickey Anthony J
University of North Carolina at Chapel Hill, School of Pharmacy, Division of Molecular Pharmaceutics, Campus Box #7360, 311 Pharmacy Lane, 1311 Kerr Hall, Dispersed Systems Laboratory, Chapel Hill, NC 27599-7360, USA.
AAPS PharmSciTech. 2007 Nov 30;8(4):E99. doi: 10.1208/pt0804099.
This review presents an introduction to Raman scattering and describes the various Raman spectroscopy, Raman microscopy, and chemical imaging techniques that have demonstrated utility in biocolloidal self-assemblies, pharmaceutical drug delivery systems, and pulmonary research applications. Recent Raman applications to pharmaceutical aerosols in the context of pulmonary inhalation aerosol delivery are discussed. The "molecular fingerprint" insight that Raman applications provide includes molecular structure, drug-carrier/excipient interactions, intramolecular and intermolecular bonding, surface structure, surface and interfacial interactions, and the functional groups involved therein. The molecular, surface, and interfacial properties that Raman characterization can provide are particularly important in respirable pharmaceutical powders, as these particles possess a higher surface-area-to-volume ratio; hence, understanding the nature of these solid surfaces can enable their manipulation and tailoring for functionality at the nanometer level for targeted pulmonary delivery and deposition. Moreover, Raman mapping of aerosols at the micro- and nanometer level of resolution is achievable with new, sophisticated, commercially available Raman microspectroscopy techniques. This noninvasive, highly versatile analytical and imaging technique exhibits vast potential for in vitro and in vivo molecular investigations of pulmonary aerosol delivery, lung deposition, and pulmonary cellular drug uptake and disposition in unfixed living pulmonary cells.
本综述介绍了拉曼散射,并描述了各种拉曼光谱、拉曼显微镜和化学成像技术,这些技术已在生物胶体自组装、药物递送系统和肺部研究应用中展现出实用性。讨论了拉曼在肺部吸入气雾剂递送背景下对药物气雾剂的最新应用。拉曼应用所提供的“分子指纹”见解包括分子结构、药物-载体/辅料相互作用、分子内和分子间键合、表面结构、表面和界面相互作用以及其中涉及的官能团。拉曼表征能够提供的分子、表面和界面性质在可吸入药物粉末中尤为重要,因为这些颗粒具有更高的表面积与体积比;因此,了解这些固体表面的性质能够使其在纳米水平上进行操控和定制,以实现靶向肺部递送和沉积的功能。此外,利用新型、先进的商用拉曼显微光谱技术,可以实现微米和纳米级分辨率的气雾剂拉曼映射。这种非侵入性、高度通用的分析和成像技术在未固定的活肺细胞中对肺部气雾剂递送、肺部沉积以及肺部细胞药物摄取和处置进行体外和体内分子研究方面具有巨大潜力。