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用于直接分析脂质体包裹化合物的共振增强多光子电离飞行时间质谱法。

Resonance-enhanced multiphoton ionization time-of-flight mass spectrometry for direct analysis of liposome-encapsulated compounds.

作者信息

Yamashita Keishi, Sakakibara Kento, Kouyama Yuta, Sugiyama Hitomi, Ueyama Tomohiro, Nishijima Koji, Uchimura Tomohiro

机构信息

Department of Materials Science and Engineering, Graduate School of Engineering, University of Fukui, 3-9-1 Bunkyo, Fukui, 910-8507, Japan.

General Center for Perinatal, Maternal and Neonatal Medicine, Niigata University Medical and Dental Hospital, 1-754, Asahimachi-dori, Chuo-ku, Niigata, 951-8520, Japan.

出版信息

Anal Sci. 2025 Feb;41(2):173-178. doi: 10.1007/s44211-024-00683-8. Epub 2024 Nov 7.

Abstract

The direct measurement of compounds encapsulated into liposomes without pretreatment allows verification of both the encapsulation efficiency and the release rate of liposomes in their original state. In the present study, the direct analysis of liposomes was conducted via resonance-enhanced multiphoton ionization time-of-flight mass spectrometry (REMPI-TOFMS). When analyte species (2-phenoxyethanol) encapsulated in liposomes were measured online, spike signals appeared in a time profile of the peak area for 2-phenoxyethanol, which suggested a dispersion of the compound in this sample. In addition, the spikes disappeared when the liposomes collapsed following the addition of a Triton X-100 aqueous solution. These results strongly suggest that the appearance of spikes arises from the compound encapsulated into the dispersed liposomes. REMPI-TOFMS has an inherent characteristic of superior selectivity, which suggests that this process would be useful for achieving a precise evaluation of the release properties of target compounds even in a liposome sample containing a large variety of components.

摘要

无需预处理直接测量脂质体中包封的化合物,可验证脂质体在原始状态下的包封效率和释放速率。在本研究中,通过共振增强多光子电离飞行时间质谱(REMPI-TOFMS)对脂质体进行直接分析。当在线测量脂质体中包封的分析物(2-苯氧基乙醇)时,2-苯氧基乙醇峰面积的时间谱中出现尖峰信号,这表明该化合物在该样品中发生了分散。此外,加入Triton X-100水溶液使脂质体破裂后,尖峰消失。这些结果有力地表明,尖峰的出现源于包封在分散脂质体中的化合物。REMPI-TOFMS具有选择性优异的固有特性,这表明即使在含有多种成分的脂质体样品中,该过程对于精确评估目标化合物的释放特性也将是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11eb/11750879/3f4c8e1537f7/44211_2024_683_Fig1_HTML.jpg

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