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超高效液相色谱-质谱联用和基质辅助激光解吸电离质谱研究酞菁铝氯及其在纳米乳液和生物基质中定量分析方法的建立。

UHPLC-MS and MALDI-MS study of aluminum phthalocyanine chloride and development of a bioanalytical method for its quantification in nanoemulsions and biological matrices.

机构信息

Biological Sciences Institute, Universidade de Brasília, Brasília DF 70910-900, Brazil.

Soft Matter Nanotechnology Group, CIC BiomaGUNE, San Sebastián, Gipuzkoa, Spain.

出版信息

Talanta. 2018 Mar 1;179:159-166. doi: 10.1016/j.talanta.2017.10.057. Epub 2017 Oct 28.

Abstract

Metal phthalocyanines are promising components in photodynamic therapy. Aluminum phthalocyanine chloride (AlClPc) has been used to treat oral cancer in mice, human carious tissue, lung cancer cells and other conditions. To overcome the high hydrophobicity of AlClPc, phthalocyanine is often encapsulated in nanoformulations. Despite increased usage, little is known about the pharmacokinetics and biodistribution of AlClPc. The aim of this study was the development and validation of a UHPLC-MS method for the determination of AlClPc in solution after extraction from nanoformulations and biological matrices such as plasma and tissue. The described method has been assayed as to selectivity, linearity, limits of detection and quantification, precision and recovery. The present study is the first to describe the behavior of AlClPc in biological matrices with mass spectrometry as well as the first to describe the chromatographic behavior of AlClPc contaminants. Molecular mass analysis identified dechlorination of AlClPc by both LC/MS and MALDI-MS and an adduct formation in LC/MS. The parameters observed indicated that the method has applicability and robustness for use in biodistribution studies.

摘要

金属酞菁是光动力疗法中很有前途的组成部分。铝酞菁氯(AlClPc)已被用于治疗小鼠口腔癌、人类龋齿组织、肺癌细胞和其他病症。为了克服 AlClPc 的高疏水性,酞菁通常被包封在纳米制剂中。尽管使用量增加,但人们对 AlClPc 的药代动力学和生物分布了解甚少。本研究的目的是开发和验证一种用于从纳米制剂和生物基质(如血浆和组织)中提取后测定溶液中 AlClPc 的 UHPLC-MS 方法。该方法已针对选择性、线性、检测限和定量限、精密度和回收率进行了评估。本研究首次用质谱法描述了 AlClPc 在生物基质中的行为,也是首次描述了 AlClPc 污染物的色谱行为。通过 LC/MS 和 MALDI-MS 分析,分子质量分析确定了 AlClPc 的脱氯作用,并在 LC/MS 中形成了加合物。观察到的参数表明,该方法适用于生物分布研究,具有适用性和稳健性。

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