College of Pharmacy and Nutrition, University of Saskatchewan, Saskatoon, SK, Canada.
J Mass Spectrom. 2011 Oct;46(10):1060-70. doi: 10.1002/jms.1988.
Gemini surfactants are cationic lipids which are utilized for both in vitro and in vivo gene delivery. Structurally, they are comprised of two hydrophobic tail regions with polar head termini that are attached to one another through a spacer region. Structural elucidation and characterization of 29 novel diquaternary ammonium gemini surfactant molecules were achieved using a quadrupole time-of-flight mass spectrometer (QqToF-MS) and a quadrupole-hexapole-quadrupole mass spectrometer (QhQ-MS). The tested compounds were categorized into four distinct structural families based upon the composition of the spacer region. Single stage (MS), tandem stage (MS/MS) and quasimulti-stage (quasi MS(3)) mass spectrometric analysis allowed for confirmation of each gemini surfactant's molecular composition and structure through the identification of common and unique product ions. Identification of similarities in the gemini surfactants' fragmentation behaviour resulted in the production of a universal fragmentation pathway that can assist in the future MS/MS analysis of novel quaternary ammonium gemini surfactants, with unique product ions being indicative of specific structural elements. Furthermore, evidence for the association of agemini surfactant with bromine counter ion was confirmed during MS analysis of tested gemini surfactants regardless of their chemical composition; previously, evidence for bromine and gemini surfactant association was only observed with compounds bearing short alkyl spacer regions. MS/MS analysis of the bromine adducts was also confirmatory to the molecular structure.Understanding the ionization and fragmentation behaviour of gemini surfactants, including bromine adducts, will allow for future qualitative and quantitative identification of these novel drug delivery agents within biological samples.
双子表面活性剂是阳离子脂质体,可用于体外和体内基因传递。从结构上讲,它们由两个疏水尾部区域和一个极性头部末端组成,通过间隔区域连接在一起。使用四极杆飞行时间质谱仪 (QqToF-MS) 和四极杆-六极杆-四极杆质谱仪 (QhQ-MS) 对 29 种新型二季铵盐双子表面活性剂分子进行了结构阐明和表征。根据间隔区域的组成,将测试化合物分为四个不同的结构家族。单级 (MS)、串联级 (MS/MS) 和准多级 (quasi MS(3)) 质谱分析通过鉴定常见和独特的产物离子,可确认每个双子表面活性剂的分子组成和结构。双子表面活性剂的碎裂行为的相似性的鉴定导致产生了通用的碎裂途径,可用于未来对新型季铵盐双子表面活性剂的 MS/MS 分析,独特的产物离子表明特定的结构元素。此外,无论其化学组成如何,在测试的双子表面活性剂的 MS 分析中都证实了双子表面活性剂与溴抗衡离子的关联;以前,只有带有短烷基间隔区域的化合物才观察到溴和双子表面活性剂的关联证据。溴加合物的 MS/MS 分析也证实了分子结构。了解双子表面活性剂(包括溴加合物)的电离和碎裂行为将允许在未来对这些新型药物输送剂在生物样品中的定性和定量鉴定。