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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Collisionally activated dissociations of aminocyclitol-aminoglycoside antibiotics and their application in the identification of a new compound in tobramycin samples
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Collisionally activated dissociations of aminocyclitol-aminoglycoside antibiotics and their application in the identification of a new compound in tobramycin samples

机译:氨基环醇-氨基糖苷类抗生素的碰撞活化解离及其在妥布霉素样品中新化合物鉴定中的应用

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Several aminocyclitol-aminoglycoside antibiotics have been studied by tandem mass spectrometry. Glycosidic bond cleavages were the major reactions in the low energy collisionally activated decomposition (CAD) of the protonated antibiotics. Only the glycoside residing on the C-6-O of the 2-deoxystreptamine was observed to undergo significant decomposition at the C-2-C-3 and O-C-1 bonds. The comprehension of the CAD of known aminoglycosides aided in the identification of an unknown impurity in tobramycin. The unknown compound was initially detected by reverse phase high-performance liquid chromatography following dinitrofluorobenzene derivatization of the amino groups. The molecular weight of the dinitrobenzene derivative measured by LC mass spectrometry (MS) led to the detection of two isomeric impurities in tobramycin by LC-MS using an amino column. Their CAD spectra were subsequently acquired by LC-MS/MS. One of the two compounds was determined to be a known compound, 6 "-O-carbamyltobramycin with the carbamyl group substituted on the glycoside residing on the C-6-O of 2-deoxystreptamine. The fragmentation pattern of the other compound was interpreted as that the unknown was also a carbamyltobramycin. The carbamyl group was, however, substituted on 2-deoxystreptamine. It was speculated that the carbamyl group was substituted at the C-1 amino group. This compound, to our knowledge, has not been reported before. (C) 2000 American Society for Mass Spectrometry. [References: 17]
机译:通过串联质谱研究了几种氨基环糖醇-氨基糖苷类抗生素。糖苷键断裂是质子化抗生素在低能碰撞活化分解(CAD)中的主要反应。观察到仅存在于2-脱氧链胺的C-6-O上的糖苷在C-2-C-3和O-C-1键处发生明显分解。已知氨基糖苷的CAD的理解有助于鉴定妥布霉素中的未知杂质。在氨基的二硝基氟苯衍生化之后,最初通过反相高效液相色谱检测未知化合物。通过LC质谱(MS)测量的二硝基苯衍生物的分子量导致使用氨基柱通过LC-MS检测妥布霉素中的两种异构杂质。随后通过LC-MS / MS获得其CAD光谱。确定这两种化合物中的一种是已知化合物,6“ -O-氨基甲酰基妥布霉素,其氨基甲酰基被取代在2-脱氧链烷胺的C-6-O的糖苷上。另一种化合物的断裂模式解释为未知分子也是氨基甲酰妥布霉素,但是氨基甲酰基被2-脱氧链胺胺取代了,推测氨基甲酰基被C-1氨基取代了,据我们所知,该化合物以前没有报道过(C)2000美国质谱学会[参考文献:17]。

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