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首页> 外文期刊>Mass Spectrometry Letters >Synthesis and Fragmentation Behavior Study of n-alkyl/benzyl Isatin Derivatives Present in Small/Complex Molecules: Precursor for the Preparation of Biological Active Heterocycles
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Synthesis and Fragmentation Behavior Study of n-alkyl/benzyl Isatin Derivatives Present in Small/Complex Molecules: Precursor for the Preparation of Biological Active Heterocycles

机译:存在于小/复杂分子中的n-烷基/苄基Isatin衍生物的合成和断裂行为研究:前体,用于制备生物活性杂环

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摘要

N-Alkyl/benzyl substituted isatin derivatives are intermediates and synthetic precursors for the preparation of biological active heterocycles. N-alkyl/benzyl isatins have showed various biological activities, such as cytotoxicity, antiviral, caspase inhibition, cannabinoid receptor 2 agonists for the treatment of neuropathic pain, etc. In this study, N-alkyl/benzyl isatin derivatives were synthesized from isatin and alkyl/benzyl halides in presence of K 2 CO 3 in DMF and excellent to quantitative yields (~95%) were obtained. Isatins and benzyl-isatins were condensed with fluorescein hydrazide to form fluorescein hydrazone. All the compounds were subjected to their fragmentation behavior study using LC/MS n . N-Alkyl substituted isatin derivatives fragmented at nitrogen-carbon (N-C) bond, hence gave daughter ion as [RN+H] + . Whereas, N-benzyl substituted isatin derivatives fragmented at carbon-carbon (C-C) bond of alkyl chain which linked with nitrogen molecules, therefore gave N-methyl fragments [RNCH 2 ] + . This study demonstrated that, isatin moiety present in a small/large molecule or in a matrix of reaction mixture with/without N-alkyl/benzyl substituents can be identified by mass spectroscopic fragmentation behavior study.
机译:N-烷基/苄基取代的靛红衍生物是用于制备生物活性杂环的中间体和合成前体。 N-烷基/苄基Isatins已显示出多种生物学活性,例如细胞毒性,抗病毒,胱天蛋白酶抑制作用,用于治疗神经性疼痛的大麻素受体2激动剂等。在这项研究中,N-烷基/苄基Isatin衍生物是由Isatin和在DMF中存在K 2 CO 3的条件下,获得了烷基/苄基卤化物,具有优异的定量收率(〜95%)。将靛红和苄基靛红与荧光素酰肼缩合以形成荧光素。所有化合物均使用LC / MS n进行了断裂行为研究。 N-烷基取代的靛红衍生物在氮-碳(N-C)键处断裂,因此给出的子离子为[RN + H] +。而在烷基链的碳-碳(C-C)键处与氮分子连接的N-苄基取代的靛红衍生物断裂,因此得到N-甲基片段[RNCH 2] +。这项研究表明,存在于小分子/大分子中或存在/不具有N-烷基/苄基取代基的反应混合物基质中的isatin部分可以通过质谱碎裂行为研究进行鉴定。

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