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Solution structure of rifaximin and its synthetic derivative rifaximin OR determined by experimental NMR and theoretical simulation methods.

机译:通过实验NMR和理论模拟方法确定了利福昔明及其合成衍生物利福昔明OR的溶液结构。

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The solution structure of rifaximin and its derivative rifaximin OR (open ring) was determined by combining NMR experimental results, theoretical simulation of two-dimensional NMR spectra by complete relaxation matrix analysis (corma), and molecular dynamics calculations. In this study the structural rearrangements due to the opening of the aliphatic chain of rifaximin after the reduction process to form rifaximin OR were investigated. Close spatial proximity of CH(3)(14) and H28b protons detected by 2D-ROESY spectrum of rifaximin OR, which was not present in rifaximin and the down-field shift of CH(3)(34) protons in rifaximin OR (1)H spectrum were crucial to understand the structural modifications, which occurred within the system. The aliphatic chain of rifaximin OR was found to be no longer symmetrical with respect to the aromatic moiety. Although no dramatic structural rearrangements were detected, the aliphatic chain moved toward CH(3)(14), causing a reduction of the aromatic shielding contribution in particular on CH(3)(34).
机译:利福昔明及其衍生物利福昔明OR(开环)的溶液结构是通过结合NMR实验结果,通过完全弛豫矩阵分析(Corma)进行二维NMR光谱的理论模拟以及分子动力学计算来确定的。在本研究中,研究了在形成利福昔明OR的还原过程后,由于利福昔明脂族链的开放而引起的结构重排。利福昔明OR的2D-ROESY光谱检测到的CH(3)(14)和H28b质子在空间上的接近度,这在利福昔明中不存在,并且利福昔明OR中CH(3)(34)质子的场下偏移(1 H谱对于理解系统内部发生的结构修饰至关重要。发现利福昔明OR的脂族链相对于芳族部分不再对称。尽管没有发现戏剧性的结构重排,但脂肪族链向CH(3)(14)移动,导致芳香族屏蔽作用的降低,特别是对CH(3)(34)的影响。

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