首页> 外文期刊>Bulletin of the Korean Chemical Society >Origin of Difference in the Reactivity of Aliphatic and Aromatic Guanidine‐containing Pharmaceuticals Toward [18F]Fluorination: Coulombic Forces and Hydrogen Bonding
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Origin of Difference in the Reactivity of Aliphatic and Aromatic Guanidine‐containing Pharmaceuticals Toward [18F]Fluorination: Coulombic Forces and Hydrogen Bonding

机译:脂肪族和芳族胍的药物反应性的差异起源于[18F]氟化:库仑力和氢键

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Quantum chemical analysis is presented to elucidate the origin of difference in the reactivity of aliphatic vs. aromatic guanidine‐containing pharmaceuticals toward [18F]fluorination. We focus on the position (near to or far away from the site of reaction) of F? nucleophile in pre‐reaction complexes, as determined by intricate interplay of the Coulombic forces between the ionic species and hydrogen bonding with the –Boc protected guanidine. In [18F]fluorination of aliphatic guanidine compounds, the freely moving nucleophile F? is positioned close to the site of fluorination irrespective of the length of side chain, in agreement with the observed similar reaction yields for –CH2OMs and –CH2CH2CH2OMs side chains. As for the effects of positions of –Boc protection, we predict that the effects would to be contrary to the corresponding aromatic case, with the N, N″‐bis‐Boc protected guanidine compound being much more reactive than the N, N′‐bis‐Boc protected guanidine compound.
机译:提出了量子化学分析以阐明脂肪族与芳族胍的药物的反应性差异偏向[18F]氟化。我们专注于F的位置(靠近或远离反应的地方)f?在预反应络合物中的亲核试剂,如在离子物质和氢键之间与-COC保护的胍之间的库仑力的复杂相互作用所确定的。在[18f]氟族胍化合物的氟化术中,自由移动的亲核官F?无论侧链长度如何,靠近氟化位点,与观察到的-CH2OMS和-CH2CH2CH2OMS侧链相一致。至于 - 中共保护的效果,我们预测,效果与相应的芳族案例相反,N,N“-BIS-BOC保护的胍化合物比N,N'- BIS-BOC保护的胍化合物。

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