[Hydrogen bond and acid-base interactions in erythromycin solutions].

Antibiotiki Pub Date : 1984-08-01
G V Gusakova, G S Denisov, A L Smolianskiĭ, A K Charykov
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Abstract

The association and conformational structure of the molecule of erythromycin in solutions of CCl4, C2Cl4 and CHCl3 were studied by the IR spectra in the region of v OH and vC = O. The analysis of the concentration and temperature changes showed that the erythromycin association was accounted for by the hydrogen linkage of OH ... O = C to the ester group. In the monomer molecule of erythromycin, all hydroxyl groups participated in the intramolecular hydrogen linkage. Band 3513 cm-1 belonged to the OH group in the five-membered cycles of OH ... O. Components 3500, 3530 and 3560 cm-1 of the wide band vOH were assigned to the cycles with OH ... N and OH ... O linkages of a larger size. The association was due to a break in a part of the intramolecular hydrogen linkages. Addition of strong acceptors of proton-hexamethanol and trioctylphosphinoxide to the solution resulted in attenuation of these bands and appearance of a strong band vOH of the erythromycin-acceptor complexes. In the presence of monochloroacetic acid in the solution of CHCl3 stoichiometric protonization of erythromycin was observed. The total acid was in the form of anion (vaCO-2 1610 cm-1) up to a ratio of 1:1. The protonization proceeded according to the nitrogen atom since the antibiotic spectrum in the region of vC=O did not change. Propionic acid titrated erythromycin in methanol solution and in mixtures of water and methanol up to a ratio of 1:5 (v/v). However, in the solution of CHCl3 equilibrium between the neutral and ionized molecules of the acid was seen.

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红霉素溶液中的氢键和酸碱相互作用。
用红外光谱研究了红霉素分子在CCl4、C2Cl4和CHCl3溶液中v OH区和vC = o区的结合力和构象结构。对浓度和温度变化的分析表明,红霉素分子的结合力是由OH的氢键引起的。O = C到酯基。在红霉素的单体分子中,所有的羟基都参与了分子内的氢键。3513 cm-1波段属于OH的五元环中的OH基团。O.宽带vOH的3500、3530和3560 cm-1分量分配给有OH的循环。N和OH…0个更大尺寸的连杆。这种结合是由于分子内氢键的一部分断裂。在溶液中加入质子-六正醇和三辛基膦氧化物的强受体导致这些波段的衰减和红霉素受体复合物的强带vOH的出现。在一氯乙酸存在的CHCl3溶液中,观察了红霉素的化学计量质子化。总酸以阴离子形式存在(vaCO-2 1610 cm-1),比例为1:1。由于vC=O区域的抗生素谱没有变化,质子化过程按照氮原子进行。丙酸滴定红霉素在甲醇溶液和水与甲醇的混合物中达到1:5 (v/v)的比例。然而,在CHCl3溶液中,酸的中性分子和电离分子之间出现平衡。
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