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首页> 外文期刊>Central European Journal of Chemistry >Spectrophotometric study of time stability and acid-base characteristics of chelerythrine and dihydrochelerythrine
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Spectrophotometric study of time stability and acid-base characteristics of chelerythrine and dihydrochelerythrine

机译:白屈菜红碱和二氢白屈菜红碱的时间稳定性和酸碱特性的分光光度研究

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摘要

Time stability, acid-base and UV-VIS spectral properties of dihydrochelerythrine (DHCHE) were studied spectrophotometrically in water:methanol and water:ethanol media. DHCHE is stable in strongly acid milieu (pH < 3) and at the higher amounts (60% v/v) alcohol. Acid-base characteristics and UV-VIS spectral properties of chelerythrine (CHE) were studied in aqueous solutions in the presence of different concentrations of HCl, HNO3, H2SO4, H3PO4 and their mixtures. Remarkable shifts of formation parts of absorbance-pH (A-pH) curves to the alkaline medium were observed depending on the type and concentration of inert electrolyte (most remarkable for HNO3 and HCl). The corresponding equilibrium constants pK_(R+) of the transition reaction between charged iminium Q~+ and uncharged QOH (pseudo-base, 6-hydroxy-dihydro derivative) forms of chelerythine were calculated using a numerical interpretation of A-pH curves by a SQUAD-G computer program which ranged from 8.51-9.31. The highest changes of ΔpK_(R+) (0.75 and 0.53) were observed for H3PO4 and H2SO4, respectively. The priority effect of ionic species and ionic strength was confirmed in the presence of additions of NaCl and KCl. The strength of interaction of CHE with biomacromolecular compounds (i.e., peptides, proteins, nucleic acids etc.) may be affected because of the observed influence of both cation and anion of the inert electrolyte on acid-base behavior.
机译:在水:甲醇和水:乙醇介质中分光光度法研究了二氢白屈菜红碱(DHCHE)的时间稳定性,酸碱和UV-VIS光谱特性。 DHCHE在强酸环境(pH <3)和较高含量(60%v / v)的醇中稳定。研究了白屈菜红碱(CHE)在不同浓度的HCl,HNO3,H2SO4,H3PO4及其混合物存在下的酸碱特性和UV-VIS光谱特性。根据惰性电解质的类型和浓度(对于HNO3和HCl最明显),观察到了吸光度-pH(A-pH)曲线的形成部分向碱性介质的显着变化。使用SQUAD对A-pH曲线进行数值解释,计算带电荷的亚胺Q〜+和不带电荷的QOH(伪碱,6-羟基-二氢衍生物)形式的白屈菜红素之间的过渡反应的相应平衡常数pK_(R +)。 -G计算机程序,范围从8.51-9.31。对于H3PO4和H2SO4,分别观察到ΔpK_(R +)的最高变化(0.75和0.53)。在添加氯化钠和氯化钾的情况下,确认了离子种类和离子强度的优先作用。 CHE与生物大分子化合物(即肽,蛋白质,核酸等)的相互作用强度可能会受到影响,因为观察到的惰性电解质的阳离子和阴离子对酸碱行为的影响。

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