Preparation and properties of crystalline biliverdin IXα. Simple methods for preparing isomerically homogeneous biliverdin and [14C]biliverdin by using 2,3-dichloro-5,6-dicyanobenzoquinone

Получение и свойства кристаллического биливердина IXα: простые методы получения изомерно однородного биливердина и [14C]биливердина с использованием 2,3-дихлор-5,6-дицианбензохинона
Antony F. McDonagh, Lucita A. Palma
1980-08-01

Bilirubin dehydrogenationBiliverdin IXαBiliverdin isomersCation-radical mechanismDDQ oxidation
Amorphous isomerically pure biliverdin IX alpha is readily prepared in more than 70% yield by dehydrogenation of bilirubin with 2,3-dichloro-5,6-dicyanobenzoquinone in dimethyl sulphoxide under carefully controlled conditions. Crystalline biliverdin IX alpha and amorphous [14C]biliverdin can be obtained similarly in more than 40+ yield. The pure crystalline pigment was characterized by elemental analysis, methylation, chemical and enzymic reduction to bilirubin, i.r.- and u.v.-visible-absorption spectroscopy, n.m.r. spectroscopy and field-desorption mass spectrometry, and its solubility was determined. Under certain conditions, dehydrogenation, gave biliverdin contaminated with III alpha and XIII alpha isomers as a result of disproporationation of bilirubin. Formation of non-IX alpha isomers depends on the concentrations of the reagents and the order in which they are mixed, and occurs under neutral anaerobic conditions. Free-radical reactions probably are responsible, suggesting that the first step in the deydrogenation of bilirubin with 2,3-dichloro-5,6-dicyanobenzoquinone in dimethyl sulphoxide is formation of a bilirubin cation radical, rather than hydride ion abstraction.
1
Biliverdin IXα was prepared in over 70% yield by dehydrogenating bilirubin with DDQ in dimethyl sulfoxide under carefully controlled conditions.
2
Crystalline biliverdin IXα and amorphous [14C]biliverdin were obtained by analogous procedures in yields exceeding 40%.
3
Crystalline biliverdin IXα was validated using elemental, chemical, enzymatic, spectroscopic, mass-spectrometric, and solubility analyses.
4
Improper reaction conditions produced biliverdin contaminated with IIIα and XIIIα isomers through bilirubin disproportionation.
5
Non-IXα isomer formation depended on reagent concentrations and mixing order under neutral anaerobic conditions, implicating free-radical chemistry and a bilirubin cation-radical intermediate.

crystalline biliverdin IXα prepared by dehydrogenation of bilirubin with 2,3-dichloro-5,6-dicyanobenzoquinone

the preparation, physicochemical characterization, solubility, and free-radical-mediated isomer formation of biliverdin IXα under controlled dehydrogenation conditions

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1980-08-01
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Antony F. McDonagh
Lucita A. Palma
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