Ondarroa M, Sharma S K, Quinn P J
Biosci Rep. 1986 Sep;6(9):783-96. doi: 10.1007/BF01117101.
The solvation properties of ubiquinone-10 and ubiquinol-10 in a wide variety of solvents of polarity varying from alkanes to water are reported. Greatest solubility is observed in solvents of intermediate polarity and particularly where low polarity is combined with a pronounced tendency to interact with the benzoquinone substituent of the ubiquinone molecule. This includes solvents like chloroform and benzene. Ubiquinone-10 is somewhat less polar than ubiquinol-10 as judged by comparative solubilities of the two molecules. Proton-NMR chemical shift measurements and aggregation studies in selected solvents indicate that in ubiquinone-10 in the liquid phase and in solution in hydrocarbons like dodecane the molecules have a preferred association possibly involving stacking of the benzoquinone rings. Surface balance studies indicated that the surface-active character of ubiquinone-10 is relatively weak and only in a comparatively polar and highly structured solvent, formamide, was there evidence of an effect on surface tension of the solvent. The critical micelle concentration in this solvent was estimated to be about 5 microM on the basis of surface tension measurements. Ubiquinone-10 is well known to form virtually insoluble monolayers at the air/water interface. Studies of the partition of ubiquinone-10 in binary mixtures of solvents suggest that the interaction of the benzoquinone ring substituent with structured polar solvents is considerably weaker than the internal cohesion between molecules of the solvent. No evidence on the basis of wide-angle X-ray diffraction measurements was obtained to indicate that solvent molecules were a component of the crystal lattice of ubiquinone-10 that had precipitated from solvent mixtures.
本文报道了泛醌-10和泛醇-10在从烷烃到水等极性各异的多种溶剂中的溶剂化性质。在中等极性的溶剂中观察到最大溶解度,特别是在低极性与与泛醌分子的苯醌取代基相互作用的明显倾向相结合的溶剂中。这包括氯仿和苯等溶剂。根据两种分子的相对溶解度判断,泛醌-10的极性略低于泛醇-10。在选定溶剂中的质子核磁共振化学位移测量和聚集研究表明,在液相和十二烷等烃类溶液中的泛醌-10分子具有优先缔合,可能涉及苯醌环的堆积。表面平衡研究表明,泛醌-10的表面活性特征相对较弱,只有在相对极性且高度结构化的溶剂甲酰胺中,才有证据表明其对溶剂表面张力有影响。根据表面张力测量,该溶剂中的临界胶束浓度估计约为5微摩尔。众所周知,泛醌-10在空气/水界面形成几乎不溶的单分子层。对泛醌-10在二元溶剂混合物中分配的研究表明,苯醌环取代基与结构化极性溶剂的相互作用比溶剂分子之间的内聚力弱得多。基于广角X射线衍射测量,没有证据表明溶剂分子是从溶剂混合物中沉淀出来的泛醌-10晶格的组成部分。