Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Akademgorodok 50/24, Krasnoyarsk, 660036, Russia.
Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Akademgorodok 50/24, Krasnoyarsk, 660036, Russia.
J Pharm Biomed Anal. 2018 Oct 25;160:12-18. doi: 10.1016/j.jpba.2018.07.038. Epub 2018 Jul 21.
The combined method based on phase-solubility technique and capillary zone electrophoresis (PS-CZE) was suggested for the determination of binding (stability) constants of cyclodextrins (CD) complexes with water-insoluble organic compounds that have no or weak UV chromophores. In this method, the insoluble compounds are agitated at the desired temperature in CD solutions with different concentration up to the attainment of equilibrium and then CZE is used to determine the concentration of the compounds that have passed into the solutions. To avoid precipitation and complex dissociation, the background electrolyte (BGE) for CZE should contain ethanol and, if necessary, cyclodextrin. The samples should be diluted with the BGE without CD so that the CD concentrations in BGE and samples were equal to preclude a baseline shift. Using the suggested approach, the inclusion complexes between betulinic and betulonic acids, pentacyclic lupane-type triterpenes, and hydroxypropyl-β- and γ-cyclodextrins (HP-β-CD and HP-γ-CD) were studied. It was found that solubility of the acids studied in HP-β-CD solutions did not differ from their solubility in pure water. That is, the HP-β-CD complexes of the acids studied were not formed in noticeable amount. At the same time, the acids formed inclusion complexes with HP-γ-CD, what possibly was caused by the greater size of the HP-γ-CD molecule as compared to HP-β-CD. To determine binding constants by Higuchi and Connors method, the acids solubility was determined by CZE after their agitation in the solutions of HP-γ-CD (with 0.6 molar substitution) at 25 °C for 3 days. The dependences of acids solubility on HP-γ-CD concentration deviated from straight line in the range of high concentration (A mode). This can be explained by a self-association of HP-γ-CD molecules. Using the linear segment of the solubility dependences on CD concentration, the binding constants were determined. Their logarithms for the HP-γ-CD complexes with betulonic and betulinic acids were 3.88 ± 0.14 and 3.82 ± 0.12, respectively.
基于相溶解度技术和毛细管区带电泳(PS-CZE)的组合方法被建议用于测定具有无或弱紫外发色团的水不溶性有机化合物与环糊精(CD)配合物的结合(稳定性)常数。在该方法中,将不溶性化合物在所需温度下在具有不同浓度的 CD 溶液中搅拌至达到平衡,然后使用 CZE 来确定已经进入溶液的化合物的浓度。为了避免沉淀和配合物解离,CZE 的背景电解质(BGE)应含有乙醇,如果需要,还应含有环糊精。样品应与不含 CD 的 BGE 稀释,以使 BGE 和样品中的 CD 浓度相等,以避免基线移动。使用所建议的方法,研究了白桦脂酸和桦木酸、五环升麻烷型三萜和羟丙基-β-和γ-环糊精(HP-β-CD 和 HP-γ-CD)之间的包合复合物。结果发现,在所研究的酸在 HP-β-CD 溶液中的溶解度与在纯水中的溶解度没有差异。也就是说,在所研究的酸与 HP-β-CD 形成的配合物的量并不明显。同时,这些酸与 HP-γ-CD 形成包合物,这可能是由于 HP-γ-CD 分子的尺寸大于 HP-β-CD 所致。为了通过 Higuchi 和 Connors 方法确定结合常数,将酸在 25°C 下于 HP-γ-CD(摩尔取代度为 0.6)溶液中搅拌 3 天后,通过 CZE 确定其溶解度。在高浓度范围内(A 模式),酸溶解度与 HP-γ-CD 浓度的关系偏离直线。这可以用 HP-γ-CD 分子的自缔合来解释。使用 CD 浓度对溶解度关系的线性段,确定了结合常数。它们的对数分别为桦木酸和白桦脂酸与 HP-γ-CD 配合物的 3.88±0.14 和 3.82±0.12。