Mazák Károly, Hosztafi Sándor, Kraszni Márta, Noszál Béla
Semmelweis University, Department of Pharmaceutical Chemistry, Research Group of Drugs of Abuse and Doping Agents, Hungarian Academy of Sciences, Hőgyes E. u. 9., H-1092 Budapest, Hungary.
Semmelweis University, Department of Pharmaceutical Chemistry, Research Group of Drugs of Abuse and Doping Agents, Hungarian Academy of Sciences, Hőgyes E. u. 9., H-1092 Budapest, Hungary.
J Pharm Biomed Anal. 2017 Feb 20;135:97-105. doi: 10.1016/j.jpba.2016.12.014. Epub 2016 Dec 15.
Species-specific acid-base and partition equilibrium constants were experimentally determined for the therapeutically important semisynthetic opioid receptor agonist hydromorphone, dihydromorphine, and mixed agonist-antagonist nalorphine and nalbuphine. The acid-base microequilibria were characterized by combining pH-potentiometry and deductive methods using synthesized auxiliary compounds. Independent of the pH, there are approximately 4.8 times as many zwitterionic microspecies than non-charged ones in nalbuphine solutions, while for nalorphine it is the non-charged form that predominates by the same ratio. The non-charged microspecies is the dominant one also in the case of hydromorphone, although its concentration exceeds only 1.3 times that of its zwitterionic protonation isomer. The pH-independent partition coefficients of the individual microspecies were determined by a combination of experimentally measured, pH-dependent, conditional distribution constants and a custom-tailored evaluation method, using highly similar auxiliary compounds. The pH-independent contribution of the zwitterionic microspecies to the distribution constant is 1380, 1070, 3160 and 72,440 times smaller than that of the inherently more lipophilic non-charged one for hydromorphone, dihydromorphine, nalbuphine and nalorphine, respectively.
通过实验确定了具有治疗重要性的半合成阿片受体激动剂氢吗啡酮、二氢吗啡以及混合激动剂-拮抗剂纳洛啡和纳布啡的物种特异性酸碱平衡常数和分配平衡常数。酸碱微平衡通过结合pH电位滴定法和使用合成辅助化合物的演绎方法来表征。在纳布啡溶液中,与pH无关,两性离子微物种的数量大约是非带电微物种的4.8倍,而对于纳洛啡,占主导地位的是非带电形式,比例相同。在氢吗啡酮的情况下,非带电微物种也是主要的,尽管其浓度仅超过其两性离子质子化异构体浓度的1.3倍。通过结合实验测量的、pH依赖性的条件分布常数和定制的评估方法,使用高度相似的辅助化合物,确定了各个微物种的pH无关分配系数。对于氢吗啡酮、二氢吗啡、纳布啡和纳洛啡,两性离子微物种对分布常数的pH无关贡献分别比本质上更具亲脂性且不带电的微物种小1380倍、1070倍、3160倍和72440倍。