Chen B Y, Jin W Q, Chen X J, Zhu Y C, Chi Z Q
2nd Department of Pharmacology, Shanghai Institute of Materia Medica, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Eur J Pharmacol. 2001 Jul 27;424(3):195-8. doi: 10.1016/s0014-2999(01)01172-4.
Ohmefentanyl is a very potent and highly selective agonist for mu-opioid receptors. We now study analgesia, in vitro activity and opioid receptor affinity of the stereoisomers of ohmefentanyl isothiocyanate. We found that some isomers of ohmefentanyl isothiocyanate had a potent analgesic effect and that all isomers except (3R,4S,2'S)-ohmefentanyl isothiocyanate had a more potent inhibitory action on the electrically evoked contractions of mouse vas deferens than of guinea pig ileum. The inhibitory actions could be antagonized by naloxone. However, compared with the activity of the corresponding stereoisomers of ohmefentanyl, these ohmefentanyl isothiocyanates had significantly reduced analgesia and in vitro activity. They also inhibited the binding of [3H]DPDPE ([D-Pen(2),D-Pen(5)]enkephalin) and [3H]DAGO ([D-Ala(2),Mephe(4),Gly-ol(5)]enkephalin) to opioid receptors in mouse brain membranes. The inhibitory effect of stereoisomers of ohmefentanyl isothiocyanate at mu-opioid receptors was markedly lower than that of their parent compounds. The affinity of stereoisomers of ohmefentanyl isothiocyanate for delta-opioid receptors was, however, greater than or equal to that of their corresponding stereoisomers of ohmefentanyl. The results showed that the introduction of an isothiocyanato group into the phenyl ring in position-1 of ohmefentanyl reduced bioactivity and affinity to mu-opioid receptors but that the selectivity of these compounds for delta-opioid receptors was enhanced. Isomer (3R,4S,2'R)-ohmefentanyl isothiocyanate showed highest selectivity for delta-opioid receptors (K(i)(mu)/K(i)(delta)=13.6) and potent analgesic activity (ED(50)=0.25 mg/kg).
奥芬太尼是一种对μ-阿片受体具有极强效力和高度选择性的激动剂。我们现在研究异硫氰酸奥芬太尼立体异构体的镇痛作用、体外活性及阿片受体亲和力。我们发现,异硫氰酸奥芬太尼的一些异构体具有强效镇痛作用,并且除(3R,4S,2'S)-异硫氰酸奥芬太尼外,所有异构体对小鼠输精管电诱发收缩的抑制作用都比对豚鼠回肠的抑制作用更强。这些抑制作用可被纳洛酮拮抗。然而,与奥芬太尼相应立体异构体的活性相比,这些异硫氰酸奥芬太尼的镇痛作用和体外活性显著降低。它们还抑制[3H]DPDPE([D-青霉胺(2),D-青霉胺(5)]脑啡肽)和[3H]DAGO([D-丙氨酸(2),甲硫氨酸(4),甘氨酸醇(5)]脑啡肽)与小鼠脑膜中阿片受体的结合。异硫氰酸奥芬太尼立体异构体对μ-阿片受体的抑制作用明显低于其母体化合物。然而,异硫氰酸奥芬太尼立体异构体对δ-阿片受体的亲和力大于或等于奥芬太尼相应立体异构体的亲和力。结果表明,在奥芬太尼1位苯环上引入异硫氰酸基团会降低生物活性和对μ-阿片受体的亲和力,但这些化合物对δ-阿片受体的选择性增强。异构体(3R,4S,2'R)-异硫氰酸奥芬太尼对δ-阿片受体表现出最高的选择性(K(i)(μ)/K(i)(δ)=13.6)和强效镇痛活性(ED(50)=0.25 mg/kg)。