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隧道结等离激元光源
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报告题目:
Development of unique opioid agonists and antagonists: from peptides to peptidmimetics
 报告人:
Prof. YOSHIO OKADA
The Graduate School of Food and Medicinal Sciences
and Faculty of Pharmaceutical Science,
Kobe Gakuin University , Japan

报告时间:
2007-03-19 10:00
报告地点:
清华大学生命科学馆三楼325会议室
主办单位:
清华大学化学系生命有机磷化学及化学生物学教育部重点实验室
  简介:

Abstract:

Of endogenous opioid peptides, enkephalins, dermorphins, endorphins and endomorphins, endomorphins exhibit high μ-opioid receptor affinity and extraordinarily high selectivity over δ- and κ-receptors, indicating the important roles of μ-opioid receptor-ligand system. Those opioid peptides are potential candidates of analgesics for clinical and therapeutic use for the amelioration of pain associated with postsurgery procedure, cancer or birth. However, the oral availability of bioactive peptides requires means not only to overcome physiological and metabolic barriers but also to be able to transit the physical barriers such as the epithelial membrane of the gastrointestinal tract and blood-brain barrier (BBB). While several amino acids were found to replace Tyr in opioid [1], 2’,6’-dimethyl-L-tyrosine (Dmt) dramatically enhanced receptor affinity and functional bioactivity. [Dmt1]endomorphin-2 exhibited high μ- and δ-opioid receptor affinity (Kiμ = 0.15 and Kiδ = 28.2 nM) with corresponding agonisms (IC50: 0.07 and 1.87 nM, respectively). Interestingly, although [N-Allyl-Dmt1]endomorphin-2 bound with μ-opioid receptor (Kiμ = 0.45 nM), it showed μ- antagonist with pA2 value of 8.59. With aims to increase bioavailability of opioids and opioidmimetics, dimerization of appropriate pharmacophore, such as Dmt, Dmt-Tic linked with diaminoalkane [2] and 3,6-bis[aminoalkyl]-pyrazinone derivative (Fig. 1) [3] was performed.          

The latter opioidmimetics containing Dmt as a pharmacophore exhibited potent antinociceptive activity after intracerebroventricular (i.c.v.), subcutaneous (s.c.) and oral (p.o.) administration in mice, indicating that they can pass through epithelial membrane of gastrointestinal tract and cross blood-brain barrier. Both type μ-agonists containing diaminoalkane and 3,6-bis[amino- alkyl]pyrazinone were transformed to potent μ-antagonist by allylation. Above potent  μ-antagonists are potential candidates for the drugs of drug addiction and alcohol dependency..

 

 

Fig. 1. Structure of Dmt dimmers linked with pyrazinone ring.

 

[1]  Li, T., Fujita, Y., Tsuda, Y., Mitazaki, A., Ambo, A., Sasaki, Y., Jinsmaa, Y., Bryanat, S.D., Lazarus, L.H., Okada, Y. J. Med. Chem. 2005, 48, 586--592.

[2] Okada, Y., Tsuda, Y., Fujita, Y., Yokoi, T., Sasaki, Y., Ambo, A., Konishi, R., Nagata, M., Salvadori, S., Yunden, J., Bryant, S. D., Lazarus, L. H. J. Med. Chem. 2003, 46, 3201-3209.

[3]  Jinsmaa, Y., Miyazaki, A., Fujita, Y., Fujisawa, Y., Shiotani, K., Li, T., Tsuda, Y., Yokoi, T., Ambo, A., Sasaki, Y., Bryant, S. D., Lazarus, L. H. and Okada, Y. J. Med. Chem. 47, 2599-2610 (2004)

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