Department of Biomolecular Chemistry, Medical University, Lodz, Poland.
Peptides. 2010 Feb;31(2):339-45. doi: 10.1016/j.peptides.2009.12.002. Epub 2009 Dec 6.
In our previous paper we reported synthesis and biological activity of two cyclic analogs of endomorphin-2 (EM-2): Tyr-c(Lys-Phe-Phe-Asp)-NH(2) and Tyr-c(Asp-Phe-Phe-Lys)-NH(2), achieved by making an amid bond between Lys and Asp side-chains. The first analog did not bind to the mu-opioid receptor, the affinity of the second one was very low. In the present study, we describe the synthesis of four novel cyclic analogs of similar structure, but with d-amino acids in position 2 (D-Lys or D-Asp). All new analogs displayed high affinity for the mu-opioid receptor, were much more stable than EM-2 in rat brain homogenate and showed remarkable antinociceptive activity after intracerebroventricular (i.c.v.) administration. Analgesic effect of the most potent cyclic analog, Tyr-c(D-Lys-Phe-Phe-Asp)NH(2) was much stronger and longer lasting than that of EM-2. This analog elicited analgesia also after peripheral administration and this effect was reversed by concomitant i.c.v. injection of the mu-opioid antagonist, beta-funaltrexamine, which indicated that antinociception was mediated by the mu-opioid receptor in the brain. Central action of the cyclic analog gives evidence that it was able to cross the blood-brain barrier, most likely due to the increased lipophilicity. Our results demonstrate that cyclization might be a promising strategy to enhance bioavailability of peptides and may serve a role in the development of novel endomorphin analogs with increased therapeutic potential.
在我们之前的论文中,我们报道了两种内吗啡肽-2(EM-2)的环状类似物的合成和生物活性:Tyr-c(Lys-Phe-Phe-Asp)-NH(2)和 Tyr-c(Asp-Phe-Phe-Lys)-NH(2),通过赖氨酸和天冬氨酸侧链之间形成酰胺键来实现。第一个类似物不与μ-阿片受体结合,第二个类似物的亲和力非常低。在本研究中,我们描述了具有相似结构但在 2 位具有 d-氨基酸(D-Lys 或 D-Asp)的四个新型环状类似物的合成。所有新的类似物都对 μ-阿片受体表现出高亲和力,在大鼠脑匀浆中比 EM-2 更稳定,并且在侧脑室(i.c.v.)给药后表现出显著的镇痛活性。最有效环状类似物 Tyr-c(D-Lys-Phe-Phe-Asp)NH(2)的镇痛作用比 EM-2 更强、更持久。该类似物在周围给药后也能引起镇痛作用,这种作用可被 μ-阿片受体拮抗剂β-氟纳曲明(beta-funaltrexamine)的同时 i.c.v.注射逆转,这表明镇痛作用是通过大脑中的 μ-阿片受体介导的。环状类似物的中枢作用表明它能够穿过血脑屏障,很可能是由于脂溶性增加。我们的结果表明,环化可能是提高肽类生物利用度的一种有前途的策略,并可能在开发具有增加治疗潜力的新型内吗啡肽类似物方面发挥作用。