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代谢稳定的神经降压素类似物发挥强大而持久的镇痛作用,而不会引起体温过低。

Metabolically stable neurotensin analogs exert potent and long-acting analgesia without hypothermia.

机构信息

Department of Pharmacology-Physiology, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Québec, Canada; Institut de Pharmacologie de Sherbrooke, Université de Sherbrooke, Sherbrooke, Québec, Canada.

Institut des Biomolécules Max Mousseron (IBMM), UMR-CNRS 5247, Université Montpellier, ENSCM, Montpellier, France.

出版信息

Behav Brain Res. 2021 May 7;405:113189. doi: 10.1016/j.bbr.2021.113189. Epub 2021 Feb 17.

Abstract

The endogenous tridecapeptide neurotensin (NT) has emerged as an important inhibitory modulator of pain transmission, exerting its analgesic action through the activation of the G protein-coupled receptors, NTS1 and NTS2. Whereas both NT receptors mediate the analgesic effects of NT, NTS1 activation also produces hypotension and hypothermia, which may represent obstacles for the development of new pain medications. In the present study, we implemented various chemical strategies to improve the metabolic stability of the biologically active fragment NT(8-13) and assessed their NTS1/NTS2 relative binding affinities. We then determined their ability to reduce the nociceptive behaviors in acute, tonic, and chronic pain models and to modulate blood pressure and body temperature. To this end, we synthesized a series of NT(8-13) analogs carrying a reduced amide bond at Lys-Lys and harboring site-selective modifications with unnatural amino acids, such as silaproline (Sip) and trimethylsilylalanine (TMSAla). Incorporation of Sip and TMSAla respectively in positions 10 and 13 of NT(8-13) combined with the Lys-Lys reduced amine bond (JMV5296) greatly prolonged the plasma half-life time over 20 h. These modifications also led to a 25-fold peptide selectivity toward NTS2. More importantly, central delivery of JMV5296 was able to induce a strong antinociceptive effect in acute (tail-flick), tonic (formalin), and chronic inflammatory (CFA) pain models without inducing hypothermia. Altogether, these results demonstrate that the chemically-modified NT(8-13) analog JMV5296 exhibits a better therapeutic profile and may thus represent a promising avenue to guide the development of new stable NT agonists and improve pain management.

摘要

内源性十三肽神经降压素 (NT) 已成为疼痛传递的重要抑制性调制物,通过激活 G 蛋白偶联受体 NTS1 和 NTS2 发挥其镇痛作用。虽然两种 NT 受体都介导 NT 的镇痛作用,但 NTS1 激活也会导致低血压和低体温,这可能是开发新的止痛药物的障碍。在本研究中,我们实施了各种化学策略来提高生物活性片段 NT(8-13)的代谢稳定性,并评估了它们对 NTS1/NTS2 的相对结合亲和力。然后,我们测定了它们在急性、强直性和慢性疼痛模型中减轻伤害性行为的能力,并调节血压和体温。为此,我们合成了一系列携带赖氨酸-赖氨酸减少酰胺键的 NT(8-13)类似物,并带有非天然氨基酸的位点选择性修饰,如硅脯氨酸 (Sip) 和三甲基硅基丙氨酸 (TMSAla)。在 NT(8-13)的第 10 位和第 13 位分别掺入 Sip 和 TMSAla,同时结合赖氨酸-赖氨酸减少的胺键 (JMV5296),可使血浆半衰期延长 20 小时以上。这些修饰还使肽对 NTS2 的选择性提高了 25 倍。更重要的是,JMV5296 的中枢给药能够在急性 (尾巴闪烁)、强直性 (福尔马林) 和慢性炎症 (CFA) 疼痛模型中诱导强烈的镇痛作用,而不会引起体温过低。总之,这些结果表明,化学修饰的 NT(8-13)类似物 JMV5296 表现出更好的治疗谱,因此可能代表着开发新的稳定 NT 激动剂和改善疼痛管理的有前途途径。

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