Metabolically Stable Neurotensin Analogs Exert Potent and Long-Acting Analgesia Without Hypothermia
M\'elanie Vivancos, Roberto Fanelli, \'Elie Besserer-Offroy, Sabrina, Beaulieu, Magali Chartier, Martin Resua-Rojas, Christine E. Mona, Santo, Previti, Emmanuelle R\'emond, Jean-Michel Longpr\'e, Florine Cavelier,, Philippe Sarret

TL;DR
This study developed metabolically stable neurotensin analogs that provide potent, long-lasting pain relief without causing hypothermia, offering promising new avenues for pain management therapies.
Contribution
The paper introduces chemically modified neurotensin analogs with enhanced stability and selectivity, demonstrating effective analgesia without adverse effects.
Findings
JMV5296 has over 20 hours plasma half-life.
It exhibits 25-fold selectivity for NTS2 receptor.
It provides strong analgesia in various pain models without hypothermia.
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 Lys8-Lys9 and harboring…
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