Mechanisms of inhibitory action of TRK-130 (Naltalimide), a [mu]-opioid receptor partial agonist, on the micturition reflex

Purpose To clarify the mechanism of inhibitory action of TRK-130 (Naltalimide), a unique µ-opioid receptor partial agonist, on the micturition reflex. Methods The effect of TRK-130 on isovolumetric rhythmic bladder contractions (RBCs) was examined in guinea pigs, the effect of which was clarified by...

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Veröffentlicht in:International urology and nephrology 2017-04, Vol.49 (4), p.587
Hauptverfasser: Fujimura, Morihiro, Izumimoto, Naoki, Kanie, Sayoko, Kobayashi, Ryosuke, Yoshikawa, Satoru, Momen, Shinobu, Hirakata, Mikito, Komagata, Toshikazu, Okanishi, Satoshi, Iwata, Masashi, Hashimoto, Tadatoshi, Doi, Takayuki, Yoshimura, Naoki, Kawai, Koji
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Sprache:eng
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Zusammenfassung:Purpose To clarify the mechanism of inhibitory action of TRK-130 (Naltalimide), a unique µ-opioid receptor partial agonist, on the micturition reflex. Methods The effect of TRK-130 on isovolumetric rhythmic bladder contractions (RBCs) was examined in guinea pigs, the effect of which was clarified by co-treatment with naloxone or in spinal cord transection. The effect of TRK-130 on urodynamic parameters was also observed in guinea pigs. In addition, the effect of TRK-130 on bladder contraction induced by peripheral stimulation of the pelvic nerve was investigated in rats. Results TRK-130 (0.001-0.01 mg/kg, iv) dose-dependently inhibited RBCs, which was dose-dependently antagonized by naloxone; however, the antagonism susceptibility was different from morphine (1 mg/kg, iv). The minimum effective dose (0.003 mg/kg) of TRK-130 remained similar in spinal cord-transected animals. TRK-130 (0.0025 mg/kg, iv) increased bladder capacity without changing the voiding efficiency, maximum flow rate, and intravesical pressure at the maximum flow rate, whereas oxybutynin (1 mg/kg, iv) increased the bladder capacity but affected the other parameters. TRK-130 (0.005 mg/kg, iv) did not produce significant changes on the bladder contractions induced by peripheral stimulation of the pelvic nerve, while oxybutynin (1 mg/kg, iv) significantly suppressed the bladder contractions. Conclusions These results suggest that TRK-130 enhances the bladder storage function by modulating the afferent limb of the micturition reflex through µ-opioid receptors in the spinal cord. TRK-130 could be a more effective and safer therapeutic agent with a different fashion from antimuscarinics and conventional opioids for overactive bladder.
ISSN:0301-1623
1573-2584
DOI:10.1007/s11255-017-1509-y