KCNQ channels in nociceptive cold-sensing trigeminal ganglion neurons as therapeutic targets for treating orofacial cold hyperalgesia

被引:51
作者
Abd-Elsayed, Alaa A. [2 ,3 ]
Ikeda, Ryo [2 ,3 ,4 ]
Jia, Zhanfeng [2 ,3 ]
Ling, Jennifer [1 ,2 ,3 ]
Zuo, Xiaozhuo [2 ,3 ]
Li, Min [5 ,6 ]
Gu, Jianguo G. [1 ,2 ,3 ]
机构
[1] Univ Alabama Birmingham, Coll Med, Dept Anesthesiol & Perioperat Med, Birmingham, AL 35294 USA
[2] Univ Cincinnati, Coll Med, Dept Anesthesiol, Cincinnati, OH 45267 USA
[3] Univ Cincinnati, Coll Med, Grad Program Neurosci, Cincinnati, OH 45267 USA
[4] Jikei Univ, Sch Med, Dept Orthoped Surg, Minato Ku, Tokyo 1058461, Japan
[5] Johns Hopkins Univ, Sch Med, Dept Neurosci, Baltimore, MD 21205 USA
[6] Johns Hopkins Univ, Sch Med, High Throughput Biol Ctr, Baltimore, MD 21205 USA
关键词
BONE CANCER PAIN; SENSORY NEURONS; NERVE INJURY; POTASSIUM CHANNELS; NEUROPATHIC PAIN; FACIAL-PAIN; RAT MODEL; MENTHOL; DIAGNOSIS; CONTRIBUTES;
D O I
10.1186/s12990-015-0048-8
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Hyperexcitability of nociceptive afferent fibers is an underlying mechanism of neuropathic pain and ion channels involved in neuronal excitability are potentially therapeutic targets. KCNQ channels, a subfamily of voltage-gated K+ channels mediating M-currents, play a key role in neuronal excitability. It is unknown whether KCNQ channels are involved in the excitability of nociceptive cold-sensing trigeminal afferent fibers and if so, whether they are therapeutic targets for orofacial cold hyperalgesia, an intractable trigeminal neuropathic pain. Methods: Patch-clamp recording technique was used to study M-currents and neuronal excitability of cold-sensing trigeminal ganglion neurons. Orofacial operant behavioral assessment was performed in animals with trigeminal neuropathic pain induced by oxaliplatin or by infraorbital nerve chronic constrictive injury. Results: We showed that KCNQ channels were expressed on and mediated M-currents in rat nociceptive cold-sensing trigeminal ganglion (TG) neurons. The channels were involved in setting both resting membrane potentials and rheobase for firing action potentials in these cold-sensing TG neurons. Inhibition of KCNQ channels by linopirdine significantly decreased resting membrane potentials and the rheobase of these TG neurons. Linopirdine directly induced orofacial cold hyperalgesia when the KCNQ inhibitor was subcutaneously injected into rat orofacial regions. On the other hand, retigabine, a KCNQ channel potentiator, suppressed the excitability of nociceptive cold-sensing TG neurons. We further determined whether KCNQ channel could be a therapeutic target for orofacial cold hyperalgesia. Orofacial cold hyperalgesia was induced in rats either by the administration of oxaliplatin or by infraorbital nerve chronic constrictive injury. Using the orofacial operant test, we showed that retigabine dose-dependently alleviated orofacial cold hyperalgesia in both animal models. Conclusion: Taken together, these findings indicate that KCNQ channel plays a significant role in controlling cold sensitivity and is a therapeutic target for alleviating trigeminal neuropathic pain that manifests orofacial cold hyperalgesia.
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页数:11
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共 29 条
[1]   Neuropathic pain: diagnosis, pathophysiological mechanisms, and treatment [J].
Baron, Ralf ;
Binder, Andreas ;
Wasner, Gunnar .
LANCET NEUROLOGY, 2010, 9 (08) :807-819
[2]   Peripheral painful traumatic trigeminal neuropathies [J].
Benoliel, R. ;
Kahn, J. ;
Eliav, E. .
ORAL DISEASES, 2012, 18 (04) :317-332
[3]   Neural KCNQ (Kv7) channels [J].
Brown, David A. ;
Passmore, Gayle M. .
BRITISH JOURNAL OF PHARMACOLOGY, 2009, 156 (08) :1185-1195
[4]   Oxaliplatin-associated neuropathy: A review [J].
Cersosimo, RJ .
ANNALS OF PHARMACOTHERAPY, 2005, 39 (01) :128-135
[5]   Assessment of chronic trigeminal neuropathic pain by the orofacial operant test in rats [J].
Cha, Myeounghoon ;
Kohan, Kevin J. ;
Zuo, Xiaozhuo ;
Ling, Jennifer X. ;
Gu, Jianguo G. .
BEHAVIOURAL BRAIN RESEARCH, 2012, 234 (01) :82-90
[6]   Oxaliplatin-induced cold hypersensitivity is due to remodelling of ion channel expression in nociceptors [J].
Descoeur, Juliette ;
Pereira, Vanessa ;
Pizzoccaro, Anne ;
Francois, Amaury ;
Ling, Bing ;
Maffre, Violette ;
Couette, Brigitte ;
Busserolles, Jerome ;
Courteix, Christine ;
Noel, Jacques ;
Lazdunski, Michel ;
Eschalier, Alain ;
Authier, Nicolas ;
Bourinet, Emmanuel .
EMBO MOLECULAR MEDICINE, 2011, 3 (05) :266-278
[7]   Targeting A-type K+ channels in primary sensory neurons for bone cancer pain in a rat model [J].
Duan, Kai-Zheng ;
Xu, Qian ;
Zhang, Xiao-Meng ;
Zhao, Zhi-Qi ;
Mei, Yan-Ai ;
Zhang, Yu-Qiu .
PAIN, 2012, 153 (03) :562-574
[8]   Behavioral and immunohistological assessment of painful neuropathy induced by a single oxaliplatin injection in the rat [J].
Ling, Bing ;
Coudore-Civiale, Marie-Ange ;
Balayssac, David ;
Eschalier, Alain ;
Coudore, Francois ;
Authier, Nicolas .
TOXICOLOGY, 2007, 234 (03) :176-184
[9]   Reactive oxygen species are second messengers of neurokinin signaling in peripheral sensory neurons [J].
Linley, John E. ;
Ooi, Lezanne ;
Pettinger, Louisa ;
Kirton, Hannah ;
Boyle, John P. ;
Peers, Chris ;
Gamper, Nikita .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (24) :E1578-E1586
[10]   Identification of a cold receptor reveals a general role for TRP channels in thermosensation [J].
McKemy, DD ;
Neuhausser, WM ;
Julius, D .
NATURE, 2002, 416 (6876) :52-58