Peripheral and central oxidative stress in chemotherapy-induced neuropathic pain

被引:99
|
作者
Shim, Hyun Soo [1 ]
Bae, Chilman [1 ]
Wang, Jigong [1 ]
Lee, Kyung-Hee [1 ,2 ]
Hankerd, Kali M. [1 ]
Kim, Hee Kee [3 ]
Chung, Jin Mo [1 ]
La, Jun-Ho [1 ]
机构
[1] Univ Texas Med Branch, Dept Neurosci Cell Biol & Anat, Galveston, TX 77555 USA
[2] Dongseo Univ, Dept Dent Hyg, Busan, South Korea
[3] Univ Texas MD Anderson Canc Ctr, Dept Pain Med, Div Anesthesiol & Crit Care, Houston, TX 77030 USA
来源
MOLECULAR PAIN | 2019年 / 15卷
关键词
Oxidative stress; chemotherapy; chemotherapy-induced peripheral neuropathy; neuropathic pain; paclitaxel; cisplatin; MECHANICAL ALLODYNIA; NOCICEPTORS; INHIBITION; ACTIVATION; EXPRESSION;
D O I
10.1177/1744806919840098
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Chemotherapy-induced peripheral neuropathy (CIPN) is an adverse side effect of many anti-cancer chemotherapeutic treatments. CIPN often causes neuropathic pain in extremities, and oxidative stress has been shown to be a major contributing factor to this pain. In this study, we determined the site of oxidative stress associated with pain (specifically, mechanical hypersensitivity) in cisplatin- and paclitaxel-treated mouse models of CIPN and investigated the neurophysiological mechanisms accounting for the pain. C57BL/6N mice that received either cisplatin or paclitaxel (2 mg/kg, once daily on four alternate days) developed mechanical hypersensitivity to von Frey filament stimulations of their hindpaws. Cisplatin-induced mechanical hypersensitivity was inhibited by silencing of Transient Receptor Potential channels V1 (TRPV1)- or TRPA1-expressing afferents, whereas paclitaxel-induced mechanical hypersensitivity was attenuated by silencing of A beta fibers. Although systemic delivery of phenyl N-tert-butylnitrone, a reactive oxygen species scavenger, alleviated mechanical hypersensitivity in both cisplatin- and paclitaxel-treated mice, intraplantar phenyl N-tert-butylnitrone was effective only in cisplatin-treated mice, and intrathecal phenyl N-tert-butylnitrone, only in paclitaxel-treated mice. In a reactive oxygen species-dependent manner, the mechanosensitivity of A delta/C fiber endings in the hindpaw skin was increased in cisplatin-treated mice, and the excitatory synaptic strength in the spinal dorsal horn was potentiated in paclitaxel-treated mice. Collectively, these results suggest that cisplatin-induced mechanical hypersensitivity is attributed to peripheral oxidative stress sensitizing mechanical nociceptors, whereas paclitaxel-induced mechanical hypersensitivity is due to central (spinal) oxidative stress maintaining central sensitization that abnormally produces pain in response to A beta fiber inputs.
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页数:11
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