Cedrol protects against chronic constriction injury-induced neuropathic pain through inhibiting oxidative stress and inflammation

被引:0
作者
Mohammad Hossein Sakhaee
Seyed Amir Hossein Sayyadi
Nader Sakhaee
Hamid R. Sadeghnia
Hossein Hosseinzadeh
Fahimeh Nourbakhsh
Fatemeh Forouzanfar
机构
[1] Mashhad University of Medical Sciences,Medical Toxicology Research Center, School of Medicine
[2] Mashhad University of Medical Sciences,Department of mathematics and Natural Sciences
[3] Harris-Stowe State University,Department of Chemistry
[4] Southern Illinois University Edwardsville,Division of Neurocognitive Sciences, Psychiatry and Behavioral Sciences Research Center
[5] Mashhad University of Medical Sciences,Pharmaceutical Research Center, Pharmaceutical Technology Institute
[6] Mashhad University of Medical Sciences,Pharmacodynamics and Toxicology Department, School of Pharmacy
[7] Mashhad University of Medical Sciences,Neuroscience Research Center
[8] Mashhad University of Medical Sciences,Department of Neuroscience, Faculty of Medicine
[9] Mashhad University of Medical Sciences,undefined
来源
Metabolic Brain Disease | 2020年 / 35卷
关键词
Neuropathic pain; Cedrol; Oxidative stress; Inflammation; Medicinal plants; Somatosensory neurons;
D O I
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中图分类号
学科分类号
摘要
Injured somatosensory nervous system cause neuropathic pain which is quite difficult to treat using current approaches. It is therefore important to find new therapeutic options. We have analyzed cedrol effect on chronic constriction injury (CCI) induced neuropathic pain in rats. The mechanical and thermal hypersensitivity were evaluated using the von Frey filament, radiant heat and acetone drop methods. The changes in the levels of biomarkers of oxidative stress including malondialdehyde (MDA) and total thiol (SH), as well as inflammatory mediators including Tumour Necrosis Factor alpha (TNF-α) and Interleukin 6 (IL-6) were estimated in the lumbar portion (L4–L6) of neuropathic rats. Administration of cedrol attenuated the CCI-induced mechanical and thermal hypersensitivity. CCI produced an increase in MDA along with a reduction in SH levels in the spinal cord of the CCI rats. Reduced levels of SH were restored by cedrol. Also, the levels of MDA were reduced in the cedrol-treated CCI rats compared to the untreated CCI rats. Besides, level of TNF-α and IL-6 increased in the spinal cord of CCI group and cedrol could reverse it. The current study showed that cedrol attenuates neuropathic pain in CCI rats by inhibition of inflammatory response and attenuation of oxidative stress.
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页码:1119 / 1126
页数:7
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[21]  
Xie Y-K(2013)Mast cell stabilizing effect of (−)-Elema-1, 3, 11 (13)-trien-12-ol and Thujopsene from Thujopsis dolabrata is mediated by Down-regulation of Interleukin-4 secretion in antigen-induced RBL-2H3 cells Biol Pharm Bull 36 339-345
[22]  
Brzezicki MA(2004)Reactive oxygen species (ROS) play an important role in a rat model of neuropathic pain Pain 111 116-124
[23]  
Zakowicz PT(2011)Kumar P (2011) effect of nitric oxide in protective effect of melatonin against chronic constriction sciatic nerve injury induced neuropathic pain in rats Indian J Exp Biol 49 664-671
[24]  
Burits M(2013)Intrathecal gabapentin increases interleukin-10 expression and inhibits pro-inflammatory cytokine in a rat model of neuropathic pain J Korean Med Sci 28 308-314
[25]  
Asres K(2017)Intrathecal resiniferatoxin modulates TRPV1 in DRG neurons and reduces TNF-induced pain-related behavior Mediat Inflamm 2017 2786427-1012
[26]  
Bucar F(2008)Antiproliferative effects of essential oils and their major constituents in human renal adenocarcinoma and amelanotic melanoma cells Cell Prolif 41 1002-579
[27]  
Dias JM(2006)Role of oxidative stress in pathophysiology of peripheral neuropathy and modulation by N-acetyl-L-cysteine in rats Eur J Pain 10 573-2147
[28]  
de Brito TV(2011)In vitro Na+/K+-ATPase inhibitory activity and antimicrobial activity of sesquiterpenes isolated from Thujopsis dolabrata Arch Pharm Res 34 2141-111
[29]  
de Aguiar Magalhães D(2006)Levels of mitochondrial reactive oxygen species increase in rat neuropathic spinal dorsal horn neurons Neurosci Lett 391 108-9
[30]  
da Silva Santos PW(2014)Atorvastatin attenuates neuropathic pain in rat neuropathy model by down-regulating oxidative damage at peripheral, spinal and supraspinal levels Neurochem Int 68 1-449