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CLC number: R781.6+4

On-line Access: 2024-08-27

Received: 2023-10-17

Revision Accepted: 2024-05-08

Crosschecked: 2020-02-04

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Citations:  Bibtex RefMan EndNote GB/T7714

 ORCID:

Lan Xu

https://orcid.org/0000-0002-4542-5796

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Journal of Zhejiang University SCIENCE B 2020 Vol.21 No.2 P.155-165

http://doi.org/10.1631/jzus.B1900456


Spinal P2X7R contributes to streptozotocin-induced mechanical allodynia in mice


Author(s):  Cheng-ming Ni, He-ping Sun, Xiang Xu, Bing-yu Ling, Hui Jin, Yu-qiu Zhang, Zhi-qi Zhao, Hong Cao, Lan Xu

Affiliation(s):  Department of Endocrinology, the Affiliated Wuxi Peoples Hospital of Nanjing Medical University, Wuxi 214023, China; more

Corresponding email(s):   hongcao@fudan.edu.cn, xulan126@126.com

Key Words:  P2X7 receptor (P2X7R), Mechanical allodynia, Streptozotocin, Diabetic mice


Cheng-ming Ni, He-ping Sun, Xiang Xu, Bing-yu Ling, Hui Jin, Yu-qiu Zhang, Zhi-qi Zhao, Hong Cao, Lan Xu. Spinal P2X7R contributes to streptozotocin-induced mechanical allodynia in mice[J]. Journal of Zhejiang University Science B, 2020, 21(2): 155-165.

@article{title="Spinal P2X7R contributes to streptozotocin-induced mechanical allodynia in mice",
author="Cheng-ming Ni, He-ping Sun, Xiang Xu, Bing-yu Ling, Hui Jin, Yu-qiu Zhang, Zhi-qi Zhao, Hong Cao, Lan Xu",
journal="Journal of Zhejiang University Science B",
volume="21",
number="2",
pages="155-165",
year="2020",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.B1900456"
}

%0 Journal Article
%T Spinal P2X7R contributes to streptozotocin-induced mechanical allodynia in mice
%A Cheng-ming Ni
%A He-ping Sun
%A Xiang Xu
%A Bing-yu Ling
%A Hui Jin
%A Yu-qiu Zhang
%A Zhi-qi Zhao
%A Hong Cao
%A Lan Xu
%J Journal of Zhejiang University SCIENCE B
%V 21
%N 2
%P 155-165
%@ 1673-1581
%D 2020
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.B1900456

TY - JOUR
T1 - Spinal P2X7R contributes to streptozotocin-induced mechanical allodynia in mice
A1 - Cheng-ming Ni
A1 - He-ping Sun
A1 - Xiang Xu
A1 - Bing-yu Ling
A1 - Hui Jin
A1 - Yu-qiu Zhang
A1 - Zhi-qi Zhao
A1 - Hong Cao
A1 - Lan Xu
J0 - Journal of Zhejiang University Science B
VL - 21
IS - 2
SP - 155
EP - 165
%@ 1673-1581
Y1 - 2020
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.B1900456


Abstract: 
Painful diabetic neuropathy (PDN) is a diabetes mellitus complication. Unfortunately, the mechanisms underlying PDN are still poorly understood. Adenosine triphosphate (ATP)-gated p2X7 receptor (P2X7R) plays a pivotal role in non-diabetic neuropathic pain, but little is known about its effects on streptozotocin (STZ)-induced peripheral neuropathy. Here, we explored whether spinal cord P2X7R was correlated with the generation of mechanical allodynia (MA) in STZ-induced type 1 diabetic neuropathy in mice. MA was assessed by measuring paw withdrawal thresholds and western blotting. Immunohistochemistry was applied to analyze the protein expression levels and localization of P2X7R. STZ-induced mice expressed increased P2X7R in the dorsal horn of the lumbar spinal cord during MA. Mice injected intrathecally with a selective antagonist of P2X7R and P2X7R knockout (KO) mice both presented attenuated progression of MA. Double-immunofluorescent labeling demonstrated that P2X7R-positive cells were mostly co-expressed with Iba1 (a microglia marker). Our results suggest that P2X7R plays an important role in the development of MA and could be used as a cellular target for treating PDN.

脊髓P2X7受体参与链脲佐菌素诱导的小鼠糖尿病早期机械痛性神经病变

目的:探讨嘌呤能离子通道型受体7(P2X7R)在链脲佐菌素(STZ)诱导的1型糖尿病(T1DM)小鼠早期发生的机械痛性神经病变中的作用.
创新点:探讨脊髓P2X7R在T1DM产生痛性神经病变的早期阶段所起的作用,将有望为研究糖尿病痛性神经病变药物提供新的靶点.
方法:本实验采用健康雄性C57BL小鼠与P2X7R KO小鼠(体重20~23克,从20点至次日8点隔夜禁食12小时)为研究对象,连续三天腹腔注射STZ(浓度为100 mg/kg),从而制备T1DM动物模型.如果空腹血糖>11.1 mmol/L且三周后小鼠机械痛阈值明显下降,则表示模型制备成功.在小鼠机械痛阈下降的对应时间点,取腰段脊髓背角,采用蛋白质印迹法(western blot)和免疫组化方法测定P2X7R的表达情况.同时,在发生机械痛阈值下降的第3周时间鞘内给予其拮抗剂A740003,并进行机械刺激从而观察其痛阈值的变化.
结论:STZ诱导的T1DM动物模型在早期表现为显著的机械诱发痛,并伴随脊髓背角P2X7R表达上调;在痛阈下降期鞘内给予其拮抗剂A740003可抑制糖尿病小鼠的痛行为.与腹腔注射STZ形成T1DM的C57BL/6小鼠相比,P2X7R基因敲除的糖尿病小鼠早期机械痛阈值下降的时间延迟,程度减轻.因此,我们推测P2X7R可能参与了STZ诱导的糖尿病小鼠早期机械痛性神经病变.

关键词:嘌呤能离子通道型受体7(P2X7R);机械痛;链脲佐菌素;糖尿病小鼠

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1]Bele T, Fabbretti E, 2015. P2X receptors, sensory neurons and pain. Curr Med Chem, 22(7):845-850.

[2]Berger JR, Choi D, Kaminski HJ, et al., 2013. Importance and hurdles to drug discovery for neurological disease. Ann Neurol, 74(3):441-446.

[3]Bernier LP, Ase AR, Séguéla P, 2018. P2X receptor channels in chronic pain pathways. Br J Pharmacol, 175(12):2219-2230.

[4]Burnstock G, 2014. Purinergic signalling: from discovery to current developments. Exp Physiol, 99(1):16-34.

[5]Cheng KI, Wang HC, Chuang YT, et al., 2014. Persistent mechanical allodynia positively correlates with an increase in activated microglia and increased P-p38 mitogen-activated protein kinase activation in streptozotocin-induced diabetic rats. Eur J Pain, 18(2):162-173.

[6]Chessell IP, Hatcher JP, Bountra C, et al., 2005. Disruption of the P2X7 purinoceptor gene abolishes chronic inflammatory and neuropathic pain. Pain, 114(3):386-396.

[7]Deuchars SA, Atkinson L, Brooke RE, et al., 2001. Neuronal P2X7 receptors are targeted to presynaptic terminals in the central and peripheral nervous systems. J Neurosci, 21(18):7143-7152.

[8]Falk S, Schwab SD, Frøsig-Jorgensen M, et al., 2015. P2X7 receptor-mediated analgesia in cancer-induced bone pain. Neuroscience, 291:93-105.

[9]Guo XX, Wang Y, Wang K, et al., 2018. Stability of a type 2 diabetes rat model induced by high-fat diet feeding with low-dose streptozotocin injection. J Zhejiang Univ-Sci B (Biomed & Biotechnol), 19(7):559-569.

[10]He XF, Wei JJ, Shou SY, et al., 2017. Effects of electroacupuncture at 2 and 100 Hz on rat type 2 diabetic neuropathic pain and hyperalgesia-related protein expression in the dorsal root ganglion. J Zhejiang Univ-Sci B (Biomed & Biotechnol), 18(3):239-248.

[11]Huang ZX, Lu ZJ, Ma WQ, et al., 2014. Involvement of RVM-expressed P2X7 receptor in bone cancer pain: mechanism of descending facilitation. Pain, 155(4):783-791.

[12]Illes P, Khan TM, Rubini P, 2017. Neuronal P2X7 receptors revisited: do they really exist? J Neurosci, 37(30):7049-7062.

[13]Javed S, Alam U, Malik RA, 2015. Burning through the pain: treatments for diabetic neuropathy. Diabetes Obes Metab, 17(12):1115-1125.

[14]Jiang K, Zhuang Y, Yan M, et al., 2016. Effects of riluzole on P2X7R expression in the spinal cord in rat model of neuropathic pain. Neurosci Lett, 618:127-133.

[15]Jiang TF, Hoekstra J, Heng X, et al., 2015. P2X7 receptor is critical in α-synuclein-mediated microglial NADPH oxidase activation. Neurobiol Aging, 36(7):2304-2318.

[16]Kobayashi K, Takahashi E, Miyagawa Y, et al., 2011. Induction of the P2X7 receptor in spinal microglia in a neuropathic pain model. Neurosci Lett, 504(1):57-61.

[17]Liu SM, Zou LF, Xie JY, et al., 2016. LncRNA NONRATT021972 siRNA regulates neuropathic pain behaviors in type 2 diabetic rats through the P2X7 receptor in dorsal root ganglia. Mol Brain, 9:44.

[18]Liu WJ, Ao QY, Guo QL, et al., 2017. miR-9 mediates CALHM1-activated ATP-P2X7R signal in painful diabetic neuropathy rats. Mol Neurobiol, 54(2):922-929.

[19]Lu WN, Albalawi F, Beckel JM, et al., 2017. The P2X7 receptor links mechanical strain to cytokine IL-6 up-regulation and release in neurons and astrocytes. J Neurochem, 141(3):436-448.

[20]Mehta N, Kaur M, Singh M, et al., 2014. Purinergic receptor P2X7: a novel target for anti-inflammatory therapy. Bioorg Med Chem, 22(1):54-88.

[21]Miras-Portugal MT, Sebastián-Serrano Á, de Diego García L, et al., 2017. Neuronal P2X7 receptor: involvement in neuronal physiology and pathology. J Neurosci, 37(30):7063-7072.

[22]Moore RA, Wiffen PJ, Derry S, et al., 2011. Gabapentin for chronic neuropathic pain and fibromyalgia in adults. Cochrane Database Syst Rev, 3:CD007938.

[23]Ni GL, Cui R, Shao AM, et al., 2017. Salidroside ameliorates diabetic neuropathic pain in rats by inhibiting neuroinflammation. J Mol Neurosci, 63(1):9-16.

[24]Ochi-Ishi R, Nagata K, Inoue T, et al., 2014. Involvement of the chemokine CCL3 and the purinoceptor P2X7 in the spinal cord in paclitaxel-induced mechanical allodynia. Mol Pain, 10:53.

[25]Pan Q, Li QM, Deng W, et al., 2018. Prevalence of and risk factors for peripheral neuropathy in Chinese patients with diabetes: a multicenter cross-sectional study. Front Endocrinol (Lausanne), 9:617.

[26]Pop-Busui R, Boulton AJM, Feldman EL, et al., 2017. Diabetic neuropathy: a position statement by the American Diabetes Association. Diabetes Care, 40(1):136-154.

[27]Sánchez-Nogueiro J, Marín-Garcia P, Bustillo D, et al., 2014. Subcellular distribution and early signalling events of P2X7 receptors from mouse cerebellar granule neurons. Eur J Pharmacol, 744:190-202.

[28]Tsuda M, Ueno H, Kataoka A, et al., 2008. Activation of dorsal horn microglia contributes to diabetes-induced tactile allodynia via extracellular signal-regulated protein kinase signaling. GLIA, 56(4):378-386.

[29]Vinik A, Emir B, Cheung R, et al., 2013. Relationship between pain relief and improvements in patient function/quality of life in patients with painful diabetic peripheral neuropathy or postherpetic neuralgia treated with pregabalin. Clin Ther, 35(5):612-623.

[30]Wang DM, Couture R, Hong YG, 2014. Activated microglia in the spinal cord underlies diabetic neuropathic pain. Eur J Pharmacol, 728:59-66.

[31]Wu B, Peng LC, Xie JY, et al., 2017. The P2X7 receptor in dorsal root ganglia is involved in HIV gp120-associated neuropathic pain. Brain Res Bull, 135:25-32.

[32]Yao ZY, Chen WB, Shao SS, et al., 2018. Role of exosome-associated microRNA in diagnostic and therapeutic applications to metabolic disorders. J Zhejiang Univ-Sci B (Biomed & Biotechnol), 19(3):183-198.

[33]Ying YL, Wei XH, Xu XB, et al., 2014. Over-expression of P2X7 receptors in spinal glial cells contributes to the development of chronic postsurgical pain induced by skin/muscle incision and retraction (SMIR) in rats. Exp Neurol, 261:836-843.

[34]Zhang PA, Xu QY, Xue L, et al., 2017. Neonatal maternal deprivation enhances presynaptic P2X7 receptor transmission in insular cortex in an adult rat model of visceral hypersensitivity. CNS Neurosci Ther, 23(2):145-154.

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