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Research advance of long non-coding RNA and chronic pain |
YU Jianmang HANG Lihua#br# |
Department of Anesthesiology, Kunshan Hospital Affiliated to Jiangsu University, Jiangsu Province, Kunshan 215300, China |
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Abstract Chronic pain is one of the diseases that have the greatest negative impact on people’s quality of life in the world, and brings huge economic burden to society. The drug methods for treating chronic pain are limited and ineffective. Long non-coding RNA (lncRNA) is a class of non-coding RNA with sequence length more than 200 nucleotides and lack of protein-coding potential, but it plays an extensive and important biological regulatory role in vivo. Recent studies have found that lncRNA expression is dysregulated in a variety of chronic pain models, and it plays an important role in the development of chronic pain by affecting the function of various micrornas, inflammatory cytokines and ion channel activation. In this paper, lncRNA related studies involved in neuropathic pain, chronic inflammatory pain and bone cancer pain in recent years are analyzed and summarized, so as to discover valuable therapeutic targets and lay a theoretical foundation for the development of more effective analgesics.
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[1] Dahlhamer J,Lucas J,Zelaya C,et al. Prevalence of chronic pain and highimpact chronic pain among adults—United States,2016 [J]. MMWR Morb Mortal Wkly Rep,2018,67(36):1001-1006.
[2] Treede RD,Rief W,Barke A,et al. Chronic pain as a symptom or a disease:the IASP Classification of Chronic Pain for the International Classification of Diseases (ICD-11) [J]. Pain,2019,160(1):19-27.
[3] Mills SEE,Nicolson KP,Smith BH. Chronic pain:a review of its epidemiology and associated factors in population-based studies [J]. Br J Anaesth,2019,123(2):e273-e283.
[4] Fan Y,Li N,Yao X. Identification of potential biomarkers of long non-coding RNAs in neuropathic pain using bioinformatic analysis:A protocol for systematic review and meta-analysis [J]. Medicine (Baltimore),2021,100(12):e25147.
[5] Zhao L,Wang J,Li Y,et al. NONCODEV6:an updated database dedicated to long non-coding RNA annotation in both animals and plants [J]. Nucleic Acids Res,2021,49(D1):D165-D171.
[6] Ma L,Bajic VB,Zhang Z. On the classification of long non-coding RNAs [J]. RNA Biol,2013,10(6):925-933.
[7] Zhang Y,Tao Y,Liao Q. Long noncoding RNA:a crosslink in biological regulatory network [J]. Brief Bioinform,2018, 19(5):930-945.
[8] Sun Q,Hao Q,Prasanth KV. Nuclear Long Noncoding RNAs:Key Regulators of Gene Expression [J]. Trends Genet,2018,34(2):142-157.
[9] Xu X,Cui L,Zhong W,et al. Autophagy-Associated lncRNAs:Promising Targets for Neurological Disease Diagnosis and Therapy [J]. Neural Plast,2020,2020:8881687.
[10] Sun R,Wei J,Wang S,et al. Upregulation of lncRNA-NONRATT021203.2 in the dorsal root ganglion contributes to cancer-induced pain via CXCL9 in rats [J]. Biochem Biophys Res Commun,2020,524(4):983-989.
[11] 张如月,武彩花,李熳,等.长链非编码RNA调控神经病理性疼痛的研究进展[J].中国疼痛医学杂志,2021, 27(7):490-496.
[12] Hu C,He M,Xu Q,et al. Advances With Non-coding RNAs in Neuropathic Pain [J]. Front Neurosci,2021,15:760936.
[13] Scholz J,Finnerup NB,Attal N,et al. The IASP classification of chronic pain for ICD-11:chronic neuropathic pain [J]. Pain,2019,160(1):53-59.
[14] Cao S,Yuan J,Zhang D,et al. Transcriptome Changes In Dorsal Spinal Cord Of Rats With Neuropathic Pain [J]. J Pain Res,2019,12:3013-3023.
[15] Li Y,Yin C,Liu B,et al. Transcriptome profiling of long noncoding RNAs and mRNAs in spinal cord of a rat model of paclitaxel-induced peripheral neuropathy identifies potential mechanisms mediating neuroinflammation and pain [J]. J Neuroinflammation,2021,18(1):48.
[16] Luo L,Ji LD,Cai JJ,et al. Microarray Analysis of Long Noncoding RNAs in Female Diabetic Peripheral Neuropathy Patients [J]. Cell Physiol Biochem,2018,46(3):1209-1217.
[17] Zhang P,Sun H,Ji Z. Downregulating lncRNA PVT1 Relieves Astrocyte Overactivation Induced Neuropathic Pain Through Targeting miR-186-5p/CXCL13/CXCR5 Axis [J]. Neurochem Res,2021,46(6):1457-1469.
[18] Zhang Z,Sun X,Zhao G,et al. LncRNA embryonic stem cells expressed 1 (Lncenc1) is identified as a novel regulator in neuropathic pain by interacting with EZH2 and downregulating the expression of Bai1 in mouse microglia [J]. Exp Cell Res,2021,399(1):112435.
[19] Chen H,Yu J,Hang L,et al. Evidence of the Involvement of Spinal EZH2 in the Development of Bone Cancer Pain in Rats [J]. J Pain Res,2021,14:3593-3600.
[20] Ma P,Chen P,Zhou ZL,et al. Activation of EphB receptors contributes to primary sensory neuron excitability by facilitating Ca2+ influx directly or through Src kinase-mediated N-methyl-D-aspartate receptor phosphorylation [J]. Pain,2020,161(7):1584-1596.
[21] Zhang C,Peng Y,Wang Y,et al. Transcribed ultraconserved noncoding RNA uc.153 is a new player in neuropathic pain [J]. Pain,2020,161(8):1744-1754.
[22] Yu W,Zhao GQ,Cao RJ,et al. LncRNA NONRATT02-1972 Was Associated with Neuropathic Pain Scoring in Patients with Type 2 Diabetes [J]. Behav Neurol,2017, 2017:2941297.
[23] Wang S,Xu H,Zou L,et al. LncRNA uc.48+ is involved in diabetic neuropathic pain mediated by the P2X3 receptor in the dorsal root ganglia [J]. Purinergic Signal,2016,12(1):139-148.
[24] Sun M,Zhang M,Yin H,et al. Long non-coding RNA MSTRG.81401 short hairpin RNA relieves diabetic neuropathic pain and behaviors of depression by inhibiting P2X4 receptor expression in type 2 diabetic rats [J]. Purinergic Signal,2022.
[25] Breivik H. Systemic inflammation firmly documented in chronic pain patients by measurement of increased levels of many of 92 inflammation-related proteins in blood - normalizing as the pain condition improves with CBT-based multimodal rehabilitation at Uppsala Pain Center [J]. Scand J Pain,2019,19(2):223-224.
[26] 白倩.骨关节炎性痛痛觉传导的外周和中枢作用机制研究[D].郑州:郑州大学,2018.
[27] Sun W,Ma M,Yu H,et al. Inhibition of lncRNA X inactivate-specific transcript ameliorates inflammatory pain by suppressing satellite glial cell activation and inflammation by acting as a sponge of miR-146a to inhibit Nav 1.7 [J]. J Cell Biochem,2018,119(12):9888-9898.
[28] Jiang X,Chen D. LncRNA FAM83H-AS1 maintains intervertebral disc tissue homeostasis and attenuates inflammation-related pain via promoting nucleus pulposus cell growth through miR-22-3p inhibition [J]. Ann Transl Med,2020,8(22):1518.
[29] Feller L,Khammissa RAG,Bouckaert M,et al. Pain:Persistent postsurgery and bone cancer-related pain [J]. J Int Med Res,2019,47(2):528-543.
[30] Wei J,Dou Q,Ba F,et al. Identification of lncRNA and mRNA expression profiles in dorsal root ganglion in rats with cancer-induced bone pain [J]. Biochem Biophys Res Commun,2021,572:98-104.
[31] Hou X,Weng Y,Guo Q,et al. Transcriptomic analysis of long noncoding RNAs and mRNAs expression profiles in the spinal cord of bone cancer pain rats [J]. Mol Brain,2020,13(1):47.
[32] Chen J,Lu C,Wang X,et al. LncRNA NONRATT009773.2 promotes bone cancer pain progression through the miR-708-5p/CXCL13 axis [J]. Eur J Neurosci,2022,55(3):661-674.
[33] Xu Y,Wang Y,Chen J,et al. The comorbidity of mental and physical disorders with self-reported chronic back or neck pain:Results from the China Mental Health Survey [J]. J Affect Disord,2020,260:334-341.
[34] Wu S,Chen X,Huang F,et al. Transcriptomic Analysis of Long Noncoding RNA and mRNA Expression Profiles in the Amygdala of Rats with Bone Cancer Pain-Depression Comorbidity [J]. Life (Basel),2021,11(8):834.
[35] Khorkova O,Wahlestedt C. Oligonucleotide therapies for disorders of the nervous system [J]. Nat Biotechnol,2017,35(3):249-263. |
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