Bennett, G. J., & Xie, Y.-K. (1988). A peripheral mononeuropathy in rat that produces disorders of pain sensation like those seen in man. Pain, 33, 87–107.
Cao, S., Deng, W., Li, Y., Qin, B., Zhang, L., Yu, S., Xie, P., Xiao, Z., & Yu, T. (2017). Chronic constriction injury of sciatic nerve changes circular RNA expression in rat spinal dorsal horn. Journal of Pain Research, 10, 1687–1696.
Article CAS PubMed PubMed Central Google Scholar
Finnerup, N. B., Kuner, R., & Jensen, T. S. (2020). Neuropathic pain: From mechanisms to treatment. Physiological Reviews. https://doi.org/10.1152/physrev.00045.2019
Floris, G., Gillespie, A., Zanda, M. T., Dabrowski, K. R., & Sillivan, S. E. (2022). Heroin regulates orbitofrontal circular RNAs. International Journal of Molecular Sciences, 23, 1453.
Article CAS PubMed PubMed Central Google Scholar
Gilron, I., Baron, R., & Jensen, T. (2015). Neuropathic pain: Principles of diagnosis and treatment. Mayo clinic proceedings (pp. 532–545). Elsevier.
Ji, L. J., Shi, J., Lu, J. M., & Qm, H. (2018). MiR-150 alleviates neuropathic pain via inhibiting toll-like receptor 5. Journal of Cellular Biochemistry, 119, 1017–1026.
Article CAS PubMed Google Scholar
Kim, G. E., & Kaczmarek, L. K. (2014). Emerging role of the KCNT1 Slack channel in intellectual disability. Frontiers in Cellular Neuroscience, 8, 209.
Article PubMed PubMed Central Google Scholar
Ma, X., Hao, C., Zhang, Z., Jiang, H., Zhang, W., Huang, J., Chen, X., & Yang, W. (2021). Shenjinhuoxue mixture attenuates inflammation, pain, and cartilage degeneration by inhibiting TLR-4 and NF-κB activation in rats with osteoarthritis: A synergistic combination of multitarget active phytochemicals. Oxidative Medicine and Cellular Longevity, 2021, 1–21.
Miao, J., Zhou, X., Ji, T., & Chen, G. (2020). NF-κB p65-dependent transcriptional regulation of histone deacetylase 2 contributes to the chronic constriction injury-induced neuropathic pain via the microRNA-183/TXNIP/NLRP3 axis. Journal of Neuroinflammation, 17, 1–13.
Misir, S., Wu, N., & Yang, B. B. (2022). Specific expression and functions of circular RNAs. Cell Death & Differentiation, 29, 481–491.
Patop, I. L., Wüst, S., & Kadener, S. (2019). Past, present, and future of circ RNA s. The EMBO Journal, 38, e100836.
Article PubMed PubMed Central Google Scholar
Rybak-Wolf, A., Stottmeister, C., Glažar, P., Jens, M., Pino, N., Giusti, S., Hanan, M., Behm, M., Bartok, O., & Ashwal-Fluss, R. (2015). Circular RNAs in the mammalian brain are highly abundant, conserved, and dynamically expressed. Molecular Cell, 58, 870–885.
Article CAS PubMed Google Scholar
Sa, T., Nie, X., Ruan, J., Cao, Y., Kang, J., & Ding, C. (2022). Circular RNA circNFKB1 promotes osteoarthritis progression through interacting with ENO1 and sustaining NF-κB signaling. Cell Death & Disease, 13, 695.
Sabo, S. L., Lahr, J. M., Offer, M., Weekes, A. L., & Sceniak, M. P. (2023). GRIN2B-related neurodevelopmental disorder: Current understanding of pathophysiological mechanisms. Frontiers in Synaptic Neuroscience, 14, 1090865.
Article PubMed PubMed Central Google Scholar
Sun, J., Zhou, Y.-q, Xu, B.-y, Li, J.-y, Zhang, L.-q, Li, D.-y, Zhang, S., Wu, J.-y, Gao, S.-j, & Ye, D.-W. (2021). STING/NF-κB/IL-6-mediated inflammation in microglia contributes to spared nerve injury (SNI)-induced pain initiation. Journal of Neuroimmune Pharmacology. https://doi.org/10.1002/jcb.26269
Article PubMed PubMed Central Google Scholar
Tomasello, D. L., Gancarz-Kausch, A. M., Dietz, D. M., & Bhattacharjee, A. (2015). Transcriptional regulation of the sodium-activated potassium channel SLICK (KCNT2) promoter by nuclear factor-κB. Journal of Biological Chemistry, 290, 18575–18583.
Article CAS PubMed PubMed Central Google Scholar
Tomasello, D. L., Hurley, E., Wrabetz, L., & Bhattacharjee, A. (2017). Slick (Kcnt2) sodium-activated potassium channels limit peptidergic nociceptor excitability and hyperalgesia. Journal of Experimental Neuroscience, 11, 1179069517726996.
Article PubMed PubMed Central Google Scholar
Wang, K., Bao, J.-P., Zhou, Z.-M., Mao, L., & Wu, X.-T. (2022). CircRNA-associated ceRNA network reveals focal adhesion and metabolism pathways in neuropathic pain. Journal of Oncology. https://doi.org/10.1155/2022/7246904
Article PubMed PubMed Central Google Scholar
Wang, K., Wang, F., Bao, J.-P., Xie, Z.-Y., Chen, L., Zhou, B.-Y., Xie, X.-H., & Wu, X.-T. (2017). Tumor necrosis factor α modulates sodium-activated potassium channel SLICK in rat dorsal horn neurons via p38 MAPK activation pathway. Journal of Pain Research, 10, 1265–1271.
Article CAS PubMed PubMed Central Google Scholar
Xia, L. X., Ke, C., & Lu, J. M. (2018). NEAT1 contributes to neuropathic pain development through targeting miR-381/HMGB1 axis in CCI rat models. Journal of Cellular Physiology, 233, 7103–7111.
Article CAS PubMed Google Scholar
Zhang, R.-X., Yan, X.-B., Gu, Y.-H., Huang, D., Gan, L., Han, R., & Huang, L.-H. (2013). Gene silencing of NR2B-containing NMDA receptor by intrathecal injection of short hairpin RNA reduces formalin-induced nociception in C57BL/6 mouse. International Journal of Neuroscience, 123, 650–656.
Article CAS PubMed Google Scholar
Zhou, J., Xiong, Q., Chen, H., Yang, C., & Fan, Y. (2017). Identification of the spinal expression profile of non-coding RNAs involved in neuropathic pain following spared nerve injury by sequence analysis. Frontiers in Molecular Neuroscience, 10, 91.
Comments (0)