Journal of Traditional Chinese Medicine >
Efficacy of electroacupuncture stimulating Shenmen (HT7), Baihui (GV20), Sanyinjiao (SP6) on spatial learning and memory deficits in rats with insomnia induced by para-chlorophenylalanine: a single acupoint vs combined acupoints
Received date: 2022-04-12
Accepted date: 2022-08-03
Online published: 2023-03-08
Supported by
“973” Program of the Ministry of Science and Technology of China: Research on Acupoint Optimization, Combination and Evaluation Methods(2014CB543103);Self-Selected Research Program from of China Academy of Chinese Medical Sciences: Study on the Mechanism of Central Amygdala Nucleus Mediated Electroacupuncture on Relieving Chronic Pain and Related Aversive Mood(ZZ13-YQ-063)
OBJECTIVE: To investiage the effect of electroacupuncture (EA) at a single acupoint of Shenmen (HT7), Baihui (GV20), Sanyinjiao (SP6) and at combined acupoints of Shenmen (HT7) and Baihui (GV20) and Sanyinjiao (SP6) on the PKA/CREB and BDNF/TrkB signaling, as well as neuroapoptosis and neurogenesis in hippocampus and elucidate the underlying mechanism of single and combined acupoints on ameliorating spatial learning and memory deficits in a rat model of primary insomnia.
METHODS: Primary insomnia was modeled by intraperitoneal injection of para-chlorophenylalanine (PCPA) once daily for 2 d. EA was applied at Shenmen (HT7), Baihui (GV20), Sanyinjiao (SP6), or Shenmen (HT7) + Baihui (GV20) + Sanyinjiao (SP6) (combined) for 30 min daily for 4 d. Spatial learning and memory function was evaluated by the Morris water maze (MWM) test. Protein expressions of hippocampal cAMP-dependent protein kinase (PKA)-Cβ, phosphorylated cAMP-responsive element-binding protein (p-CREB), brain-derived neurotrophic factor (BDNF), and tyrosine kinase receptor B (TrkB) were evaluated by Western blotting. Neuronal apoptosis in the hippocampus was detected with the transferase-mediated dUTP-X nick end labeling assay. Endogenous neurogenesis was examined with bromodeoxyuridine staining. The MWM test and hippocampal p-CREB, BDNF, and TrkB protein levels in the combined acupoints group were evaluated after the administration of a PKA-selective inhibitor (H89).
RESULTS: Spatial learning and memory were significantly impaired in rats with insomnia. The spatial learning deficits were ameliorated in the Shenmen (HT7), Baihui (GV20), Sanyinjiao (SP6), and combined groups; this improvement was significantly greater in the combined group than the single acupoint groups. The spatial memory impairment was improved in the combined, Baihui (GV20), and Shenmen (HT7) groups, but not the Sanyinjiao (SP6) group. The expressions of PKA-Cβ, p-CREB, BDNF, and TrkB were decreased in rats with insomnia. All these proteins were significantly upregulated in the combined group. PKA/p-CREB protein levels were elevated in the Baihui (GV20) and Shenmen (HT7) groups, whereas BDNF/TrkB expression was upregulated in the Sanyinjiao (SP6) group. The staining results showed significant attenuation of hippocampal cell apoptosis and increased numbers of proliferating cells in the combined group, whereas the single acupoint groups only showed decreased numbers of apoptotic cells. In the combined group, the PKA inhibitor reversed the improvement of spatial memory and upregulation of p-CREB expression caused by EA, but did not affect its activation of BDNF/TrkB signaling.
CONCLUSIONS: EA at the single acupoints Baihui (GV20), Shenmen (HT7), or Sanyinjiao (SP6) had an ameliorating effect on the spatial learning and memory deficits induced by insomnia. EA at combined acupoints exerted a synergistic effect on the improvements in spatial learning and memory impairment in rats with insomnia by upregulating the hippocampal PKA/CREB and BDNF/TrkB signaling, facilitating neurogenesis, and inhibiting neuronal apoptosis. These findings indicate that EA at combined acupoints [(Baihui (GV20), Shenmen (HT7), and Sanyinjiao (SP6)] achieves a more pronounced regulation of hippocampal neuroplasticity than EA at single acupoints, which may partly explain the underlying mechanisms by which EA at combined acupoints exerts a better ameliorative effect on the cognitive dysfunction caused by insomnia.
Lina QIAO , Yinan SHI , Lianhong TAN , Yanshu JIANG , Yongsheng YANG . Efficacy of electroacupuncture stimulating Shenmen (HT7), Baihui (GV20), Sanyinjiao (SP6) on spatial learning and memory deficits in rats with insomnia induced by para-chlorophenylalanine: a single acupoint vs combined acupoints[J]. Journal of Traditional Chinese Medicine, 2023 , 43(4) : 704 -714 . DOI: 10.19852/j.cnki.jtcm.20230308.001
| 1 | Brownlow JA, Miller KE, Gehrman PR. Insomnia and cognitive performance. Sleep Med Clin 2020; 15: 71-6. |
| 2 | Schutte-Rodin S, Broch L, Buysse D, Dorsey C, Sateia M. Clinical guideline for the evaluation and management of chronic insomnia in adults. J Clin Sleep Med 2008; 4: 487-504. |
| 3 | Tarokh L, Saletin JM, Carskadon MA. Sleep in adolescence: physiology, cognition and mental health. Neurosci Biobehav Rev 2016; 70: 182-8. |
| 4 | Abel T, Havekes R, Saletin JM, Walker MP. Sleep, plasticity and memory from molecules to whole-brain networks. Curr Biol 2013; 23: R774-88. |
| 5 | Kim SM, Zhang S, Park J, et al. REM sleep deprivation impairs learning and memory by decreasing brain O-GlcNAc cycling in mouse. Neurotherapeutics 2021; 18: 2504-17. |
| 6 | Edinger JD, Means MK, Carney CE, Krystal AD. Psychomotor performance deficits and their relation to prior nights' sleep among individuals with primary insomnia. Sleep 2008; 31: 599-607. |
| 7 | Fortier-Brochu E, Morin CM. Cognitive impairment in individuals with insomnia: clinical significance and correlates. Sleep 2014; 37: 1787-98. |
| 8 | Cassilhas RC, Tufik S, de Mello MT. Physical exercise, neuroplasticity, spatial learning and memory. Cell Mol Life Sci 2016; 73: 975-83. |
| 9 | Martin SJ, Grimwood PD, Morris RG. Synaptic plasticity and memory: an evaluation of the hypothesis. Annu Rev Neurosci 2000; 23: 649-711. |
| 10 | Duffy SN, Craddock KJ, Abel T, Nguyen PV. Environmental enrichment modifies the PKA-dependence of hippocampal LTP and improves hippocampus-dependent memory. Learn Mem 2001; 8: 26-34. |
| 11 | Kandel ER. The molecular biology of memory: cAMP, PKA, CRE, CREB-1, CREB-2, and CPEB. Mol Brain 2012; 5: 14. |
| 12 | Bailey CH, Kande ER, Harris KM. Structural components of synaptic plasticity and memory consolidation. Cold Spring Harb Perspect Biol 2015; 7: a021758. |
| 13 | Dunning J, During MJ. Molecular mechanisms of learning and memory. Expert Rev Mol Med 2003; 5: 1-11. |
| 14 | Nguyen PV, Woo NH. Regulation of hippocampal synaptic plasticity by cyclic AMP-dependent protein kinases. Prog Neurobiol 2003; 71: 401-37. |
| 15 | Blitzer RD, Wong T, Nouranifar R, Iyengar R, Landau EM. Postsynaptic cAMP pathway gates early LTP in hippocampal CA1 region. Neuron 1995; 15: 1403-14. |
| 16 | Lu Y, Christian K, Lu B. BDNF: a key regulator for protein synthesis-dependent LTP and long-term memory? Neurobiol Learn Mem 2008; 89: 312-23. |
| 17 | Drake C, Milner T, Patterson S. Ultrastructural localization of full-length trkB immunoreactivity in rat hippocampus suggests multiple roles in modulating activity-dependent synaptic plasticity. J Neurosci 1999; 19: 8009-26. |
| 18 | Han H, Wu LM, Han MX, Yang WM, Wang YX, Fang ZH. Diabetes impairs spatial learning and memory and hippocampal neurogenesis via BDNF in rats with transient global ischemia. Brain Res Bull 2016; 124; 269-77. |
| 19 | Stagni F, Giacomini A, Sandra G, et al. A flavonoid agonist of the TrkB receptor for BDNF improves hippocampal neurogenesis and hippocampus-dependent memory in the Ts65Dn mouse model of DS. Exp Neurol 2017; 298: 79-96. |
| 20 | Che H, Zhang LY, Ding L, et al. EPA-enriched ethanolamine plasmalogen and EPA-enriched phosphatidylethanolamine enhance BDNF/TrkB/CREB signaling and inhibit neuronal apoptosis in vitro and in vivo. Food Funct 2020; 11: 1729-39. |
| 21 | Nam MH, Ahn KS, Choi SH. Acupuncture stimulation induces neurogenesis in adult brain. Int Rev Neurobiol 2013; 111: 67-90. |
| 22 | Soto-Rodriguez S, Lopez-Armas G, Luquin S, et al. Rapid eye movement sleep deprivation produces long-term detrimental effects in spatial memory and modifies the cellular composition of the subgranular zone. Front Cell Neurosci 2016; 10: 132. |
| 23 | Xie G, Huang X, Li H, Wang P, Huang P. Caffeine-related effects on cognitive performance: roles of apoptosis in rat hippocampus following sleep deprivation. Biochem Biophys Res Commun 2021; 534: 632-8. |
| 24 | Joo EY, Kim H, Suh S, Hong SB. Hippocampal substructural vulnerability to sleep disturbance and cognitive impairment in patients with chronic primary insomnia: magnetic resonance imaging morphometry. Sleep 2014; 37: 1189-98. |
| 25 | Xu D, Hang HY, Liu M, et al. Literature study on distribution features of TCM syndromes and syndrome elements of peptic ulcer. Chin J Basic Med Tradit Chin Med 2012; 18: 722-4. |
| 26 | Shergis JL, Ni XJ, Jackson ML, et al. A systematic review of acupuncture for sleep quality in people with insomnia. Complement Ther Med 2016; 26: 11-20. |
| 27 | Wang H, Liang FX. Thoughts and prospects of research on acupoints compatibility. Zhong Guo Zhen Jiu 2012; 32: 359-62. |
| 28 | Qiao LN, Gao QL, Tan LH, et al. Electroacupuncture of multiple acupoints is significantly superior to that of single acupoint in improving sleep by regulating serum sleep-promoting and awakening-promoting factors in insomnia rats. Zhen Ci Yan Jiu 2018; 43: 651-6. |
| 29 | Hong J, Chen J, Kan J, Liu M, Yang D. Effects of acupuncture treatment in reducing sleep disorder and gut microbiota alterations in PCPA-Induced insomnia mice. Evid Based Complement Alternat Med 2020; 2020: 3626120. |
| 30 | Du CH, Yan Y, Shen CX, Cui XF, Pei XP, Qin XM. Comparative pharmacokinetics of six major compounds in normal and insomnia rats after oral administration of Ziziphi Spinosae Semen aqueous extract. J Pharm Anal 2020; 10: 385-95. |
| 31 | Hosseini-Sharifabad A, Ghahremani MH, Sabzevari O, et al. Effects of protein kinase A and G inhibitors on hippocampal cholinergic markers expressions in rolipram- and sildenafil-induced spatial memory improvement. Pharmacol Biochem Behav 2012; 101: 311-9. |
| 32 | Wang HL, Liu FL, Li RQ, et al. Electroacupuncture improves learning and memory functions in a rat cerebral ischemia/reperfusion injury model through PI3K/Akt signaling pathway activation. Neural Regen Res 2021; 16: 1011-6. |
| 33 | Xu H, Zhang YM, Sun H, Chen SH, Si YK. Electroacupuncture at GV20 and ST36 exerts neuroprotective effects via the EPO-Mediated JAK2/STAT3 pathway in cerebral ischemic rats. Evid Based Complement Alternat Med 2017; 2017: 6027421. |
| 34 | Hua XB, Li CR, Zhou HL. The development of the rat acupuncture points map. Shi Yan Dong Wu Yu Dong Wu Shi Yan 1991; 1: 1. |
| 35 | Chang SC, Ryu Y, FanY, et al. Involvement of the cuneate nucleus in the acupuncture inhibition of drug-seeking behaviors. Front Neurosci 2019; 13: 928. |
| 36 | Park HJ, Chae Y, Jang J, Shim I, Lee H, Lim S. The effect of acupuncture on anxiety and neuropeptide Y expression in the basolateral amygdala of maternally separated rats. Neurosci Lett 2005; 377: 179-84. |
| 37 | Chen Y, Zhao Y, Luo DN, Zheng H, Li Y, Zhou SY. Electroacupuncture regulates disorders of gut-brain interaction by decreasing corticotropin-releasing factor in a rat model of IBS. Gastroenterol Res Pract 2019; 2019: 1759842. |
| 38 | Wen T, Zhang XF, Liang SX, et al. Electroacupuncture ameliorates cognitive impairment and spontaneous low-frequency brain activity in rats with ischemic stroke. J Stroke Cerebrovasc Dis 2018; 27: 2596-605. |
| 39 | Wang RM, Dong Y, Lu YJ, Zhang WL, Brann DW, Zhang QG. Photobiomodulation for global cerebral ischemia: targeting mitochondrial dynamics and functions. Mol Neurobiol 2019; 56: 1852-69. |
| 40 | Munoz-Velasco I, Ortiz R, Echeverria OM, Escobar ML, Vazquez-Nin GH. Characterization of the pre-meiotic S phase through incorporation of BrdU during spermatogenesis in the rat. J Histochem Cytochem 2013; 61: 680-9. |
| 41 | Shen EY, Chen FJ, Chen YY, Lin MF. Locating the acupoint Baihui (GV20) beneath the cerebral cortex with MRI reconstructed 3D neuroimages. Evid Based Complement Alternat Med 2011; 2011: 362494. |
| 42 | Cheong YC, Dix S, Hung Yu Ng E, Ledger WL, Farquhar C. Acupuncture and assisted reproductive technology. Cochrane Database Syst Rev 2013; 7: CD006920. |
| 43 | Wang WW, Xie CL, Lu L, Zheng GQ. A systematic review and Meta-analysis of Baihui (GV20)-based scalp acupuncture in experimental ischemic stroke. Sci Rep 2014; 4: 3981. |
| 44 | Park S, Lee JH, Yang EJ. Effects of acupuncture on Alzheimer's disease in animal-based research. Evid Based Complement Alternat Med 2017; 2017: 6512520. |
| 45 | Wu P, Cheng C, Song XJ, et al. Acupoint combination effect of Shenmen (HT 7) and Sanyinjiao (SP 6) in treating insomnia: study protocol for a randomized controlled trial. Trials 2020; 21: 261. |
| 46 | Sakamoto K, Karelina K, Obrietan K. CREB: a multifaceted regulator of neuronal plasticity and protection. J Neurochem 2011; 116: 1-9. |
| 47 | Havekes R, Abel T. The tired hippocampus: the molecular impact of sleep deprivation on hippocampal function. Curr Opin Neurobiol 2017; 44: 13-9. |
| 48 | Looti Bashiyan M, Nasehi M, Vaseghi S, Khalifeh S. Investigating the effect of crocin on memory deficits induced by total sleep deprivation (TSD) with respect to the BDNF, TrkB and ERK levels in the hippocampus of male Wistar rats. J Psychopharmacol 2021; 35: 744-54. |
| 49 | Mahboubi S, Nasehi M, Imani A, et al. Benefit effect of REM-sleep deprivation on memory impairment induced by intensive exercise in male wistar rats: with respect to hippocampal BDNF and TrkB. Nat Sci Sleep 2019; 11: 179-88. |
| 50 | Guzman-Marin R, Ying Z, Untsova N, et al. Suppression of hippocampal plasticity-related gene expression by sleep deprivation in rats. J Physiol 2006; 575: 807-19. |
| 51 | Han XH, Zhao XX, Lu M, et al. Electroacupuncture ameliorates learning and memory via activation of the CREB signaling pathway in the hippocampus to attenuate apoptosis after cerebral hypoperfusion. Evid Based Complement Alternat Med 2013; 2013: 156489. |
| 52 | Li XH, Chen C, Yang XP, et al. Acupuncture improved neurological recovery after traumatic brain injury by activating BDNF/TrkB Pathway. Evid Based Complement Alternat Med 2017; 2017: 8460145. |
| 53 | Santin LJ, Rubio S, Begega A, Miranda R, Arias JL. Spatial learning and the hippocampus. Rev Neurol 2000; 31: 455-62. |
| 54 | van Praag H, Shubert T, Zhao C, Gage FH. Exercise enhances learning and hippocampal neurogenesis in aged mice. J Neurosci 2005; 25: 8680-5. |
| 55 | Cao L, Jiao XY, Zuzga D, et al. VEGF links hippocampal activity with neurogenesis, learning and memory. Nat Genet 2004; 36: 827-35. |
| 56 | Jia Z, Geng L, Xie G, Chu Q, Zhang W. Sevoflurane impairs acquisition learning and memory function in transgenic mice model of Alzheimer's disease by induction of hippocampal neuron apoptosis. Int J Clin Exp Med 2015; 8: 15490-7. |
| 57 | Mori K, Yoshioka M, Suda N, et al. An incomplete cerebral ischemia produced a delayed dysfunction in the rat hippocampal system. Brain Res 1998; 795: 221-6. |
| 58 | McDermott CM, LaHoste GL, Chen C, Musto A, Bazan NG, Magee JC. Sleep deprivation causes behavioral, synaptic, and membrane excitability alterations in hippocampal neurons. J Neurosci 2003; 23: 9687-95. |
| 59 | Ye S, Xie DJ, Zhou P, et al. Huangpu Tongqiao formula ameliorates the hippocampus apoptosis in diabetic cognitive dysfunction mice by activating CREB/BDNF/TrkB signaling pathway. Evid Based Complement Alternat Med 2021; 2021: 5514175. |
| 60 | Feng SF, Wang Q, Wang HN, et al. Electroacupuncture pretreatment ameliorates hypergravity-induced impairment of learning and memory and apoptosis of hippocampal neurons in rats. Neurosci Lett 2010; 478: 150-5. |
| 61 | Li XY, Guo F, Zhang QM, et al. Electroacupuncture decreases cognitive impairment and promotes neurogenesis in the APP/PS 1 transgenic mice. BMC Complement Altern Med 2014; 14: 37. |
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