| Literature DB >> 24566146 |
Dong Lin1, Ike De La Pena2, Lili Lin3, Shu-Feng Zhou4, Cesar V Borlongan5, Chuanhai Cao6.
Abstract
Recent studies have been conducted to examine the neuroprotective effects of acupuncture in many neurological disorders. Although the neuroprotective effects of acupuncture has been linked to changes in signaling pathways, accumulating evidence suggest the participation of endogenous biological mediators, such as the neurotrophin (NT) family of proteins, specifically, the brain derived neurotrophic factor (BDNF). Accordingly, acupuncture can inhibit neurodegeneration via expression and activation of BDNF. Moreover, recent studies have reported that acupuncture can increase ATP levels at local stimulated points. We have also demonstrated that acupuncture could activate monocytes and increase the expression of BDNF via the stimulation of ATP. The purpose of this article is to review the recent findings and ongoing studies on the neuroprotective roles of acupuncture and therapeutic implications of acupuncture-induced activation of BDNF and its signaling pathway.Entities:
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Year: 2014 PMID: 24566146 PMCID: PMC3958908 DOI: 10.3390/ijms15023234
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Publications of acupuncture therapy published on PUBMED in the last 10 years.
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| Reference | Experimental | Tissue | Stimulation | Time of treatment | Acupoint | Signal pathway | Result |
| (Kim, | cerebral ischemia in mice | cerebral cortex | Electroacupuncture 2 HZ/1 mA/20 min | EA preconditioning for 3 days | GV20/GV14 | Expression of BDNF increased (after 12 h) | |
| (Zhao, | cerebral ischemia-reperfusion injury(mouse) | hippocampus | Electroacupuncture | once daily for 7 days | BL17/GV20/BL23 | BDNF mRNA expressions Up-regulated | |
| (Chen, | cerebral ischemia/reperfusion (I/R) injury(rat) | Blood | Electroacupuncture/disperse wave of 1 and 20 Hz | 30 min treated/2 or 24 h after ischemia/reperfusion | LI11/ST36 | PI3K/Akt signaling pathway | increase BDNF and GDNF secretion levels in serum |
| (Kim, | cerebral ischaemia(rat) | ischaemic hemisphere | Electroacupuncture | once daily for 2 weeks | GV20 | BDNF/trkB | increased expression of BDNF/trkB protein |
| (Lee, | spatial cognitive impairment induced by repeated corticosterone (CORT)(rat) | hippocampus | Manual acupuncture | once daily for 21 days | TE5/HT7 | Up-regulate BDNF mRNA expressions levels | |
| (Liang, | chronic stress-induced depression (rat) | prefrontal cortex and hippocampus | Electroacupuncture | once every other day for 28 days | GV 20/EX-HN 3/PC 6 | Up-regulate BDNF mRNA and protein expression levels | |
| (Park, | depression-like behavioral changes (rat) | prefrontal cortex (PFC) | Manual acupuncture | 7 consecutive days | HT7/ST36 | increased expression of BDNF protein | |
| (Wang, | neck-incision pain rats | in the cervico-spinal cord (C1–C4) | Electroacupuncture (1–2 mA, 2 Hz/100 Hz) | 30 min | LI 18/PC 6-LI 4/ST 36-GB 34 | BDNF/trkB/trkA | Down-regulated for the BDNF mRNA, TrkA mRNA and TrkB mRNA |
| (Zhang, | spinal cord transaction between T9 and T10 (mouse) | cortex area | Electroacupuncture | once daily for 14 days | “Governor Vessel” acupoints | increased expression of BDNF protein | |
| (Hwang, | Normal Wistar rats (13-week-old) | in the dentate gyrus of hippocampus | Electroacupuncture | once daily for 3 weeks | ST36/GV20 | BDNF/CREB | increased expression of BDNF protein |
| (Sun, | glaucoma model in rabbits | retina | Manual acupuncture | twice a day for 4 weeks | EX-HN 7/GB 20/LR 2 | BDNF/Bcl-xl | increased expression of BDNF protein |
| (Hua, | ovariectomized rat fracture model | fractural callus and blood samples | Manual acupuncture | once daily for 4 weeks | GB 30/ST 36/GB 34/BL 40 | BDNF/trkB | increased expression of BDNF/trkB protein |
| (Kim, | middle cerebral artery occlusion (MCAO) rats | Cerebral ischemia area | Electroacupuncture (30 min, 2/15 Hz) | once daily for 16 days | GV20/GV14/LI11/ST36 | BDNF/trkB | no significant change in BDNF |
| (Manni, | cognition induced by social isolation in the mouse | hypothalamus, striatum and hippocampus | Electroacupuncture (30 min, 1–4 Hz) | once daily for 4 days | ST36 | Decreased expression of BDNF protein | |
| (Wang, | spinal cord injury (rat) | spinal cord | Electroacupuncture (20 min, 1 mA, 2 Hz/15 Hz) | once daily for 10 days | CV 4/ST 28 | increased expression of BDNF/trkB protein | |
| (Jeon, | MPTP induced Parkinson’s disease mouse model | substantia nigra | manual acupuncture | once daily for 7 days | B34/SI3/BL62/ST36 | BDNF/CypA | increased expression of CypA following BDNF |
| (Chen, | cats subjected to removal of adjacent ganglia | L6 dorsal root ganglion (DRG) | Electroacupuncture (30 min, 98 Hz) | once daily for 7 days | ST36/GB39/ST32/SP6 | Up-regulate BDNF mRNA and protein expression levels | |
| (Liang, | Parkinson’s disease rats model induced by transection of the medial forebrain bundle (MFB) | ventral midbrain/ventral tegmental area/substantia nigra | Electroacupuncture (30 min, 1–2 mA, 2/100 Hz) | once daily for 24 days | GV 14/GV 21 | Up-regulate BDNF mRNA expressions levels | |
| (Yun, | stress-induced hippocampal degeneration rats | hippocampus | Electroacupuncture (30 min, 2 Hz) | 30 min (one time) | ST36 | Up-regulate BDNF mRNA expressions levels | |
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| (Xia, | Parkinson’s disease combined with depression patients | serum | electroacupuncture | 3 months | GV 20/EX-HN 3/EX-HN 1/LR 3/SP 6 | increased expression of BDNF(compared with that before treatment) | |
| (Moldenhauer, | Spinal Cord Injuries | serum | Manual acupuncture | <1 h | whole-body acupuncture | Decreased expression of BDNF in 48 h after acupuncture | |
(The detail location of each acupoint can be refer to the website: http://www.acupuncture.com/education/points/).
Figure 1.Acupuncture can increase the expression of BDNF (Brain-derived neurotrophic factor) via PI3K/Akt (Phosphatidylinositol-4,5-bisphosphate 3-kinase) and MEK/ERK1/2 (extracellular-signal-regulated kinases) signaling pathway by activating the tropomyosin receptor kinase B (TrkB), a high affinity catalytic receptor for several neurotrophins that induce the activation of survival signaling pathway. This ultimately leads to the phosphorylation and activation of the transcription factor CREB (cAMP response element-binding protein) that mediates transcription of BDNF gene expression leading to neuroprotection. In this article, we hypothesize that cyclophilin A (CypA) plays an important role in the activation of BDNF. On the contrary, BDNF may also be an important upstream factor in regulating CypA expression during acupuncture treatment. Thus, the exact mechanism between the effect of acupuncture and the expression of CypA is still unknown.
Figure 2.The relationship between monocytes and BDNF expression in acupuncture. (A) cell distribution before acupuncture; (B) cell distribution post acupuncture; (C) is the graph of data from A and B; (D) BDNF expression after stimulation with ATP at different concentration and (E) is the time course expression of BDNF level in J775 cell line stimulated with ATP; The proportion of monocyte was detected by flow cytometry before/after acupuncture. Cluster analysis of monocytes using Forward/Side scatter characteristics. The proportion of monocyte increased from 4.8%–11.8% in PBMC. The granulocyte decreased from 74.4%–53.7%. (D,E) The J774 Cell line was treated by ATP from the concentration of 2.53 nM–2.53 μM. After incubated for 24 h, the supernatant was detected by BDNF ELISA kit at 1, 2, 4, and 24 h. The result showed that ATP can induce the expression of BDNF with a dose-dependent, and reach a peak level at 4 h, and then decreased at 24 h.