Acetylcholinesterase inhibition ameliorates retinal neovascularization and glial activation in oxygen-induced retinopathy
Author:
Corresponding Author:

Jing-Ming Li. Department of Ophthalmology, First Affiliated Hospital of Xi’an Jiaotong University, Xi’an 710061, Shaanxi Province, China. jingming_li@126.com

Fund Project:

Supported by National Natural Science Foundation of China (No.81960177; No.81741058; No.81400427; No.81460163; No.81300786); Grants from Jiangxi Science and Technology Department (No.20192BAB205049; No.20142BDH80005; No.20142BAB215029; No.20132BAB205024); Research Grants from Jiangxi Education Department (No.GJJ14094; No.GJJ13175).

  • Article
  • | |
  • Metrics
  • |
  • Reference [25]
  • |
  • Related [20]
  • | | |
  • Comments
    Abstract:

    AIM: To investigate whether inhibition of acetylcholinesterase (AChE) by donepezil ameliorate aberrant retinal neovascularization (RNV) and abnormal glial activation in oxygen-induced retinopathy (OIR). METHODS: A mouse model of RNV was induced in postnatal day 7 (P7) mice by exposure to 75% oxygen. Donepezil was administrated to P12 mice by intraperitoneal injection. Expression and localization of AChE in mouse retinas were determined by immunofluorescence. RNV was evaluated by paraffin sectioning and hematoxylin and eosin (HE) staining. Activation of retinal Müller glial cells were examined by immunoblot of glial fibrillary acidic protein (GFAP). rMC-1, a retinal Müller cell line, was used for in vitro study. Expression of hypoxia-induced factor 1α (HIF-1α) and vascular endothelial growth factor (VEGF) were determined by Western-blot analysis, enzyme-linked immunosorbent assay (ELISA) or immunostaining. RESULTS: Aberrant RNV and glial activation was observed after OIR. Of note, retinal AChE was mainly expressed by retinal Müller glial cells and markedly increased in OIR mice. Systemic administration of donepezil significantly reduced RNV and abnormal glial activation in mice with OIR. Moreover, ischemia-induced HIF-1α accumulation and VEGF upregulation in OIR mouse retinas and cultured rMC-1 were significantly inhibited by donepezil intervention. CONCLUSION: AchE is implicated in RNV with OIR. Inhibition of AChE by donepeizl is likely to be a potential therapeutic approach for retinal neovascular diseases.

    Reference
    1 Selvam S, Kumar T, Fruttiger M. Retinal vasculature development in health and disease. Prog Retin Eye Res 2018;63:1-19.
    2 Cayabyab R, Ramanathan R. Retinopathy of prematurity: therapeutic strategies based on pathophysiology. Neonatology 2016;109(4):369-376.
    3 VanderVeen DK, Melia M, Yang MB, Hutchinson AK, Wilson LB, Lambert SR. Anti-vascular endothelial growth factor therapy for primary treatment of type 1 retinopathy of prematurity: a report by the American Academy of Ophthalmology. Ophthalmology 2017;124(5):619-633.
    4 Vogel RN, Strampe M, Fagbemi OE, Visotcky A, Tarima S, Carroll J, Costakos DM. Foveal development in infants treated with bevacizumab or laser photocoagulation for retinopathy of prematurity. Ophthalmology 2018;125(3):444-452.
    5 Liang J. Systematic review and meta-analysis of the negative outcomes of retinopathy of prematurity treated with laser photocoagulation. Eur J Ophthalmol 2019;29(2):223-228.
    6 Li XR, Liu J, Hoh J, Liu J. Müller cells in pathological retinal angiogenesis. Transl Res 2019;207:96-106.
    7 de Souza CF, Nivison-Smith L, Christie DL, Polkinghorne P, McGhee C, Kalloniatis M, Acosta ML. Macromolecular markers in normal human retina and applications to human retinal disease. Exp Eye Res 2016;150:135-148.
    8 Le YZ. VEGF production and signaling in Müller glia are critical to modulating vascular function and neuronal integrity in diabetic retinopathy and hypoxic retinal vascular diseases. Vision Res 2017;139:108-114.
    9 Soreq H, Seidman S. Acetylcholinesterase—new roles for an old actor. Nat Rev Neurosci 2001;2(4):294-302.
    10 Paraoanu LE, Layer PG. Acetylcholinesterase in cell adhesion, neurite growth and network formation. FEBS J 2008;275(4):618-624.
    11 Xie J, Jiang H, Wan YH, Du AY, Guo KJ, Liu T, Ye WY, Niu X, Wu J, Dong XQ, Zhang XJ. Induction of a 55 kDa acetylcholinesterase protein during apoptosis and its negative regulation by the Akt pathway. J Mol Cell Biol 2011;3(4):250-259.
    12 Miyazaki R, Ichiki T, Hashimoto T, Ikeda J, Kamiharaguchi A, Narabayashi E, Matsuura H, Takeda K, Sunagawa K. Acetylcholinesterase inhibitors attenuate angiogenesis. Clin Sci 2012;123(4):241-249.
    13 Jia JP, Wei CB, Jia LF, Tang Y, Liang JH, Zhou AH, Li FY, Shi L, Doody RS. Efficacy and safety of donepezil in Chinese patients with severe Alzheimer’s disease: a randomized controlled trial. J Alzheimers Dis 2017;56(4):1495-1504.
    14 Kim HG, Moon M, Choi JG, Park G, Kim AJ, Hur J, Lee KT, Oh MS. donepezil inhibits the amyloid-beta oligomer-induced microglial activation in vitro and in vivo. Neurotoxicology 2014;40:23-32.
    15 Meshorer E, Toiber D, Zurel D, Sahly I, Dori A, Cagnano E, Schreiber L, Grisaru D, Tronche F, Soreq H. Combinatorial complexity of 5’ alternative acetylcholinesterase transcripts and protein products. J Biol Chem 2004;279(28):29740-29751.
    16 Sperling LE, Klaczinski J, Schütz C, Rudolph L, Layer PG. Mouse acetylcholinesterase enhances neurite outgrowth of rat R28 cells through interaction with laminin-1. PLoS One 2012;7(5):e36683.
    17 Leung KW, Xie HQ, Chen VP, Mok MK, Chu GK, Choi RC, Tsim KW. Restricted localization of proline-rich membrane anchor (PRiMA) of globular form acetylcholinesterase at the neuromuscular junctions—contribution and expression from motor neurons. FEBS J 2009;276(11):3031-3042.
    18 Birikh KR, Sklan EH, Shoham S, Soreq H. Interaction of “readthrough” acetylcholinesterase with RACK1 and PKCbeta II correlates with intensified fear-induced conflict behavior. Proc Natl Acad Sci U S A 2003;100(1):283-288.
    19 Park JY, Kang TC. The differential roles of PEA15 phosphorylations in reactive astrogliosis and astroglial apoptosis following status epilepticus. Neurosci Res 2018;137:11-22.
    20 Rodrigues M, Xin XB, Jee K, Babapoor-Farrokhran S, Kashiwabuchi F, Ma T, Bhutto I, Hassan SJ, Daoud Y, Baranano D, Solomon S, Lutty G, Semenza GL, Montaner S, Sodhi A. VEGF secreted by hypoxic Müller cells induces MMP-2 expression and activity in endothelial cells to promote retinal neovascularization in proliferative diabetic retinopathy. Diabetes 2013;62(11):3863-3873.
    21 Lin M, Chen Y, Jin J, Hu Y, Zhou KK, Zhu M, Le YZ, Ge J, Johnson RS, Ma JX. Ischaemia-induced retinal neovascularisation and diabetic retinopathy in mice with conditional knockout of hypoxia-inducible factor-1 in retinal Müller cells. Diabetologia 2011;54(6):1554-1566.
    22 Johnson G, Moore SW. Identification of a structural site on acetylcholinesterase that promotes neurite outgrowth and binds laminin-1 and collagen IV. Biochem Biophys Res Commun 2004;319(2):448-455.
    23 Johnson G, Moore SW. Human acetylcholinesterase binds to mouse laminin-1 and human collagen IV by an electrostatic mechanism at the peripheral anionic site. Neurosci Lett 2003;337(1):37-40.
    24 Biswas S, Bachay G, Chu J, Hunter DD, Brunken WJ. Laminin-dependent interaction between astrocytes and microglia: a role in retinal angiogenesis. Am J Pathol 2017;187(9):2112-2127.
    25 Milner R, Hung S, Wang XY, Berg GI, Spatz M, del Zoppo GJ. Responses of endothelial cell and astrocyte matrix-integrin receptors to ischemia mimic those observed in the neurovascular unit. Stroke 2008;39(1):191-197.
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

Qiu-Ping Liu, Xian Zhang, Ya-Zhou Qin,/et al.Acetylcholinesterase inhibition ameliorates retinal neovascularization and glial activation in oxygen-induced retinopathy. Int J Ophthalmol, 2020,13(9):1361-1367

Copy
Share
Article Metrics
  • Abstract:1083
  • PDF: 685
  • HTML: 0
  • Cited by: 0
Publication History
  • Received:March 06,2020
  • Revised:May 25,2020
  • Online: July 21,2020