题名

Network based analysis of microarray gene expression profiles in response to electroacupuncture

DOI

10.1016/j.jtcme.2019.09.001

作者

Afsaneh Mohammadnejad;Shuxia Li;Hongmei Duan;Qihua Tan

关键词

WGCNA ; Electroacupuncture ; Gene expression profiling ; Hub genes ; Analgesia

期刊名称

Journal of Traditional and Complementary Medicine

卷期/出版年月

10卷5期(2020 / 09 / 01)

页次

471 - 477

内容语文

英文

中文摘要

Electroacupuncture (EA) has been extensively considered as a tool for treating diseases and relieving various pains. However, understanding the molecular mechanisms underlying its effect is of high importance. In this study, we performed a weighted gene co-expression network analysis (WGCNA) on data collected from a microarray experiment to investigate the relationship underlying EA within three factors, time, frequency and tissue regions (periaqueductal grey (PAG) and spinal dorsal horn (DH)) as well as the biological implication of gene expression changes. Gene expression on rats in PAG-DH regions induced by EA with 2 Hz and 100 Hz at l h and 24 h were measured using microarray technology. The WGCNA was performed to identify distinct network modules related to EA effects. To find the biological function of genes and pathways, the gene ontology (GO) Consortium was applied and the gene-gene interaction network of top genes in important modules was visualized. We identified one network module (466 genes) which is significantly associated with time, another module (402 genes) significantly related to frequency, and three modules each consisting of 1144, 402 and 3148 genes that are significantly associated with tissue regions. Furthermore, meaningful biological pathways were enriched in association with each of the experimental factors during EA stimulation. Our analysis showed the robustness of WGCNA and revealed important genes within specific modules and pathways which might be activated in response to EA analgesia. The findings may help to clarify the underlying mechanisms of EA and provide references for future verification of this study.

主题分类 醫藥衛生 > 中醫藥學
参考文献
  1. Albert, R(2005).Scale-free networks in cell biology.J Cell Sci,118(Pt 21),4947-4957.
  2. Arankalle, DV,Nair, PM(2013).Effect of electroacupuncture on function and quality of life in Parkinson's disease: a case report.Acupunct Med,31(2),235-238.
  3. Ashburner, M,Ball, CA,Blake, JA(2000).Gene ontology: tool for the unification of biology.The Gene Ontology Consortium. Nat Genet,25(1),25-29.
  4. Barabasi, AL,Bonabeau, E(2003).Scale-free networks.Sci Am,288(5),60-69.
  5. Firouzjaei, A,Li, GC,Wang, N(2016).Comparative evaluation of the therapeutic effect of metformin monotherapy with metformin and acupuncture combined therapy on weight loss and insulin sensitivity in diabetic patients.Nutr Diabetes,6,e209.
  6. Fu, SP,Hong, H,Lu, SF(2017).Genome-wide regulation of electro-acupuncture on the neural Stat5-loss-induced obese mice.PLoS One,12(8),e0181948.
  7. Fuller, TF,Ghazalpour, A,Aten, JE(2007).Weighted gene coexpression network analysis strategies applied to mouse weight.Mammalian genome. Mamm Genome,18(6-7),463-472.
  8. Ghazalpour, A,Doss, S,Zhang, B(2006).Integrating genetic and network analysis to characterize genes related to mouse weight.PLoS Genet,2(8),e130.
  9. Han, JS(2003).Acupuncture: neuropeptide release produced by electrical stimulation of different frequencies.Trends Neurosci,26(1),17-22.
  10. Hao, JJ,Hao, LL(2012).Review of clinical applications of scalp acupuncture for paralysis: an excerpt from Chinese scalp acupuncture.Glob Adv Health Med,1(1),102-121.
  11. Hu, Z,Chang, YC,Wang, Y(2013).VisANT 4.0: integrative network platform to connect genes, drugs, diseases and therapies.Nucleic Acids Res.,41,W225-W231.
  12. Jiang, JH,Yang, EJ,Baek, MG(2011).Anti-inflammatory effects of electro-acupuncture in the respiratory system of a symptomatic amyotrophic lateral sclerosis animal model.Neurodegener Dis.,8(6),504-514.
  13. Langfelder, P,Horvath, S(2008).WGCNA: an R package for weighted correlation network analysis.BMC Bioinf,9,559.
  14. Liu, X,He, JF,Qu, YT(2016).Electroacupuncture improves insulin resistance by reducing neuroprotein Y/Agouti-Related protein levels and inhibiting expression of protein tyrosine phosphatase 1B in diet-induced obese rats.J Acupunct Meridian Stud,9(2),58-64.
  15. Ravasz, E,Somera, AL,Mongru, DA(2002).Hierarchical organization of modularity in metabolic networks.Science,297(5586),1551-1555.
  16. Sudhakaran, P(2017).Amyotrophic lateral sclerosis: an acupuncture approach.Med Acupunct,29(5),260-268.
  17. Wang, F,Sun, L,Zhang, XZ(2015).Effect and potential mechanism of electro-acupuncture add-on treatment in patients with Parkinson's disease.Evid Based Complement Alternat Med,2015,692795.
  18. Wang, K,Xiang, XH,Qiao, N(2014).Genomewide analysis of rat periaqueductal gray-dorsal horn reveals time-, region- and frequency-specific mRNA expression changes in response to electroacupuncture stimulation.Sci Rep,4,6713.
  19. Wang, K,Zhang, R,Xiang, X(2012).Differences in neural-immune gene expression response in rat spinal dorsal horn correlates with variations in electro-acupuncture analgesia.PLoS One,7(8),e42331.
  20. Worthington, JJ,Fenton, TM,Czajkowska, BI(2012).Regulation of TGFbeta in the immune system: an emerging role for integrins and dendritic cells.Immunobiology,217(12),1259-1265.
  21. Yang, EJ,Jiang, JH,Lee, SM(2010).Electroacupuncture reduces neuroinflammatory responses in symptomatic amyotrophic lateral sclerosis model.J Neuroimmunol,223(1-2),84-91.
  22. Yip, AM,Horvath, S(2007).Gene network interconnectedness and the generalized topological overlap measure.BMC Bioinf,8,22.
  23. Zhang, B,Horvath, S(2005).A general framework for weighted gene co-expression network analysis.Stat Appl Genet Mol Biol,4,Article17.
  24. Zhang, YM,Xu, H,Sun, H(2014).Electroacupuncture treatment improves neurological function associated with regulation of tight junction proteins in rats with cerebral ischemia reperfusion injury.Evid Based Complement Alternat Med,2014,989340.
被引用次数
  1. (2024).Electroacupuncture improves articular microcirculation and attenuates cartilage hypoxia in a male rabbit model of knee osteoarthritis.Journal of Traditional and Complementary Medicine,14(4),414-423.