Neuroinflammation after neonatal hypoxia–ischemia is associated with alterations in the purinergic system: adenosine deaminase 1 isoenzyme is the most predominant after insult
详细信息    查看全文
  • 作者:Victor Camera Pimentel ; Maria Beatriz Moretto…
  • 关键词:Hypoxia ischemia ; Cerebral cortex ; Adenosine deaminase ; Isoenzymes ; Adenosine receptors ; Inflammation markers
  • 刊名:Molecular and Cellular Biochemistry
  • 出版年:2015
  • 出版时间:May 2015
  • 年:2015
  • 卷:403
  • 期:1-2
  • 页码:169-177
  • 全文大小:399 KB
  • 参考文献:1. Vannucci, SJ, Hagberg, H (2004) Hypoxia-ischemia in the immature brain. J Exp Biol 207: pp. 3149-3154 CrossRef
    2. Ferriero, DM (2004) Neonatal brain injury. N Engl J Med 351: pp. 1985-1995 CrossRef
    3. Nelson, KB, Lynch, JK (2004) Stroke in newborn infants. Lancet Neurol 3: pp. 150-158 CrossRef
    4. Derrick, M, Drobyshevsky, A, Ji, X, Tan, S (2007) A model of cerebral palsy from fetal hypoxia-ischemia. Stroke 38: pp. 731-735 CrossRef
    5. Berger, R, Garnier, Y (2000) Perinatal brain injury. J Perinat Med 28: pp. 261-285 CrossRef
    6. Moretto, MB, Arteni, NS, Lavinsky, D, Netto, CA, Rocha, JB, Souza, DO, Wofchuk, S (2005) Hypoxic-ischemic insult decreases glutamate uptake by hippocampal slices from neonatal rats: prevention by guanosine. Exp Neurol 195: pp. 400-406 CrossRef
    7. Richardson, PJ, Brown, SJ, Bailyes, EM, Luzio, JP (1987) Ectoenzymes control adenosine modulation of immunoisolated cholinergic synapses. Nature 327: pp. 232-234 CrossRef
    8. Latini, S, Pedata, F (2008) Adenosine in the central nervous system: release mechanisms and extracellular concentrations. J Neurochem 79: pp. 463-484 CrossRef
    9. Dale, N, Frenguelli, BG (2009) Release of adenosine and ATP during ischemia and epilepsy. Curr Neuropharmacol 7: pp. 160-179 CrossRef
    10. Fredholm, BB, Arslan, G, Halldner, L, Kull, B, Schulte, G, Wasserman, W (2000) Structure and function of adenosine receptors and their genes. Naunyn Schmiedebergs Arch Pharmacol 362: pp. 364-374 CrossRef
    11. Abbracchio, MP, Ceruti, S (2007) P1 receptors and cytokine secretion. Purinergic Signal 3: pp. 13-25 CrossRef
    12. Blackburn, MR, Lee, CG, Young, HW, Zhu, Z, Chunn, JL, Kang, MJ, Banerjee, SK, Elias, JA (2003) Adenosine mediates IL-13-induced inflammation and remodeling in the lung and interacts in an IL-13-adenosine amplification pathway. J Clin Invest 112: pp. 332-344 CrossRef
    13. Sharoyan S, Antonyan A, Mardanyan S, Lupidi G, Cristalli G (2006). Influence of dipeptidyl peptidase IV on enzymatic properties of adenosine deaminase. Acta Biochim Pol 53:539-46
    14. Franco, R, Pacheco, R, Gatell, JM, Gallart, T, Lluis, C (2007) Enzymatic and extraenzymatic role of adenosine deaminase 1 in T-cell-dendritic cell contacts and in alterations of the immune function. Crit Rev Immunol 27: pp. 495-509 CrossRef
    15. Saura, CA, Mallol, J, Canela, EI, Lluis, C, Franco, R (1998) Adenosine deaminase and A1 adenosine receptors internalize together following agonist-induced receptor desensitization. J Biol Chem 273: pp. 17610-17617 CrossRef
    16. Herrera, C, Casadó, V, Ciruela, F, Schofield, P, Mallol, J, Lluis, C, Franco, R (2001) Adenosine A2B receptors behave as an alternative anchoring protein for cell surface adenosine deaminase in lymphocytes and cultured cells. Mol Pharmacol 59: pp. 127-134
    17. Xavier, DO, Amaral, LS, Gomes, MA, Rocha, MA, Campos, PR, Cota, BD, Tafuri, LS, Paiva, AM, Silva, JH, Andrade, SP, Belo, AV (2010) Metformin inhibits inflammatory angiogenesis in a murine sponge model. Biomed Pharmacother 64: pp. 220-225 CrossRef
    18. Bradley, PP, Christensen, RD, Rothstein, G (1982) Cellular and extra
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Biochemistry
    Medical Biochemistry
    Oncology
    Cardiology
  • 出版者:Springer Netherlands
  • ISSN:1573-4919
文摘
Hypoxic–ischemic (HI) injury perinatal brain is a major contributor to morbidity and mortality to infants and children. Adenosine may play a role in the pathophysiology of HI, since it modulates the inflammatory process and the release of several neurotransmitters. Thus, the aim of this study was to identify the isoforms of adenosine deaminase (ADA) responsible for the enzymatic activity as well as the adenosine kinase (ADK) and A1 adenosine receptor (A1R) expression in the cerebral cortex eight days after HI. Myeloperoxidase (MPO) and N-acetyl-glucosaminidase (NAG) were assessed as inflammation markers. ADA activity was analyzed, in the presence or absence of a specific ADA1 inhibitor, erythro-9-(2-hydroxy-3-nonyl) adenine. The ADA1 activity (92.6?%) was significantly higher than ADA2 (7.4?%) activity in the cerebral cortex eight days after HI. A1Rs and ADK protein expression showed decreased 8?days after insult. Interestingly, the ADA1, MPO, and NAG activities were correlated positively. In view of this, we conclude that the inhibitor of ADA1, in in vitro conditions, was effective in decreasing the ADA activity, and that mainly ADA1 isoform is responsible for the increase in the ADA activity 8?days after HI insult. Therefore, HI neonatal was able to alter the ADK and A1R expression. Thus, due to the importance of adenosine signaling in the regulation of inflammatory and immune process and the crucial role of ADA in the postischemic homeostase of adenosine as well as during inflammatory process, we suggest that ADA1 inhibitors may play an important role in the regulation of events that follow the HI insult, favoring the increase in the adenosine in the sites of tissue injury. Together, these results highlight a role of the purinergic signaling cascade in the pathophysiology of HI neonatal.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700