4.5 Article

13-Desmethyl spirolide-C is neuroprotective and reduces intracellular Aβ and hyperphosphorylated tau in vitro

Journal

NEUROCHEMISTRY INTERNATIONAL
Volume 59, Issue 7, Pages 1056-1065

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuint.2011.08.013

Keywords

Alzheimer disease; Spirolides; Amyloid-beta; Tau protein; Acetylcholine

Funding

  1. FEDER [SAF2009-12581, AGL2009-13581-CO2-01, TRA2009-0189, AGL2010-17875]
  2. Xunta de Galicia, Spain [GRC 2010/10, PGIDT07CSA012261PR]
  3. PGDIT [07MMA006261PR]
  4. PGIDIT (INCITE) [09MMA003261PR, 2009/XA044, 2009/053]
  5. Consell. Educacion [2008/CP389]
  6. EPITOX, Consell. Innovacion e Industria [10PXIB261254 PR]
  7. EU [211326 - CP]
  8. Atlantic Area Programme (Interreg IVB Trans-national) [2008-1/003, 2009-1/117]
  9. Ministerio de Sanidad y Consumo, Spain
  10. [265896 BAMMBO]
  11. [265409 muAQUA]
  12. [262649 BEADS]

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Spirolides are marine compounds of the cyclic imine group. Although the mechanism of action is not fully elucidated yet, cholinergic (muscarinic and nicotinic) receptors have been proposed as the main targets of these toxins. In this study we examined the effect of 13-desmethyl spirolide-C (SPX) on amyloid-beta (An) accumulation and tau hyperphosphorylation in a neuronal model from triple transgenic mice (3xTg) for Alzheimer disease (AD). In vitro treatment of 3xTg cortical neurons with SPX reduced intracellular All accumulation and the levels of phosphorylated tau. SPX treatment did not affect the steady-state levels of neither the M1 and M2 muscarinic nor the alpha 7 nicotinic acetylcholine receptors (AChRs), while it decreased the amplitude of acetylcholine-evoked responses and increased ACh (acetylcholine) levels in 3xTg neurons. Additionally. SPX treatment decreased the levels of two protein kinases involved in tau phosphorylation, glycogen synthase kinase 3 beta (GSK-3 beta) and extracellular-regulated kinase (ERK). Also SPX abolished the glutamate-induced neurotoxicity in both control and 3xTg neurons. The results presented here constitute the first report indicating that exposure of 3xTg neurons to nontoxic concentrations of SPX produces a simultaneous reduction in the main pathological characteristics of AD. In spite of the few reports analyzing the mode of action of the toxin we suggest that SPX could ameliorate AD pathology increasing the intracellular ACh levels and simultaneously diminishing the levels of kinases involved in tau phosphorylation. (C) 2011 Elsevier B.V. All rights reserved.

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