Page 22 - 74_03
P. 22

J. A. RIBEIRO                AN. R. ACAD. NAC. FARM.

               BIBLIOGRAPHY

 (1)  ALMEIDA, C. G.; DE MENDONÇA, A.; CUNHA, R. A. & RIBEIRO, J. A. (2003):
 (2)  Adenosine promotes neuronal recovery from reactive oxygen species induced
      lesion in rat hippocampal slices. Neurosci. Lets. 339: 127-130.
 (3)  BIBER, K.; PINTO-DUARTE, A.; WITTENDORP, M. C.; DOLGA, A. M.; FERNANDES, C. C.;
      KUNZEL, J. V. F. D.; KEIJSER, J. N.; DEVRIES, R.; IJZERMAN, A. P.; RIBEIRO, J. A.;
 (4)  EISEL, U.; SEBASTIÃO, A. M. and BODDEKE, G. M. (2008): Interleukin-6 upregulates
 (5)  neuronal adenosine A1 receptors: implications for neuromodulation and
      neuroprotection. Neuropsychopharmacology advance online publication 7
 (6)  November 2007; doi: 10.1038/sj.npp.1301612.
 (7)  BLAHA, G. R.; RAGHUPATHI, R.; SAATMAN, K. E. & MCINTOSH, T. K. (2000): Brain-
      derived neurotrophic factor administration after traumatic brain injury in
 (8)  the rat does not protect against behavioral or histological deficits.
      Neuroscience. 99: 483-493.
 (9)  BOULANGER, L. & POO, M. M. (1999): Presynaptic depolarization facilitates
(10)  neurotrophin-induced synaptic potentiation. Nat Neurosci. 4: 346-351.
      CANAS, N.; PEREIRA, I. T.; RIBEIRO, J. A. & SEBASTIÃO, A. M. (2004): Brain-
(11)  derived neurotrophic factor facilitates glutamate and inhibits GABA release
(12)  from hippocampal synaptosomes through different mechanisms. Brain Res.
(13)  1016: 72-78.
      CHAO, M. V. (2003): Neurotrophins and their receptors: a convergence point
      for many signalling pathways. Nat Rev Neurosci. 4: 299-309.
      CORREIA-DE-SÁ, P.; TIMÓTEO, M. A. & RIBEIRO, J. A. (1996): Presynaptic A1-
      inhibitory/A2a-facilitatory adenosine receptor activation balance depends on
      motor nerve stimulation paradigm at the rat hemidiaphragm. J. Neurophysiol.
      76: 3910-3919.
      DELICADO, E. G.; RODRIGUES, A.; SEN, R. P.; SEBASTIÃO, A. M.; RIBEIRO, J. A.
      & MIRAS-PORTUGAL, M. T. (1990): Effect of N- ethylcarboxamidoadenosine
      (NECA) on adenosine transport in cultured chromaffin cells. J. Neurochem.
      54: 1941-1946.
      DIÓGENES, M. J.; FERNANDES, C. C.; SEBASTIÃO, A. M. & RIBEIRO, J. A. (2004):
      Activation of adenosine A2A receptor facilitates BDNF modulation of synaptic
      transmission in hippocampal slices. J. Neurosci. 24: 2905-2913.
      DIÓGENES, M. J.; ASSAIFE-LOPES, N.; PINTO-DUARTE. A,; RIBEIRO, J. A. & SEBASTIÃO,
      A. M. (2007): Influence of age on BDNF modulation of hippocampal synaptic
      transmission: interplay with adenosine A2A receptors. Hippocampus. 17: 577-
      585.
      ENGLER, R. L. (1991): Adenosine. The signal of life? Circulation. 84: 951-954.
      GINSBORG, B. L. & HIRST, G. D. (1971): Cyclic AMP, transmitter release and
      the effect of adenosine on neuromuscular transmission. Nat. New Biol. 232:
      63-64.
      GINSBORG, B. L. & HIRST, G. D. (1972): The effect of adenosine on the release
      of the transmitter from the phrenic nerve of the rat. J. Physiol. 224: 629-645.

406
   17   18   19   20   21   22   23   24   25   26   27