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Biomedical Chemistry: Current Trends and Developments
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Lee, K. Y., & Chung, H. J. (2014). NMDA receptors and L-type voltage-gated Ca(2)(+) channels mediate the expression of bidirectional homeostatic intrinsic plasticity in cultured hippocampal neurons. Neuroscience, 277, 610-623. Li, S., Hong, S., Shepardson, N. E., (2009). Soluble oligomers of amyloid Beta protein facilitate hippocampal long-term depression by disrupting neuronal glutamate uptake. Neuron, 62, 788-801. Lipton, S. A. (2006). Paradigm shift in neuroprotection by NMDA receptor blockade: memantine and beyond. Nature Reviews Drug Discovery, 5, 160-170. Lisman, J., Yasuda, R., & Raghavachari, S. (2012). Mechanisms of CaMKII action in long-term potentiation. Nature Reviews Neuroscience, 13, 169-182. McDermott, C. M., LaHoste, G. J., Chen, C., (2003). Sleep deprivation causes behavioral, synaptic, and membrane excitability alterations in hippocampal neurons. Journal of Neurosciences, 23, 9687-9695. Meissner, W. G., Frasier, M., Gasser, T., (2011). Priorities in Parkinson’s disease research. Nature Reviews Drug Discovery, 10, 377-393. Meyer, D. K., Lindemeyer, A. K., Wilmes, T., (2012). GluA and GluN receptors regulate the surface density of GluN receptor subunits in cultured neocortical interneurons. Journal of Neurochemistry, 121, 597-606. Milnerwood, A. J., Gladding, C. M., Pouladi, M. A., (2010). Early increase in extrasynaptic NMDA receptor signaling and expression contributes to phenotype onset in Huntington’s disease mice. Neuron, 65, 178-190. Mony, L., Kew, J. N., Gunthorpe, M. J., (2009). Allosteric modulators of NR2B-containing NMDA receptors: molecular mechanisms and therapeutic potential. British Journal of Pharmacology, 157, 1301-1317. Moore, L. E., & Buchanan, J. T. (1993). The effects of neurotransmitters on the integrative properties of spinal neurons in the lamprey. Journal of Experimental Biology, 175, 89-114. Okamoto, S. I., Pouladi, M. A., Talantova, M., (2009). Balance between synaptic versus extrasynaptic NMDA receptor activity influences inclusions and neurotoxicity of mutant huntingtin. Nature Medicine, 15, 1407-U1408. Renton, A. E., Chio, A., & Traynor, B. J. (2014). State of play in amyotrophic lateral sclerosis genetics. Nature Neuroscience, 17, 17-23. Ribrault, C., Sekimoto, K., & Triller, A. (2011). From the stochasticity of molecular processes to the variability of synaptic transmission. Nature Reviews Neroscience, 12, 375-387. Suhs, K. W., Fairless, R., Williams, S. K., (2014). N-methyl-D-aspartate receptor blockade is neuroprotective in experimental autoimmune optic neuritis. Journal of Neuropathology & Experimental Neurology, 73, 507-518. Szabo, A., Somogyi, J., Cauli, B., (2012). Calcium-permeable AMPA receptors provide a common mechanism for LTP in glutamatergic synapses of distinct hippocampal interneuron types. Journal of Neuroscience, 32, 6511-6516. Szydlowska, K., & Tymianski, M. (2010). Calcium, ischemia and excitotoxicity. Cell Calcium, 47, 122-129. Thalhammer, A., & Cingolani, L. A. (2014). Cell adhesion and homeostatic synaptic plasticity. Neuropharmacology, 78, 23-30. Turner, M. R., Hardiman, O., Benatar, M., (2013). Controversies and priorities in amyotrophic
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Biomedical Chemistry: Current Trends and Developments
Title
Biomedical Chemistry: Current Trends and Developments
Author
Nuno Vale
Publisher
De Gruyter Open Ltd
Date
2016
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-11-046887-8
Size
21.0 x 29.7 cm
Pages
427
Keywords
Physical Sciences, Engineering and Technology, Chemistry, Organic Chemistry, Green Chemistry
Categories
Naturwissenschaften Chemie
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Biomedical Chemistry: Current Trends and Developments