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Citation: J. Karle et M. Nielsen, Targeting brain GABA(A) receptors with antisense oligonucleotides: Implications for epilepsy, METH ENZYM, 314, 2000, pp. 20-32
Citation: Km. Standifer, Reduction of neurotransmitter receptor and G-protein expression in vivo and in vitro by antisense oligodeoxynucleotide treatment, METH ENZYM, 314, 2000, pp. 90-103
Citation: D. Vishnuvardhan et Mc. Beinfeld, Use of expression of antisense mRNA for proprotein convertases 1 and 2 in prohormone processing, METH ENZYM, 314, 2000, pp. 103-117
Authors:
Broaddus, WC
Prahbu, SS
Wu-Pong, S
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Citation: Wc. Broaddus et al., Strategies for the design and delivery of antisense oligonucleotides in central nervous system, METH ENZYM, 314, 2000, pp. 121-135
Authors:
Buckley, NJ
Abogadie, FC
Brown, DA
Dayrell, M
Caulfield, MP
Delmas, P
Haley, JE
Citation: Nj. Buckley et al., Use of antisense expression plasmids to attenuate G-protein expression in primary neurons, METH ENZYM, 314, 2000, pp. 136-148
Citation: Ps. Kalra et al., Effects of centrally administered antisense oligodeoxynucleotides on feeding behavior and hormone secretion, METH ENZYM, 314, 2000, pp. 184-200
Citation: J. Lai et al., Blockade of neuropathic pain by antisense targeting of tetrodotoxin-resistant sodium channels in sensory neurons, METH ENZYM, 314, 2000, pp. 201-213
Citation: Id. Neumann et N. Toschi, Sequence design and practical implementation of antisense oligonucleotidesin neuroendocrinology, METH ENZYM, 314, 2000, pp. 223-238
Authors:
Bost, F
McKay, R
Dean, NM
Potapova, O
Mercola, D
Citation: F. Bost et al., Antisense methods for discrimination of phenotypic properties of closely related gene products: Jun kinase family, METH ENZYM, 314, 2000, pp. 342-362
Citation: Cl. Cioffi et Bp. Monia, Evaluation of biological role of c-Jun N-terminal kinase using an antisense approach, METH ENZYM, 314, 2000, pp. 363-378