synaptic nmda receptors (Tocris)
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Synaptic Nmda Receptors, supplied by Tocris, used in various techniques. Bioz Stars score: 96/100, based on 2070 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 96 stars, based on 2070 article reviews
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1) Product Images from "Nuclear translocation of jacob in hippocampal neurons after stimuli inducing long-term potentiation but not long-term depression."
Article Title: Nuclear translocation of jacob in hippocampal neurons after stimuli inducing long-term potentiation but not long-term depression.
Journal: PloS one
doi: 10.1371/journal.pone.0017276
Figure Legend Snippet: Figure 6. Jacob translocates to the nucleus after induction of chemical LTP but not chemical LTD in adult primary hippocampal neurons. 10 minutes prior to stimulation the Neurobasal medium was replaced by magnesium free buffer solution containing TTX, strychnine and bicuculline. 200 mM glycine or co-application of 20 mM glycine and 20 mM NMDA were applied to modulate synaptic transmission; known to induce chemical LTP or chemical LTD, respectively. Five minutes after stimulation the conditioning medium was replaced and cells further incubated for additional 25 minutes and then fixed. A,C,E) Representative anti-Jacob and DAPI fluorescence images of 16, 18 and 23 DIV cultures for control, chemical LTP and chemical LTD, respectively, are shown. B, D, F) The diagrams summarize the relative deviation of nuclear Jacob fluorescence under different experimental conditions. Independent from the age of culture, chemical LTP induction induced a significant accumulation of Jacob, but induction of chemical LTD did not change Jacob immunosignal under all tested conditions. Statistical significance was determined by ANOVA with Bonferroni post-hoc t-test. *p,0.05. Scale bar is 5 mm. doi:10.1371/journal.pone.0017276.g006
Techniques Used: Transmission Assay, Incubation, Fluorescence, Control
Figure Legend Snippet: Figure 8. Nuclear Jacob immunoreactivity at different culture ages following synaptic or extrasynaptic NMDA receptor activation. A1–A3 and C1–C3) Representative fluorescence images for anti-Jacob and DAPI stained hippocampal primary neurons at 9, 16 and 23 DIV. Cultures were stimulated with protocols activating synaptic (bicuculline, 4-AP) and extrasynaptic NMDA receptors (bicuculline, 4-AP, MK801; followed by 100 mM NMDA). Note the age dependent increase in Jacob nuclear immunoreactivity at basal conditions. Synaptic stimulation induced a Jacob translocation in cultures at DIV 9 (A1 and B1) but not after extrasynaptic stimulation (C1 and D1). B1–B3) The efficiency of synaptic stimulation on nuclear Jacob immunosignals decreased with culture age. D1–D3) At DIV 23 extrasynaptic NMDA receptor stimulation increased nuclear Jacob signal. E) TTX treatment for 2 hrs significantly reduced nuclear Jacob. **p,0.01 ***p,0.001. Scale bars are 10 mm. doi:10.1371/journal.pone.0017276.g008
Techniques Used: Activation Assay, Fluorescence, Staining, Translocation Assay
Figure Legend Snippet: Figure 9. NMDA dose-dependent increase in Jacob nuclear immunoreactivity of primary hippocampal neurons. Hippocampal primary neurons were maintained in 1 ml of neurobasal medium (NB). 12–16 hours prior stimulation the volume of NB medium was increased to 1.6 ml. Then 800 ml of conditioned NB medium was removed and NMDA applied. Five minutes later the NMDA-NB medium was replaced with the 800 ml conditioned NB medium and 25 minutes later the neurons were fixed. A) The diagram summarizes normalized nuclear Jacob immunofluorescence at DIV 18 after bath application of 20 mM or 50 mM NMDA. B) The bar diagram indicates the gain in the nuclear fluorescence signal after treatment with 20 mM or 50 mM NMDA in comparison to drug free conditions. Note the increased nuclear accumulation of Jacob at DIV 18. C) Representative images of Jacob nuclear immunoreactivity and DAPI staining in hippocampal primary neurons at DIV 23 under control, 20 mM and 50 mM NMDA conditions, respectively. ***p,0.001, **p,0.01. Scale bar is 10 mm. doi:10.1371/journal.pone.0017276.g009
Techniques Used: Immunofluorescence, Fluorescence, Comparison, Staining, Control