Review




Structured Review

Doshisha Corporation nmda receptor blocker cpp
Nmda Receptor Blocker Cpp, supplied by Doshisha Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nmda+receptor+blocker+cpp/nmda+receptor+blocker+cpp/pm24669503-2-166-154
Average 90 stars, based on 1 article reviews
nmda receptor blocker cpp - by Bioz Stars, 2026-09
90/100 stars

Images

Related Articles

other:

Article Title: [Post-training N-methyl-D-aspartate receptor blockade facilitates retention of acquired spatial memory in rats].
Article Snippet: 618–624 N-メチル-d-アスパラギン酸 (N-methyl-d-aspartate) 型グルタミン酸受容体 (以下 NMDA 受容体とする) は,その阻害が記憶の生物学的基盤とされる長期増強 (Long-term potentiation: LTP) の 生 起 を 抑 制 す る (Collingridge, Kehel, & McLennan, 1982)。また,その 拮抗薬の投与は空間記憶の獲得を困難にさせる (Bolhuis & Reid, 1992; Davis, Butcher, & Morris, 1992; Good & Bannerman, 1997; Morris, Anderson, Lynch, & Baudry, 1986; Liang, Hon, Tyan, & Liao, 1994; Riekkinen, Stefanski, Kuitunen, & Riekkinen Jr., 1996; Ward, Mason, & Abraham, 1990; Wozniak, Olney, Kettinger, Price, & Miller, 1990)。 一 方,Villarreal, Do, Haddad, & Derrick (2002)は,NMDA 受容体拮抗薬の投与が海馬で一度 生起した LTP の低下を抑制することを見出した。行 動実験においても,8 方向放射状迷路 (毎試行同じ 4 走路に報酬を置く課題)を用いて空間参照記憶を獲得 し た 後 に NMDA 受 容 体 拮 抗 薬 CPP ((R,S)-3-(2carboxypiperazin-4-yl)propyl-1-phosphonic acid)を 5 日 間に渡って反復的に腹腔内投与したところ,その後の 保持テストでの参照記憶誤反応数(非報酬走路の選択 数)が統制群と比べて少なかったことを報告している。 この結果は,空間参照記憶の獲得後における NMDA 受容体の阻害が保持を向上させることを示唆してい る。ところが,その行動的結果について再現性を確認 した研究は著者の知るところ見られない2。 むしろ,別種の空間参照記憶課題である Morris 型 水迷路の場所課題では,獲得後の NMDA 受容体拮抗 薬投与は保持に影響しないという結果が報告されてい 2 老齢ラットについては,水迷路場所課題の訓練終了後に NMDA 受容体拮抗薬 MK-801 を腹腔内投与することで翌日に行 う保持プローブテストでの成績が向上するという結果が報告さ れている (Norris & Foster, 1999)。 獲得後の NMDA受容体阻害は 空間記憶保持を向上させる 篠原 恵介 1 畑 敏道 同志社大学 Post-training N-methyl-d-aspartate receptor blockade facilitates retention of acquired spatial memory in rats Keisuke Shinohara and Toshimichi Hata (Doshisha University) We investigated the effect of a post-training chronic infusion of N-methyl-d-aspartate (NMDA) receptor blocker on retention of spatial reference memory in rats.



Similar Products

95
Bio-Techne corporation nmda receptor blocker
a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b <t>for</t> <t>AMPA</t> and <t>NMDA</t> receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.
Nmda Receptor Blocker, supplied by Bio-Techne corporation, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nmda+receptor+blocker+cpp/(R)-CPP/pmc08497507-229-45-36
Average 95 stars, based on 1 article reviews
nmda receptor blocker - by Bioz Stars, 2026-09
95/100 stars
  Buy from Supplier

95
Tocris nmda receptor blocker
a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b <t>for</t> <t>AMPA</t> and <t>NMDA</t> receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.
Nmda Receptor Blocker, supplied by Tocris, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nmda+receptor+blocker+cpp/(R)-CPP/pmc08497507-229-45-56
Average 95 stars, based on 1 article reviews
nmda receptor blocker - by Bioz Stars, 2026-09
95/100 stars
  Buy from Supplier

94
Tocris nmda receptor blocker rs
a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b <t>for</t> <t>AMPA</t> and <t>NMDA</t> receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.
Nmda Receptor Blocker Rs, supplied by Tocris, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nmda+receptor+blocker+cpp/(RS)-CPP/pmc04212060-324-27-50
Average 94 stars, based on 1 article reviews
nmda receptor blocker rs - by Bioz Stars, 2026-09
94/100 stars
  Buy from Supplier

90
Doshisha Corporation nmda receptor blocker cpp
a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b <t>for</t> <t>AMPA</t> and <t>NMDA</t> receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.
Nmda Receptor Blocker Cpp, supplied by Doshisha Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/nmda+receptor+blocker+cpp/nmda+receptor+blocker+cpp/pm24669503-2-166-154
Average 90 stars, based on 1 article reviews
nmda receptor blocker cpp - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

Image Search Results


a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b for AMPA and NMDA receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b for AMPA and NMDA receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 µM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 µM NBQX), NMDA receptor blocker (2 µM R-CPP), mGluR2/3 antagonist (1 µM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 µM R59949, MilliporeSigma, St. Louis, MO)

Techniques: Expressing

a Examples of instantaneous firing rate from on-cell recordings before (black) and after (gray) the application of AMPA/NMDA receptor antagonist (gray bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. b Summary of evoked spiking (20 × 100 Hz) and the effect of AMPA/NMDA receptor antagonist (normalized to baseline, mean ± sem, n = 5). c Examples of instantaneous firing rate from on-cell recordings before (black) and after (red) the application of an mGluR1 antagonist (red bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. d Summary of evoked spiking (20 × 100 Hz) and the effect of an mGluR1 antagonist (normalized to baseline, mean±sem, n = 5). e Example of instantaneous firing rate before and after 20 minutes of DGK inhibitor II wash-in. f Summary of half-decay time of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean ± sem, n = 6). g Summary of peak amplitude of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean±sem, n = 6).

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Examples of instantaneous firing rate from on-cell recordings before (black) and after (gray) the application of AMPA/NMDA receptor antagonist (gray bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. b Summary of evoked spiking (20 × 100 Hz) and the effect of AMPA/NMDA receptor antagonist (normalized to baseline, mean ± sem, n = 5). c Examples of instantaneous firing rate from on-cell recordings before (black) and after (red) the application of an mGluR1 antagonist (red bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. d Summary of evoked spiking (20 × 100 Hz) and the effect of an mGluR1 antagonist (normalized to baseline, mean±sem, n = 5). e Example of instantaneous firing rate before and after 20 minutes of DGK inhibitor II wash-in. f Summary of half-decay time of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean ± sem, n = 6). g Summary of peak amplitude of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean±sem, n = 6).

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 µM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 µM NBQX), NMDA receptor blocker (2 µM R-CPP), mGluR2/3 antagonist (1 µM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 µM R59949, MilliporeSigma, St. Louis, MO)

Techniques:

a Sample cell-attached recording (top) instantaneous firing rate (middle) and synaptic current measured with whole-cell voltage clamp (bottom) in a cell with fast response. b Same as in a but for a cell with intermediate speed response. c Same as in a but for a cell with clear biphasic synaptic current (bottom). d Same as in a but for a cell with slow biphasic response. e Same as in a but for a cell with only a pause in firing. f Half-decay times of firing rates vs. half-decay times of currents and linear fit on a log-log plot ( R adj 2 = 0.91, slope = 0.88, intercept = −0.22, n = 17). g Peak firing rate vs. peak current amplitude and linear fit on a log-log plot ( R adj 2 = 0.69, slope = 0.71, intercept = −0.65, n = 17). h Pause duration vs. amplitude of the current at stimulation offset, and linear fit with log 10 response variable (black, R adj 2 = 0.44, slope = 0.01, intercept = −0.42, n = 20). i Heatmap of peak normalized mGluR1-mediated current ( n = 10). j Heatmap of peak normalized mGluR2/3-mediated current ( n = 7). k Average synaptic response before (black), after (red) mGluR1 antagonist, and after AMPA/NMDA receptor antagonist wash-ins (gray). Each trace is an average of 8 trials. l Average synaptic response before (top, black) and after (top, blue) mGluR2/3 antagonist wash-in, and their difference (bottom, black). Each trace is an average of 8 trials.

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Sample cell-attached recording (top) instantaneous firing rate (middle) and synaptic current measured with whole-cell voltage clamp (bottom) in a cell with fast response. b Same as in a but for a cell with intermediate speed response. c Same as in a but for a cell with clear biphasic synaptic current (bottom). d Same as in a but for a cell with slow biphasic response. e Same as in a but for a cell with only a pause in firing. f Half-decay times of firing rates vs. half-decay times of currents and linear fit on a log-log plot ( R adj 2 = 0.91, slope = 0.88, intercept = −0.22, n = 17). g Peak firing rate vs. peak current amplitude and linear fit on a log-log plot ( R adj 2 = 0.69, slope = 0.71, intercept = −0.65, n = 17). h Pause duration vs. amplitude of the current at stimulation offset, and linear fit with log 10 response variable (black, R adj 2 = 0.44, slope = 0.01, intercept = −0.42, n = 20). i Heatmap of peak normalized mGluR1-mediated current ( n = 10). j Heatmap of peak normalized mGluR2/3-mediated current ( n = 7). k Average synaptic response before (black), after (red) mGluR1 antagonist, and after AMPA/NMDA receptor antagonist wash-ins (gray). Each trace is an average of 8 trials. l Average synaptic response before (top, black) and after (top, blue) mGluR2/3 antagonist wash-in, and their difference (bottom, black). Each trace is an average of 8 trials.

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 µM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 µM NBQX), NMDA receptor blocker (2 µM R-CPP), mGluR2/3 antagonist (1 µM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 µM R59949, MilliporeSigma, St. Louis, MO)

Techniques:

a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b for AMPA and NMDA receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Schematics of cerebellar circuit. b UMAP embedding showing normalized expression of gene involved in mGluR1 signaling cascade. c Same as in b for AMPA and NMDA receptors. d Same as in b for genes involved in mGluR2/3 signaling cascade. e Example spiking responses in different UBCs to a burst of MF input (20 stimuli at 100 Hz). f Instantaneous firing rate for the same cells.

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 μM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 μM NBQX), NMDA receptor blocker (2 μM R-CPP), mGluR2/3 antagonist (1 μM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 μM R59949, MilliporeSigma, St. Louis, MO)

Techniques: Expressing

a Examples of instantaneous firing rate from on-cell recordings before (black) and after (gray) the application of AMPA/NMDA receptor antagonist (gray bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. b Summary of evoked spiking (20 × 100 Hz) and the effect of AMPA/NMDA receptor antagonist (normalized to baseline, mean ± sem, n = 5). c Examples of instantaneous firing rate from on-cell recordings before (black) and after (red) the application of an mGluR1 antagonist (red bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. d Summary of evoked spiking (20 × 100 Hz) and the effect of an mGluR1 antagonist (normalized to baseline, mean±sem, n = 5). e Example of instantaneous firing rate before and after 20 minutes of DGK inhibitor II wash-in. f Summary of half-decay time of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean ± sem, n = 6). g Summary of peak amplitude of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean±sem, n = 6).

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Examples of instantaneous firing rate from on-cell recordings before (black) and after (gray) the application of AMPA/NMDA receptor antagonist (gray bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. b Summary of evoked spiking (20 × 100 Hz) and the effect of AMPA/NMDA receptor antagonist (normalized to baseline, mean ± sem, n = 5). c Examples of instantaneous firing rate from on-cell recordings before (black) and after (red) the application of an mGluR1 antagonist (red bar) in a fast (left) and a slow (right) UBC. Each trace is an average of 8 trials. d Summary of evoked spiking (20 × 100 Hz) and the effect of an mGluR1 antagonist (normalized to baseline, mean±sem, n = 5). e Example of instantaneous firing rate before and after 20 minutes of DGK inhibitor II wash-in. f Summary of half-decay time of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean ± sem, n = 6). g Summary of peak amplitude of instantaneous firing rate response with DGK inhibitor II (normalized to baseline, mean±sem, n = 6).

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 μM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 μM NBQX), NMDA receptor blocker (2 μM R-CPP), mGluR2/3 antagonist (1 μM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 μM R59949, MilliporeSigma, St. Louis, MO)

Techniques:

a Sample cell-attached recording (top) instantaneous firing rate (middle) and synaptic current measured with whole-cell voltage clamp (bottom) in a cell with fast response. b Same as in a but for a cell with intermediate speed response. c Same as in a but for a cell with clear biphasic synaptic current (bottom). d Same as in a but for a cell with slow biphasic response. e Same as in a but for a cell with only a pause in firing. f Half-decay times of firing rates vs. half-decay times of currents and linear fit on a log-log plot ( R adj 2 = 0.91, slope = 0.88, intercept = −0.22, n = 17). g Peak firing rate vs. peak current amplitude and linear fit on a log-log plot ( R adj 2 = 0.69, slope = 0.71, intercept = −0.65, n = 17). h Pause duration vs. amplitude of the current at stimulation offset, and linear fit with log 10 response variable (black, R adj 2 = 0.44, slope = 0.01, intercept = −0.42, n = 20). i Heatmap of peak normalized mGluR1-mediated current ( n = 10). j Heatmap of peak normalized mGluR2/3-mediated current ( n = 7). k Average synaptic response before (black), after (red) mGluR1 antagonist, and after AMPA/NMDA receptor antagonist wash-ins (gray). Each trace is an average of 8 trials. l Average synaptic response before (top, black) and after (top, blue) mGluR2/3 antagonist wash-in, and their difference (bottom, black). Each trace is an average of 8 trials.

Journal: Nature Communications

Article Title: Graded heterogeneity of metabotropic signaling underlies a continuum of cell-intrinsic temporal responses in unipolar brush cells

doi: 10.1038/s41467-021-22893-8

Figure Lengend Snippet: a Sample cell-attached recording (top) instantaneous firing rate (middle) and synaptic current measured with whole-cell voltage clamp (bottom) in a cell with fast response. b Same as in a but for a cell with intermediate speed response. c Same as in a but for a cell with clear biphasic synaptic current (bottom). d Same as in a but for a cell with slow biphasic response. e Same as in a but for a cell with only a pause in firing. f Half-decay times of firing rates vs. half-decay times of currents and linear fit on a log-log plot ( R adj 2 = 0.91, slope = 0.88, intercept = −0.22, n = 17). g Peak firing rate vs. peak current amplitude and linear fit on a log-log plot ( R adj 2 = 0.69, slope = 0.71, intercept = −0.65, n = 17). h Pause duration vs. amplitude of the current at stimulation offset, and linear fit with log 10 response variable (black, R adj 2 = 0.44, slope = 0.01, intercept = −0.42, n = 20). i Heatmap of peak normalized mGluR1-mediated current ( n = 10). j Heatmap of peak normalized mGluR2/3-mediated current ( n = 7). k Average synaptic response before (black), after (red) mGluR1 antagonist, and after AMPA/NMDA receptor antagonist wash-ins (gray). Each trace is an average of 8 trials. l Average synaptic response before (top, black) and after (top, blue) mGluR2/3 antagonist wash-in, and their difference (bottom, black). Each trace is an average of 8 trials.

Article Snippet: Sequential drug wash-ins were performed using a computer-controlled solenoid manifold system (ValveLink 8.2, Automate Scientific, Inc., Berkeley, CA) with a flow rate of 1 to 2 mL/min, where indicated, with mGluR1 antagonist (100 μM LY357385, Tocris Bio-Techne, Minneapolis, MN), AMPA receptor blocker (5 μM NBQX), NMDA receptor blocker (2 μM R-CPP), mGluR2/3 antagonist (1 μM LY341495, Tocris Bio-Techne, Minneapolis, MN) and DGK inhibitor II (100 μM R59949, MilliporeSigma, St. Louis, MO)

Techniques: