rabbit anti glun2d Search Results


93
Alomone Labs rabbit anti glun2d
List of antibodies used for immunohistochemistry
Rabbit Anti Glun2d, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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OriGene rabbit anti glun2d
List of antibodies used for immunohistochemistry
Rabbit Anti Glun2d, supplied by OriGene, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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86
Boster Bio rabbit anti nmdar antibodies
List of antibodies used for immunohistochemistry
Rabbit Anti Nmdar Antibodies, supplied by Boster Bio, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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95
Alomone Labs anti-nmdar2b (glun2b) (extracellular) antibody
List of antibodies used for immunohistochemistry
Anti Nmdar2b (Glun2b) (Extracellular) Antibody, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Millipore mouse anti-nmdar2d, unconjugated antibody
Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)
Mouse Anti Nmdar2d, Unconjugated Antibody, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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ImmunoStar inc mouse anti-th
Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)
Mouse Anti Th, supplied by ImmunoStar inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Millipore mouse anti-glun2d
Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)
Mouse Anti Glun2d, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Millipore hrp-conjugated goat anti-rabbit igg
Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)
Hrp Conjugated Goat Anti Rabbit Igg, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Millipore mouse anti- β -actin
siRNA microinjections against NMDARs produce a decrease in GluN1 and Glun2A subunit immunoreactivity in the VM. (a) The inset of the figure shows samples of reactivity obtained for 10 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN1. The bar histogram shows the normalized levels of NMDA GluN1 receptor against control. (b) The inset of the figure shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. (c) The inset shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A and GluN2D. Only Glun2A was detected in our experiment. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. The levels of GluN1 and GluN2A were detected using specific antibodies and normalized to <t>β-actin.</t> Asterisks indicate significant differences (*p<0.001; Student's t-test).
Mouse Anti β Actin, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Millipore mouse anti-glua3
siRNA microinjections against NMDARs produce a decrease in GluN1 and Glun2A subunit immunoreactivity in the VM. (a) The inset of the figure shows samples of reactivity obtained for 10 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN1. The bar histogram shows the normalized levels of NMDA GluN1 receptor against control. (b) The inset of the figure shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. (c) The inset shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A and GluN2D. Only Glun2A was detected in our experiment. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. The levels of GluN1 and GluN2A were detected using specific antibodies and normalized to <t>β-actin.</t> Asterisks indicate significant differences (*p<0.001; Student's t-test).
Mouse Anti Glua3, supplied by Millipore, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Delta Biolabs anti-β-actin
siRNA microinjections against NMDARs produce a decrease in GluN1 and Glun2A subunit immunoreactivity in the VM. (a) The inset of the figure shows samples of reactivity obtained for 10 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN1. The bar histogram shows the normalized levels of NMDA GluN1 receptor against control. (b) The inset of the figure shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. (c) The inset shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A and GluN2D. Only Glun2A was detected in our experiment. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. The levels of GluN1 and GluN2A were detected using specific antibodies and normalized to <t>β-actin.</t> Asterisks indicate significant differences (*p<0.001; Student's t-test).
Anti β Actin, supplied by Delta Biolabs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


List of antibodies used for immunohistochemistry

Journal: Channels

Article Title: Differential expression of GluN2 NMDA receptor subunits in the dorsal horn of male and female rats

doi: 10.1080/19336950.2020.1871205

Figure Lengend Snippet: List of antibodies used for immunohistochemistry

Article Snippet: Rabbit anti-GluN2D , 1:1000 , Alomone Labs , ACG-020.

Techniques:

Immunolabelling of GluN2A, GluN2B and GluN2D subunits in the SDH and DDH of male and female rats. The CGRP+ marginal region of the SDH as well as the remaining DDH was outlined as described in . For immunoreactive quantification in subsequent figures, SDH and DDH staining (per area) were normalized to background (BG) signal in a boxed region of the immuno-negative dorsal column. A, bottom) Representative confocal images (20x objective) illustrating the fluorescence staining patterns for GluN2A (left), GluN2B (middle) and GluN2D (right) in male juvenile rats. Scale bar: 200 μm. A, top) Higher magnification insets illustrating the distribution of immunoreactivity in the marginal SDH for all three GluN2 subtypes. GluN2A immunoreactivity is uniformly distributed across the neuropil of the SDH and DDH laminae, while GluN2B and GluN2D signal is also widespread but with differential expression in SDH versus DDH laminae, with staining of both neuropil and cell bodies. Scale bar: 50 µm. B, bottom) Representative confocal images (20x objective) illustrating the fluorescence staining patterns for GluN2A (left), GluN2B (middle) and GluN2D (right) in female juvenile rats. Scale bar: 200 μm. A, top) Higher magnification insets illustrating the distribution of immunoreactivity in the marginal SDH for all three GluN2 subtypes. GluN2A immunoreactivity is distributed mainly in the neuropil of the SDH and DDH laminae, while GluN2B and GluN2D signal demonstrates staining of both neuropil and cell bodies in the SDH and DDH. Scale bar: 50 µm

Journal: Channels

Article Title: Differential expression of GluN2 NMDA receptor subunits in the dorsal horn of male and female rats

doi: 10.1080/19336950.2020.1871205

Figure Lengend Snippet: Immunolabelling of GluN2A, GluN2B and GluN2D subunits in the SDH and DDH of male and female rats. The CGRP+ marginal region of the SDH as well as the remaining DDH was outlined as described in . For immunoreactive quantification in subsequent figures, SDH and DDH staining (per area) were normalized to background (BG) signal in a boxed region of the immuno-negative dorsal column. A, bottom) Representative confocal images (20x objective) illustrating the fluorescence staining patterns for GluN2A (left), GluN2B (middle) and GluN2D (right) in male juvenile rats. Scale bar: 200 μm. A, top) Higher magnification insets illustrating the distribution of immunoreactivity in the marginal SDH for all three GluN2 subtypes. GluN2A immunoreactivity is uniformly distributed across the neuropil of the SDH and DDH laminae, while GluN2B and GluN2D signal is also widespread but with differential expression in SDH versus DDH laminae, with staining of both neuropil and cell bodies. Scale bar: 50 µm. B, bottom) Representative confocal images (20x objective) illustrating the fluorescence staining patterns for GluN2A (left), GluN2B (middle) and GluN2D (right) in female juvenile rats. Scale bar: 200 μm. A, top) Higher magnification insets illustrating the distribution of immunoreactivity in the marginal SDH for all three GluN2 subtypes. GluN2A immunoreactivity is distributed mainly in the neuropil of the SDH and DDH laminae, while GluN2B and GluN2D signal demonstrates staining of both neuropil and cell bodies in the SDH and DDH. Scale bar: 50 µm

Article Snippet: Rabbit anti-GluN2D , 1:1000 , Alomone Labs , ACG-020.

Techniques: Staining, Fluorescence, Expressing

Relative expression of GluN2A, GluN2B and GluN2D in the SDH versus the DDH of males and female rats. Optical density of a given GluN2 signal per area for the SDH as well as for the DDH was normalized to background optical density per area (see box in ). Average SDH and DDH measures were derived from multiple spinal sections for each animal (shown as individual data points), followed by a paired comparison between the normalized SDH and DDH for each GluN2 subtype. (a) In males, there is significantly higher expression in the SDH (dark blue bars) versus the DDH (light blue bars) for all the three GluN2 subunits, but with more pronounced differential expression for GluN2B (middle) and GluN2D (right). (b) In females, the GluN2B isoform (middle) is the only GluN2 subunit that exhibits significantly greater expression in the SDH (dark purple) versus the DDH (light purple). *p < 0.05

Journal: Channels

Article Title: Differential expression of GluN2 NMDA receptor subunits in the dorsal horn of male and female rats

doi: 10.1080/19336950.2020.1871205

Figure Lengend Snippet: Relative expression of GluN2A, GluN2B and GluN2D in the SDH versus the DDH of males and female rats. Optical density of a given GluN2 signal per area for the SDH as well as for the DDH was normalized to background optical density per area (see box in ). Average SDH and DDH measures were derived from multiple spinal sections for each animal (shown as individual data points), followed by a paired comparison between the normalized SDH and DDH for each GluN2 subtype. (a) In males, there is significantly higher expression in the SDH (dark blue bars) versus the DDH (light blue bars) for all the three GluN2 subunits, but with more pronounced differential expression for GluN2B (middle) and GluN2D (right). (b) In females, the GluN2B isoform (middle) is the only GluN2 subunit that exhibits significantly greater expression in the SDH (dark purple) versus the DDH (light purple). *p < 0.05

Article Snippet: Rabbit anti-GluN2D , 1:1000 , Alomone Labs , ACG-020.

Techniques: Expressing, Derivative Assay

The GluN2B, but not GluN2A or GluN2D, isoform is preferentially expressed in the medial versus the lateral region of the SDH in male rats. (a) Representative confocal images (20x objective) illustrating the immunofluorescence for GluN2A (left), GluN2B (middle), and GluN2D (left). For each isoform, the OD per area was quantified in selected oval regions positioned within the medial, central and lateral regions of the CGRP+ SDH, as shown. There was a visible increase in intensity and distribution of fluorescent puncta in the medial SDH compared to the lateral SDH for GluN2B but not GluN2A or GluN2D. Scale bar: 200 µm. (b) Statistical analysis showing the mean medial vs lateral OD ratio for GluN2A, GluN2B and GluN2D. The medial/lateral OD ratio was significantly higher for GluN2B compared to both GluN2A and GluN2D. *p < 0.05

Journal: Channels

Article Title: Differential expression of GluN2 NMDA receptor subunits in the dorsal horn of male and female rats

doi: 10.1080/19336950.2020.1871205

Figure Lengend Snippet: The GluN2B, but not GluN2A or GluN2D, isoform is preferentially expressed in the medial versus the lateral region of the SDH in male rats. (a) Representative confocal images (20x objective) illustrating the immunofluorescence for GluN2A (left), GluN2B (middle), and GluN2D (left). For each isoform, the OD per area was quantified in selected oval regions positioned within the medial, central and lateral regions of the CGRP+ SDH, as shown. There was a visible increase in intensity and distribution of fluorescent puncta in the medial SDH compared to the lateral SDH for GluN2B but not GluN2A or GluN2D. Scale bar: 200 µm. (b) Statistical analysis showing the mean medial vs lateral OD ratio for GluN2A, GluN2B and GluN2D. The medial/lateral OD ratio was significantly higher for GluN2B compared to both GluN2A and GluN2D. *p < 0.05

Article Snippet: Rabbit anti-GluN2D , 1:1000 , Alomone Labs , ACG-020.

Techniques: Immunofluorescence

Comparison of the medial vs lateral OD ratio of GluN2 subunit isoforms between males and female rats. A, B) Representative confocal images showing GluN2B immunofluorescence in a male (a) and female rat (b), Scale bar: 200 μm, as well as higher magnification insets of the SDH for both male (top left) and female (top right), Scale bar: 50 μm. GluN2B signal is preferentially localized to the medial portion of the SDH in males (a) but not females (b). (c–e) Quantitative statistical analysis of the mean medial vs lateral OD ratio for GluN2A (c), GluN2B (d) and GluN2D (e) in males versus females. The medial/lateral ratio for GluN2B was significantly greater in males compared to females (d), while the medial/lateral ratio was not significantly different between males and females and near values of 1 for both GluN2A (c) and GluN2D (e). *p < 0.05

Journal: Channels

Article Title: Differential expression of GluN2 NMDA receptor subunits in the dorsal horn of male and female rats

doi: 10.1080/19336950.2020.1871205

Figure Lengend Snippet: Comparison of the medial vs lateral OD ratio of GluN2 subunit isoforms between males and female rats. A, B) Representative confocal images showing GluN2B immunofluorescence in a male (a) and female rat (b), Scale bar: 200 μm, as well as higher magnification insets of the SDH for both male (top left) and female (top right), Scale bar: 50 μm. GluN2B signal is preferentially localized to the medial portion of the SDH in males (a) but not females (b). (c–e) Quantitative statistical analysis of the mean medial vs lateral OD ratio for GluN2A (c), GluN2B (d) and GluN2D (e) in males versus females. The medial/lateral ratio for GluN2B was significantly greater in males compared to females (d), while the medial/lateral ratio was not significantly different between males and females and near values of 1 for both GluN2A (c) and GluN2D (e). *p < 0.05

Article Snippet: Rabbit anti-GluN2D , 1:1000 , Alomone Labs , ACG-020.

Techniques: Immunofluorescence

Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)

Journal: Journal of neuroscience research

Article Title: NMDA Receptor Blockade Ameliorates Abnormalities of Spike Firing of Subthalamic Nucleus Neurons in a Parkinsonian Non-Human Primate

doi: 10.1002/jnr.24230

Figure Lengend Snippet: Detailed information for each antibody used (human: h, mouse: m, rat: r, bovine: b, and monkey: mk, RRID: Research Resource Identification)

Article Snippet: GluN2D , AB_838227 , Mouse Anti-NMDAR2D, Unconjugated antibody , NMDAR2D h, m, r , Millipore Cat# MAB5578, RRID:AB_838227 , monoclonal antibody , mouse.

Techniques:

siRNA microinjections against NMDARs produce a decrease in GluN1 and Glun2A subunit immunoreactivity in the VM. (a) The inset of the figure shows samples of reactivity obtained for 10 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN1. The bar histogram shows the normalized levels of NMDA GluN1 receptor against control. (b) The inset of the figure shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. (c) The inset shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A and GluN2D. Only Glun2A was detected in our experiment. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. The levels of GluN1 and GluN2A were detected using specific antibodies and normalized to β-actin. Asterisks indicate significant differences (*p<0.001; Student's t-test).

Journal: Neuropsychopharmacology

Article Title: Reduction in Ventral Midbrain NMDA Receptors Reveals Two Opposite Modulatory Roles for Glutamate on Reward

doi: 10.1038/npp.2015.14

Figure Lengend Snippet: siRNA microinjections against NMDARs produce a decrease in GluN1 and Glun2A subunit immunoreactivity in the VM. (a) The inset of the figure shows samples of reactivity obtained for 10 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN1. The bar histogram shows the normalized levels of NMDA GluN1 receptor against control. (b) The inset of the figure shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. (c) The inset shows samples of reactivity obtained for 20 μg of VM homogenate from those rats treated with the control scramble siRNA, or against GluN2A and GluN2D. Only Glun2A was detected in our experiment. The bar histogram shows the normalized levels of NMDA GluN2A receptor against control. The levels of GluN1 and GluN2A were detected using specific antibodies and normalized to β-actin. Asterisks indicate significant differences (*p<0.001; Student's t-test).

Article Snippet: The membranes were blocked for 1 h in TBST with 5% dry milk and were incubated with mouse anti- β -actin (Millipore) at 1 : 10000 with either rabbit anti-GluN1 (Novus Biological) at 1 : 500, anti-GluN2A (Cayman) at 1 : 1000, anti-Glun2B (Novus Biological) at 1 : 1000, or anti-GluN2D (Santa Cruz Biotechnology) at 1 : 100 overnight at 4 °C.

Techniques: Control