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mouse anti dopamine receptor d2  (Santa Cruz Biotechnology)


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    Structured Review

    Santa Cruz Biotechnology mouse anti dopamine receptor d2
    Mouse Anti Dopamine Receptor D2, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 94/100, based on 206 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Average 94 stars, based on 206 article reviews
    mouse anti dopamine receptor d2 - by Bioz Stars, 2026-09
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    Incubation:

    Article Title: Low-level expression of Cmyc in mature neurons: maintaining neuronal function and preventing neurodegeneration
    Article Snippet: After allowing the sections to naturally cool to room temperature, they were blocked with Beyotime sealing fluid (Cat# P0260) at 37°C for 1 hour. .. This was followed by the application of primary antibodies: rabbit anti-tyrosine hydroxylase (TH; 1:1000, Abcam, Cambridge, MA, USA, Cat# ab137869, RRID: AB_2801410), rabbit anti-dopamine transporter (DAT; 1:500, Abcam, Cat# ab184451, RRID: AB_2890225), rabbit anti-dopamine receptor D1 antibody (D1R; 1:500, Abcam, Cat# ab279713), mouse anti-dopamine receptor D2 (D2R; 1:100, Santa Cruz Biotechnology, Dallas, TX, USA, Cat# sc5303, RRID: AB_668816), rabbit anti-Ki67 (1:200, Abcam, Cat# ab16667, RRID: AB_302459), and mouse anti-nitro-a/b-synuclein (1:200, Merck, Darmstadt, Germany, Cat# 36-012, RRID: AB_11212535), and incubation at 4°C overnight. .. The next day, the tissue sections were washed at room temperature, and then incubated with fluorescent secondary antibodies at 37°C for 2 hours: goat pAb to rabbit IgG (Alexa Fluor® 488) (1:1000, Abcam, Cat# ab150077) and goat pAb to Ms IgG (Alexa Fluor 555) (1:1000, Abcam, Cat# ab150114, RRID: AB_2687594), followed by incubation with 4′,6-diamidino-2-phenylindole (1:1000, Beyotime, Cat# c1002).

    Article Title: Knockout of Dopamine D3 Receptor Gene Blocked Methamphetamine-Induced Distinct Changes of Dopaminergic and Glutamatergic Synapse in the Nucleus Accumbens Shell of Mice
    Article Snippet: .. Briefly, the sections were incubated at room temperature for 24 h with a rabbit anti-dopamine receptor D1 (1:50, Abcam, Cat#ab20066, RRID:AB_445306 ), a mouse anti-dopamine receptor D2 (1:100, Santa Cruz Biotechnology, Cat#sc-5303, RRID:AB_668816 ), and a rabbit anti-NR2B (1:50, Abcam, Cat#ab65783, RRID:AB_1658870 ), respectively. .. After washing with TBS, the sections were incubated at 4°C for 24 h with a mixture of 1:100-diluted 1.4 nm gold particle conjugated goat antibody to rabbit IgG or mouse IgG (Nanoprobes, Cat#2001, RRID:AB_2877644 ; Nanoprobes, Cat#2003, RRID:AB_2687591 ).



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    Santa Cruz Biotechnology mouse anti dopamine receptor d2
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    Chronic sleep deprivation increased dopamine <t>D2</t> <t>receptor</t> gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.
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    Chronic sleep deprivation increased dopamine <t>D2</t> <t>receptor</t> gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.
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    Chronic sleep deprivation increased dopamine <t>D2</t> <t>receptor</t> gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.
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    Chronic sleep deprivation increased dopamine <t>D2</t> <t>receptor</t> gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.
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    Chronic sleep deprivation increased dopamine <t>D2</t> <t>receptor</t> gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.
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    Santa Cruz Biotechnology mouse antibody against dopamine d2 receptor
    Fig. 6. Effect of Pb exposure via drinking water on dopamine-related protein expression in the brain of Hfe-mutant mice. Western blot analysis was performed to analyze expression levels of tyrosine hydroxylase (A), dopamine transporter (B), dopamine D1 receptor (C) and dopamine <t>D2</t> <t>receptor</t> (D) in the brain from mice exposed to Pb at 1.6 mg/ml by drinking water (n = 4~8 per group). Open and closed bars represent water and Pb treatment, respectively. All data were presented as mean ± SEM. All the P values were calcu- lated by two-way ANOVA, followed by post-hoc comparisons. WT, wild-type; MUT, Hfe-mutant.
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    Santa Cruz Biotechnology mouse monoclonal anti d2 dopamine receptor d2dr antibody
    Fig. 6. Effect of Pb exposure via drinking water on dopamine-related protein expression in the brain of Hfe-mutant mice. Western blot analysis was performed to analyze expression levels of tyrosine hydroxylase (A), dopamine transporter (B), dopamine D1 receptor (C) and dopamine <t>D2</t> <t>receptor</t> (D) in the brain from mice exposed to Pb at 1.6 mg/ml by drinking water (n = 4~8 per group). Open and closed bars represent water and Pb treatment, respectively. All data were presented as mean ± SEM. All the P values were calcu- lated by two-way ANOVA, followed by post-hoc comparisons. WT, wild-type; MUT, Hfe-mutant.
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    Image Search Results


    Chronic sleep deprivation increased dopamine D2 receptor gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.

    Journal: Theranostics

    Article Title: Dopamine D2 receptor modulating mPFC-BLA circuit contributes to chronic sleep deprivation-induced memory impairment in mice

    doi: 10.7150/thno.114797

    Figure Lengend Snippet: Chronic sleep deprivation increased dopamine D2 receptor gene expression in the mPFC. (A) Experimental design. SD, sleep deprivation; S, sleep. (B) Volcano plot of mPFC gene expression after CSD. padj, adjusted p-value; ns, no significance. (C) Heatmaps showing differentially expressed genes in the Con and CSD groups. Con, the control group; CSD, the chronic sleep deprivation group. (D) Quantification of Drd2 , Npase4 , and Baiap3 gene expression between the two groups. (E) Gene ontology functional analysis diagram for the CSD group. (F) Heatmaps showing the gene expression of GABA receptor subunits ( Gabrs ) in the Con and CSD groups. (G) Heatmaps showing the correlation of Drd2, Npase4, and Gabrs. *p < 0.05. n = 4 mice for each group.

    Article Snippet: Slices were washed three times with PBS, each wash lasting 10 min, then blocked with immunofluorescence blocking solution (P0260, Beyotime Biotechnology Co., Shanghai, China) for 1 h. The blocking solution was washed off with three 10-minute PBS washes and incubated overnight at 4 °C with primary antibodies: mouse anti-Dopamine D2 receptor (1:200; sc-5303, Santa Cruz), rabbit anti-CaMKIIα (1:500; ab5683, Abcam), or guinea pig anti-c-Fos (1:500; 226308, synaptic system).

    Techniques: Gene Expression, Control, Functional Assay

    Fig. 6. Effect of Pb exposure via drinking water on dopamine-related protein expression in the brain of Hfe-mutant mice. Western blot analysis was performed to analyze expression levels of tyrosine hydroxylase (A), dopamine transporter (B), dopamine D1 receptor (C) and dopamine D2 receptor (D) in the brain from mice exposed to Pb at 1.6 mg/ml by drinking water (n = 4~8 per group). Open and closed bars represent water and Pb treatment, respectively. All data were presented as mean ± SEM. All the P values were calcu- lated by two-way ANOVA, followed by post-hoc comparisons. WT, wild-type; MUT, Hfe-mutant.

    Journal: Toxicological Research

    Article Title: Influence of Lead on Repetitive Behavior and Dopamine Metabolism in a Mouse Model of Iron Overload

    doi: 10.5487/tr.2014.30.4.267

    Figure Lengend Snippet: Fig. 6. Effect of Pb exposure via drinking water on dopamine-related protein expression in the brain of Hfe-mutant mice. Western blot analysis was performed to analyze expression levels of tyrosine hydroxylase (A), dopamine transporter (B), dopamine D1 receptor (C) and dopamine D2 receptor (D) in the brain from mice exposed to Pb at 1.6 mg/ml by drinking water (n = 4~8 per group). Open and closed bars represent water and Pb treatment, respectively. All data were presented as mean ± SEM. All the P values were calcu- lated by two-way ANOVA, followed by post-hoc comparisons. WT, wild-type; MUT, Hfe-mutant.

    Article Snippet: The antibodies used were rabbit antibody against dopamine D1 receptor (D1DR, 1:500, Abcam; Cambridge, MA, USA), mouse antibody against dopamine D2 receptor (D2DR, 1 : 100, Santa Cruz Biotech, Dallas, Texas), goat antibody against dopamine transporter (DAT, 1 : 200, Santa Cruz Biotech), mouse antibody against tyrosine hydroxylase (TH, 1 : 200, Santa Cruz Biotech) or rabbit antibody against ferritin (Ftn, 1 : 500, Santa Cruz Biotech).

    Techniques: Expressing, Mutagenesis, Western Blot