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mglur3 glutamate receptor  (Alomone Labs)


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    Structured Review

    Alomone Labs mglur3 glutamate receptor
    The white dashed lines in all panels mark the cortex-striatum boundary. a Glutamate (Glu) and DAPI staining. The white arrows highlight Glu-positive signals in the striatum, presenting an increase after MPTP administration. b Glu receptor <t>(mGluR3)</t> and DAPI staining. c Glu and mGluR3 receptor staining. The yellow arrows indicate double-stained areas in the striatum, demonstrating enhanced expression in the MPTP-treated mouse. d GFAP and DAPI staining, with an increased GFAP signal in the MPTP group, reflecting higher astrocytic activation (with DAPI providing background cell body visualization). e A merged image combining the signals from ( a , b , d ). f Coomassie blue staining. The increased staining intensity in the MPTP-treated brain suggests an increase in total protein content.
    Mglur3 Glutamate Receptor, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 94/100, based on 3 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/mglur3 glutamate receptor/product/Alomone Labs
    Average 94 stars, based on 3 article reviews
    mglur3 glutamate receptor - by Bioz Stars, 2026-02
    94/100 stars

    Images

    1) Product Images from "Quantitative multi-metabolite imaging of Parkinson’s disease using AI boosted molecular MRI"

    Article Title: Quantitative multi-metabolite imaging of Parkinson’s disease using AI boosted molecular MRI

    Journal: npj Imaging

    doi: 10.1038/s44303-025-00130-x

    The white dashed lines in all panels mark the cortex-striatum boundary. a Glutamate (Glu) and DAPI staining. The white arrows highlight Glu-positive signals in the striatum, presenting an increase after MPTP administration. b Glu receptor (mGluR3) and DAPI staining. c Glu and mGluR3 receptor staining. The yellow arrows indicate double-stained areas in the striatum, demonstrating enhanced expression in the MPTP-treated mouse. d GFAP and DAPI staining, with an increased GFAP signal in the MPTP group, reflecting higher astrocytic activation (with DAPI providing background cell body visualization). e A merged image combining the signals from ( a , b , d ). f Coomassie blue staining. The increased staining intensity in the MPTP-treated brain suggests an increase in total protein content.
    Figure Legend Snippet: The white dashed lines in all panels mark the cortex-striatum boundary. a Glutamate (Glu) and DAPI staining. The white arrows highlight Glu-positive signals in the striatum, presenting an increase after MPTP administration. b Glu receptor (mGluR3) and DAPI staining. c Glu and mGluR3 receptor staining. The yellow arrows indicate double-stained areas in the striatum, demonstrating enhanced expression in the MPTP-treated mouse. d GFAP and DAPI staining, with an increased GFAP signal in the MPTP group, reflecting higher astrocytic activation (with DAPI providing background cell body visualization). e A merged image combining the signals from ( a , b , d ). f Coomassie blue staining. The increased staining intensity in the MPTP-treated brain suggests an increase in total protein content.

    Techniques Used: Staining, Expressing, Activation Assay



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    Image Search Results


    The white dashed lines in all panels mark the cortex-striatum boundary. a Glutamate (Glu) and DAPI staining. The white arrows highlight Glu-positive signals in the striatum, presenting an increase after MPTP administration. b Glu receptor (mGluR3) and DAPI staining. c Glu and mGluR3 receptor staining. The yellow arrows indicate double-stained areas in the striatum, demonstrating enhanced expression in the MPTP-treated mouse. d GFAP and DAPI staining, with an increased GFAP signal in the MPTP group, reflecting higher astrocytic activation (with DAPI providing background cell body visualization). e A merged image combining the signals from ( a , b , d ). f Coomassie blue staining. The increased staining intensity in the MPTP-treated brain suggests an increase in total protein content.

    Journal: npj Imaging

    Article Title: Quantitative multi-metabolite imaging of Parkinson’s disease using AI boosted molecular MRI

    doi: 10.1038/s44303-025-00130-x

    Figure Lengend Snippet: The white dashed lines in all panels mark the cortex-striatum boundary. a Glutamate (Glu) and DAPI staining. The white arrows highlight Glu-positive signals in the striatum, presenting an increase after MPTP administration. b Glu receptor (mGluR3) and DAPI staining. c Glu and mGluR3 receptor staining. The yellow arrows indicate double-stained areas in the striatum, demonstrating enhanced expression in the MPTP-treated mouse. d GFAP and DAPI staining, with an increased GFAP signal in the MPTP group, reflecting higher astrocytic activation (with DAPI providing background cell body visualization). e A merged image combining the signals from ( a , b , d ). f Coomassie blue staining. The increased staining intensity in the MPTP-treated brain suggests an increase in total protein content.

    Article Snippet: Antibodies against glutamate (#AB5018, Sigma Aldrich), GFAP (#Ab4674, Abcam), and mGluR3 glutamate receptor (#AGC-010-GP, Alomone labs) were used for IHC tissue staining.

    Techniques: Staining, Expressing, Activation Assay