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Image Search Results
Journal: eNeuro
Article Title: Numbers of Granule Cells and GABAergic Boutons Are Correlated in Shrunken Sclerotic Hippocampi of Sea Lions with Temporal Lobe Epilepsy
doi: 10.1523/ENEURO.0389-25.2026
Figure Lengend Snippet: Adult female control sea lion hippocampus. Nissl stain ( A ), glutamic acid decarboxylase (GAD)67-immunoreactivity to label cell bodies ( B ), and vesicular γ-amino butyric acid vesicular transporter (VGAT) plus GAD65/67-immunoreactivity to label synaptic boutons ( C ).
Article Snippet: Starting at a random point near the septal pole, a 1-in-24 series of sections was sampled and processed with a staining protocol optimized to label GABAergic synaptic boutons in rat tissue , using the same antibodies as for sea lions: one to
Techniques: Control, Staining
Journal: eNeuro
Article Title: Numbers of Granule Cells and GABAergic Boutons Are Correlated in Shrunken Sclerotic Hippocampi of Sea Lions with Temporal Lobe Epilepsy
doi: 10.1523/ENEURO.0389-25.2026
Figure Lengend Snippet: Dentate gyrus of the non-sclerotic ( A–C ) and sclerotic ( D–F ) hippocampi of a subadult female sea lion. Nissl staining ( A , D ) reveals neuron loss in the hilus (H) and granule cell layer (G) of the sclerotic hippocampus. Immunolabeling for γ-amino butyric acid vesicular transporter (VGAT) plus GAD65/67 ( B , C , E , F ) reveals GABAergic synaptic boutons. M, molecular layer; I, inner molecular layer.
Article Snippet: Starting at a random point near the septal pole, a 1-in-24 series of sections was sampled and processed with a staining protocol optimized to label GABAergic synaptic boutons in rat tissue , using the same antibodies as for sea lions: one to
Techniques: Staining, Immunolabeling
Journal: Biomedical Optics Express
Article Title: Large-scale, cell-resolution volumetric mapping allows layer-specific investigation of human brain cytoarchitecture
doi: 10.1364/BOE.415555
Figure Lengend Snippet: Table summarizing the dyes tested in this study. The P/M column denotes polyclonal vs monoclonal antibodies. The same abbreviations used in are used. AF is a shorthand for Alexa Fluor.
Article Snippet: Sample pictures before and after the clearing process were acquired using a digital camera (Sony DSC-WX500), samples were kept soaked either in PBS or TDE. table ft1 table-wrap mode="anchored" t5 Table 1. caption a7 Molecule Company Cat. n. Host P/M Dilution NeuN Merck ABN91 Chicken P 1:50 GAD67 Santa Cruz sc-28376 Mouse M 1:200 GAD65/67
Techniques: Bioprocessing
Journal: Transgenic Research
Article Title: Comparative analysis of different biofactories for the production of a major diabetes autoantigen
doi: 10.1007/s11248-013-9749-9
Figure Lengend Snippet: Transient expression of hGAD65 and hGAD65mut in Nicotiana benthamiana plants using vector pK7WG2. Left panel western blot of hGAD65 (G65) and hGAD65mut (G65m) in leaf extracts (5 μg TSP per lane) detected using the GC3108 antibody. Right panel loading control stained with Coomassie Brilliant Blue. Numbers indicate the molecular mass markers in kDa. n.c. negative control, leaves infiltrated with the pK7WG2 vector carrying the gfp marker gene; p.c. positive control, 10 ng of commercial rhGAD65-His 6 produced in the baculovirus/insect cell system
Article Snippet: Proteins were detected using the
Techniques: Expressing, Plasmid Preparation, Western Blot, Control, Staining, Negative Control, Marker, Positive Control, Produced
Journal: Transgenic Research
Article Title: Comparative analysis of different biofactories for the production of a major diabetes autoantigen
doi: 10.1007/s11248-013-9749-9
Figure Lengend Snippet: Transient expression of hGAD65 and hGAD65mut in Nicotiana benthamiana plants using MagnICON vectors. Left panel western blot of hGAD65 (G65) and hGAD65mut (G65m) in leaf extracts (1 μg TSP per lane) detected using the GC3108 antibody. Right panel loading control stained with Coomassie Brilliant Blue. Numbers indicate the molecular mass markers in kDa. n.c. negative control, plant infiltrated with the pICH20111 5′-module and pICH14011 integrase-module; p.c. positive control, 10 ng of commercial rhGAD65-His 6 produced in the baculovirus/insect cell system
Article Snippet: Proteins were detected using the
Techniques: Expressing, Western Blot, Control, Staining, Negative Control, Positive Control, Produced
Journal: Transgenic Research
Article Title: Comparative analysis of different biofactories for the production of a major diabetes autoantigen
doi: 10.1007/s11248-013-9749-9
Figure Lengend Snippet: Expression of hGAD65 and hGAD65mut using the baculovirus/insect cell platform. Left panel western blot of hGAD65 (G65) and hGAD65mut (G65m) in cell extracts (15 μg TSP per lane) detected using the GC3108 antibody. Right panel loading control stained with Coomassie Brilliant Blue. Numbers indicate the molecular mass markers in kDa. n.c. negative control, non-transformed insect cell extracts; p.c. positive control, 10 ng of commercial rhGAD65-His 6 produced in the baculovirus/insect cell system
Article Snippet: Proteins were detected using the
Techniques: Expressing, Western Blot, Control, Staining, Negative Control, Transformation Assay, Positive Control, Produced
Journal: Transgenic Research
Article Title: Comparative analysis of different biofactories for the production of a major diabetes autoantigen
doi: 10.1007/s11248-013-9749-9
Figure Lengend Snippet: Expression of hGAD65 and hGAD65mut using the E. coli inducible expression platform. Left panel western blot of hGAD65 (G65) and hGAD65mut (G65m) in cell extracts (2 μg TSP per lane) detected using the GC3108 antibody. Right panel loading control stained with Coomassie Brilliant Blue, with asterisk indicating the band corresponding to hGAD65mut. Numbers indicate the molecular mass markers in kDa. n.c. negative control, bacterial cell transformed with the pDest17 ‘empty’ vector; p.c. positive control, 15 ng of commercial rhGAD65-His 6 produced in the baculovirus/insect cell system
Article Snippet: Proteins were detected using the
Techniques: Expressing, Western Blot, Control, Staining, Negative Control, Transformation Assay, Plasmid Preparation, Positive Control, Produced
Journal: Nature Communications
Article Title: Functional neuronal circuitry and oscillatory dynamics in human brain organoids
doi: 10.1038/s41467-022-32115-4
Figure Lengend Snippet: a Top, high-resolution, whole-section of an 8-month organoid immunostained with anti-GFAP (green), and counterstained with Hoechst (cell nuclei, blue), scale bar 1 mm. Middle, a high magnification of (top box) showing stellate appearance characteristic of astrocytes. Bottom left, Anti-GFAP-positive astrocytes (green) in an 8-month organoid co-labeled with anti-connexin 43 demonstrating gap junctions (red). Bottom right, connexin 43 gap junction (red; arrows). Middle and bottom scale bars are 40 µm. b Top, long neuronal processes labeled with anti-SMI312 (green) in an 8-month organoid, scale bar 500 µm. Bottom, anti-SMI312 (green) axons neighboring MAP2-positive (red) neurons near the margin of 8-month organoid, scale bar 20 µm. c Top, anti-GAD65 positive neurons (green) co-labeled with anti-MAP2. Bottom, Anti-Parvalbumin-positive neurons (green) in an 8-month organoid co-labeled with anti-MAP2 (red). Scale bars 40 µm. d The presynaptic marker synaptobrevin label MAP2-positive processes as puncta, scale bar 20 µm. Data from a – d were repeated independently on n = 3 organoids. e Single-cell RNA sequencing (drop-seq) shows the presence of glutamatergic neurons, GABAergic neurons and astrocyte populations. Single-cell transcriptomes (5680 cells collected from three 7-month-old organoids) are visualized as a Uniform Manifold Approximation and Projection (UMAP). Source data are provided as a Source Data File.
Article Snippet: Primary antibodies used were anti-Parvalbumin (1:200; abcam, Cambridge, MA; ab11427),
Techniques: Labeling, Marker, RNA Sequencing Assay