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biotinylated ulex europaeus agglutinin i (uea i)  (Vector Laboratories)


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    Structured Review

    Vector Laboratories biotinylated ulex europaeus agglutinin i (uea i)
    Biotinylated Ulex Europaeus Agglutinin I (Uea I), supplied by Vector Laboratories, used in various techniques. Bioz Stars score: 96/100, based on 519 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/uea/Biotinylated+Ulex+Europaeus+Agglutinin+I+(UEA+I)/custom%40b-1065%4042537647
    Average 96 stars, based on 519 article reviews
    biotinylated ulex europaeus agglutinin i (uea i) - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Labeling:

    Article Title: RAB3GAP2 is a regulator of skeletal muscle endothelial cell proliferation and associated with capillary-to-fiber ratio.
    Article Snippet: .. For endothelial cell identification, sections for IF were counterstained either with 2.0 μg/ml mouse antiCD31 (Dako, Glostrup, Denmark) and Alexa488 conjugated goat anti-mouse IgG (1:400; Abcam) and DAPI (4’,6-diamidino-2-phenylindole) for nuclear identification (Vector Laboratories, Burlingame, CA, US); or with Rhodamine labeled Ulex Europaeus Agglutinin I (UEA I) (Vector Laboratories) (10 μg/ml). .. Sections were mounted and imaged in a Zeiss LSM800 laser scanning confocal microscope (Zeiss, Germany).

    Article Title: Brain Pericytes and Wnt/β-Catenin Signaling Induce Functional Blood-Brain Barrier Phenotype in Human iPSC-Derived Model.
    Article Snippet: Image processing and 3D reconstruction were conducted using Imaris software (version 10.2.0, Oxford Instruments), NIS-Elements software, or ImageJ (National Institutes of Health, Bethesda, MD, USA), depending on the quantification. .. To assess vascular morphology, networks were fixed at day 7 and immunostained (as described above) using either DyLight 649- labeled Ulex Europaeus Agglutinin I (UEA I; Vector Laboratories) or PECAM-1 antibody to visualize vessel structures. ..

    Article Title: Spatially resolved single-cell analysis of transcriptomic changes linked with neuropathic pain in human neuromas
    Article Snippet: The following primary antibodies were used: mouse monoclonal anti-human leukocyte antigen (HLA)-A (Abcam, Cambridge, United Kingdom, ab52922, 1:1000), mouse monoclonal anti-nerve growth factor receptor (NGFR) (Abcam, ab3125, 1:200), rabbit polyclonal anti-PI16 (Atlas Antibodies, Stockholm, Sweden, HPA043763, 1:200), mouse monoclonal anti-TUJ1 (BioLegend, London, United Kingdom, 801202, 1:100), rabbit polyclonal anti-GLUT-1 (Abcam, Ab15309, 1:400), and mouse monoclonal anti-CD45 (Abcam, Ab8216, 1:400). .. Labeling of endothelial cells was performed with fluorescein conjugated Ulex Europaeus Agglutinin I (UEA-I) (Vector Laboratories, Newark, CA, FL-1061, 1:50). ..

    Incubation:

    Article Title: Afucosylated IgG in idiopathic nephrotic syndrome patients with anti-nephrin autoantibodies correlate with disease activity
    Article Snippet: Plates were washed three times with PBST, blocked ON at 4 °C with SuperBlock (ThermoFisher Cat# 37518), rewashed, and incubated ON at 4 °C with 100 μL of 1:100 diluted serum or 90 μL urine plus 10 μL of 10 × PBST, standard, or positive/negative controls in SuperT. .. After five washes, 100 μL of Aleuria Aurantia Lectin (AAL; Vector Laboratories Cat# B1395-1) or biotinylated Ulex Europaeus Agglutinin I (UEA-I; Vector Laboratories Cat# B1065-2), both diluted 1:1000 in SuperT, were added and incubated ON at 4 °C. .. Plates were washed, incubated with 100 μL of streptavidin-HRP (ThermoFisher Cat# 434301, 1:10,000 in SuperT) for 30 min at room temperature (RT), washed again, and developed with 100 μL of TMB substrate (Bio-Rad Cat# 1721066).

    Staining:

    Article Title: Disruption of Notch signaling by KGF induces a developmental pause in thymocytes
    Article Snippet: .. For flow cytometric analysis, 5 × 10 6 cells per sample were pre-incubated with anti-mouse CD16/CD32 monoclonal antibody (BD Pharmingen, clone 2.4G2), then stained with fluorescein-labeled Ulex Europaeus Agglutinin I (UEA-1; Vector Laboratories) and antibodies against CD45 (BioLegend, clone 30-F11), EpCAM (BioLegend, clone G8.8), Ly51 (BioLegend, clone 6C3), and MHC-II (clone M5/114.15.2). ..

    Immunopeptidomics:

    Article Title: Disruption of Notch signaling by KGF induces a developmental pause in thymocytes
    Article Snippet: .. For flow cytometric analysis, 5 × 10 6 cells per sample were pre-incubated with anti-mouse CD16/CD32 monoclonal antibody (BD Pharmingen, clone 2.4G2), then stained with fluorescein-labeled Ulex Europaeus Agglutinin I (UEA-1; Vector Laboratories) and antibodies against CD45 (BioLegend, clone 30-F11), EpCAM (BioLegend, clone G8.8), Ly51 (BioLegend, clone 6C3), and MHC-II (clone M5/114.15.2). ..



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    Thymic epithelial cell (TEC) subpopulations in the neonatal thymus. A: Representative flow cytometry profiles of CD45 − epithelial cell adhesion molecule (EpCAM) + TECs at postnatal days 1, 3, 5, and 7. B: Total number of TECs in the thymus from the indicated time points. C: Representative flow cytometry profiles of medullary TECs [mTECs; ulex europaeus <t>agglutinin</t> <t>1</t> <t>(UEA1)</t> + Ly51 – ] and cortical TECs (cTECs; UEA1 – Ly51 + ) within the CD45 − EpCAM + TEC population from the indicated time points. D: Total number of mTECs ( left panel ) and cTECs ( right panel ) in the thymus from the indicated mice. E: Representative flow cytometry profiles of autoimmune regulator (Aire) expression in mTECs from the indicated time points. F: Frequency ( left panel ) and absolute number ( right panel ) of Aire + mTECs. At least three independent experiments were conducted using neonatal mice. Data are presented as means ± SEM ( B , D , and F ). n = 4 or 5 mice per group ( B , D , and F ). ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001, and ∗∗∗∗ P < 0.0001. Max, maximum; NS, not significant.
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    Image Search Results


    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained for UEA-1 (violet) and MALII (yellow) to label fucosylated and sialylated mucins, respectively. Shown are samples collected at ZT0 and ZT12, arrowheads indicate mucus thickness. (Scale bar = 20μm). ( b ) UEA-1+ mucus thickness in the distal colon is significantly higher at ZT12 in Epi Ctrl but lower at both times in Epi ΔBmal1 (**p≤0.01). ( c ) MALII+ mucus thickness in the distal colon is significantly higher at ZT12 in Epi Ctrl (*p≤ 0.05), with a significant increase of thickness in Epi ΔBmal1 at ZT0 (*p<0.05). Note, that Epi ΔBmal1 does not show a time-of-day dependent change in MALII. ( d ) UEA-1+ goblet cell area in distal colon crypts s significantly higher at ZT12 in Epi Ctrl (**p≤0.05). While not significantly different from controls, Epi ΔBmal1 do not show this time-of-day change in UEA-1+ mucus thickness. ( e ) MALII+ goblet cell area in distal colon crypts is significantly increased in Epi ΔBmal1 at ZT0 (*p≤0.05).

    Journal: bioRxiv

    Article Title: Epithelial function of the circadian clock gene, Bmal1 , in regulating the mucosa

    doi: 10.64898/2026.04.15.718752

    Figure Lengend Snippet: ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained for UEA-1 (violet) and MALII (yellow) to label fucosylated and sialylated mucins, respectively. Shown are samples collected at ZT0 and ZT12, arrowheads indicate mucus thickness. (Scale bar = 20μm). ( b ) UEA-1+ mucus thickness in the distal colon is significantly higher at ZT12 in Epi Ctrl but lower at both times in Epi ΔBmal1 (**p≤0.01). ( c ) MALII+ mucus thickness in the distal colon is significantly higher at ZT12 in Epi Ctrl (*p≤ 0.05), with a significant increase of thickness in Epi ΔBmal1 at ZT0 (*p<0.05). Note, that Epi ΔBmal1 does not show a time-of-day dependent change in MALII. ( d ) UEA-1+ goblet cell area in distal colon crypts s significantly higher at ZT12 in Epi Ctrl (**p≤0.05). While not significantly different from controls, Epi ΔBmal1 do not show this time-of-day change in UEA-1+ mucus thickness. ( e ) MALII+ goblet cell area in distal colon crypts is significantly increased in Epi ΔBmal1 at ZT0 (*p≤0.05).

    Article Snippet: Sections were incubated with biotinylated MAL-II (B-1265-1, Vector Laboratories; 3μg/mL in 1%BSA in PBS) overnight at 4°C, washed in PBS, then incubated with UEA-1 rhodamine (RL-1062-2, Vector Laboratories; 2μg/mL) and streptavidin-FITC (405201, BioLegend; 5μg/mL) in 1% BSA in PBS for 1 hr at room temperature in the dark.

    Techniques: Staining

    Thymic epithelial cell (TEC) subpopulations in the neonatal thymus. A: Representative flow cytometry profiles of CD45 − epithelial cell adhesion molecule (EpCAM) + TECs at postnatal days 1, 3, 5, and 7. B: Total number of TECs in the thymus from the indicated time points. C: Representative flow cytometry profiles of medullary TECs [mTECs; ulex europaeus agglutinin 1 (UEA1) + Ly51 – ] and cortical TECs (cTECs; UEA1 – Ly51 + ) within the CD45 − EpCAM + TEC population from the indicated time points. D: Total number of mTECs ( left panel ) and cTECs ( right panel ) in the thymus from the indicated mice. E: Representative flow cytometry profiles of autoimmune regulator (Aire) expression in mTECs from the indicated time points. F: Frequency ( left panel ) and absolute number ( right panel ) of Aire + mTECs. At least three independent experiments were conducted using neonatal mice. Data are presented as means ± SEM ( B , D , and F ). n = 4 or 5 mice per group ( B , D , and F ). ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001, and ∗∗∗∗ P < 0.0001. Max, maximum; NS, not significant.

    Journal: The American Journal of Pathology

    Article Title: Neonatal Thymic Dynamics Influence Autoimmune Pathology by Shaping the Suppressive Potential of Regulatory T Cells

    doi: 10.1016/j.ajpath.2025.12.007

    Figure Lengend Snippet: Thymic epithelial cell (TEC) subpopulations in the neonatal thymus. A: Representative flow cytometry profiles of CD45 − epithelial cell adhesion molecule (EpCAM) + TECs at postnatal days 1, 3, 5, and 7. B: Total number of TECs in the thymus from the indicated time points. C: Representative flow cytometry profiles of medullary TECs [mTECs; ulex europaeus agglutinin 1 (UEA1) + Ly51 – ] and cortical TECs (cTECs; UEA1 – Ly51 + ) within the CD45 − EpCAM + TEC population from the indicated time points. D: Total number of mTECs ( left panel ) and cTECs ( right panel ) in the thymus from the indicated mice. E: Representative flow cytometry profiles of autoimmune regulator (Aire) expression in mTECs from the indicated time points. F: Frequency ( left panel ) and absolute number ( right panel ) of Aire + mTECs. At least three independent experiments were conducted using neonatal mice. Data are presented as means ± SEM ( B , D , and F ). n = 4 or 5 mice per group ( B , D , and F ). ∗ P < 0.05, ∗∗ P < 0.01, ∗∗∗ P < 0.001, and ∗∗∗∗ P < 0.0001. Max, maximum; NS, not significant.

    Article Snippet: Isolated TECs were stained with the following antibodies: BV421-conjugated anti-mouse CD45 (BD Biosciences, Franklin Lakes, NJ; 30-F11); phosphatidylethanolamine-Cy7–conjugated anti-mouse epithelial cell adhesion molecule (BioLegend; G8.8); Alexa Fluor 647–conjugated anti-mouse Ly-51 (BioLegend; 6C3); DyLight 594–conjugated ulex europaeus agglutinin 1 (UEA1) (Vector Laboratories, Newark, CA; DL-1067-1); and Alexa Fluor 488–conjugated anti-mouse Aire (eBioscience; 5H12).

    Techniques: Flow Cytometry, Expressing