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uea 1 rhodamine  (Vector Laboratories)


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    Structured Review

    Vector Laboratories uea 1 rhodamine
    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained <t>for</t> <t>UEA-1</t> (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).
    Uea 1 Rhodamine, supplied by Vector Laboratories, used in various techniques. Bioz Stars score: 94/100, based on 184 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/i+rhodamine+uea+1/bio_rxiv__64898__2026__04__15__718752-82-23-26?v=Vector+Laboratories
    Average 94 stars, based on 184 article reviews
    uea 1 rhodamine - by Bioz Stars, 2026-07
    94/100 stars

    Images

    1) Product Images from "Epithelial function of the circadian clock gene, Bmal1 , in regulating the mucosa"

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

    Journal: bioRxiv

    doi: 10.64898/2026.04.15.718752

    ( 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).
    Figure Legend 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).

    Techniques Used: Staining



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    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained <t>for</t> <t>UEA-1</t> (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).
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    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained <t>for</t> <t>UEA-1</t> (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).
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    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained <t>for</t> <t>UEA-1</t> (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).
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    ( a )Representative images of Epi Ctrl and Epi ΔBmal1 distal colon stained <t>for</t> <t>UEA-1</t> (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).
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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

    Journal: Acta Histochemica et Cytochemica

    Article Title: Alterations in Ileal Secretory Cells of The DSS-Induced Colitis Model Mice

    doi: 10.1267/ahc.24-00049

    Figure Lengend Snippet: Antibodies and lectins

    Article Snippet: Ulex Europaeus Agglutinin 1 (UEA 1) Rhodamine , Specifically recognizes α-1,2-fucose , Vector Laboratories (Burlingame, CA, USA) , 1:300 , .

    Techniques: Plasmid Preparation

    A ) Merged image of WGA-Alexa fluor 350 (blue), UEA 1-rhodamine (magenta), and phase-contrast image. Bars = 50 µm. B ) High-magnification images of lectin histochemistry of WGA-Alexa 350 conjugate or UEA 1-rhodamine. Bars = 10 µm.

    Journal: Acta Histochemica et Cytochemica

    Article Title: Alterations in Ileal Secretory Cells of The DSS-Induced Colitis Model Mice

    doi: 10.1267/ahc.24-00049

    Figure Lengend Snippet: A ) Merged image of WGA-Alexa fluor 350 (blue), UEA 1-rhodamine (magenta), and phase-contrast image. Bars = 50 µm. B ) High-magnification images of lectin histochemistry of WGA-Alexa 350 conjugate or UEA 1-rhodamine. Bars = 10 µm.

    Article Snippet: Ulex Europaeus Agglutinin 1 (UEA 1) Rhodamine , Specifically recognizes α-1,2-fucose , Vector Laboratories (Burlingame, CA, USA) , 1:300 , .

    Techniques: