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murine brain microvascular endothelial cell line  (ATCC)


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    Structured Review

    ATCC murine brain microvascular endothelial cell line
    Murine Brain Microvascular Endothelial Cell Line, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1913 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/microvascular+endothelial+cell+line/bEnd%2E3/pm42253175-50-1-8
    Average 99 stars, based on 1913 article reviews
    murine brain microvascular endothelial cell line - by Bioz Stars, 2026-09
    99/100 stars

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    other:

    Article Title: Common Biomarkers of Endothelial Dysfunction Across Highly Prevalent Diseases with Cardiovascular Risk: Functional Characterization and Prognostic Implications.
    Article Snippet: A human microvascular endothelial cell line (HMEC-1, ATCC, Manassas, VA, USA) was used.


    Cell Culture:

    Article Title: Effects of lactate dehydrogenase A and GLUT1 inhibition on human endothelial cell migration in relation to their intracellular nucleotide pool.
    Article Snippet: the expression of both lactate dehydrogenase A (LDH-A) and glucose transporter type 1 (gLUt1) is high in pancreatic, thoracic and many other types of cancer. gLUt1 is also highly expressed in endothelial cells (eC), that play an important role in tumor metastasis.. We investigated the effect of inhibition of LDH-A by nHi-2 and gLUt1 by pgL14 on cellular migration, a hallmark of metastasis, in relation to changes in intracellular purine nucleotide and nicotinamide adenine dinucleotide pools in a human microvascular endothelial cell line (HMeC-1).. HMeC-1 were treated with nHi-2 and pgL14 alone or in combination.

    Article Title: The CHI3L1 protein plays role as a protecting factor against autophagy in glioblastoma cells
    Article Snippet: The commercially available human glioblastoma cell line U-87 MG (ATCC® CRL-1421TM, American Type Culture Collection, Old Town, Manassas, VA, USA) was provided in DMEM with 4.5 g/L glucose (Capricorn, Ebsdorfergrund, Germany). .. The HMEC-1 human microvascular endothelial cell line (ATCC) was cultured in MCDB131 medium supplemented with 10 mM L-glutamine, 10 ng/mL FGF (ThermoFisher Scientific, Wilmington, DE, USA) and 1 μg/mL hydrocortisone (Sigma-Aldrich). .. The THP-1 human monocyte cell line, derived from acute monocytic leukaemia (ATCC), was cultured in RPMI-1640 (Gibco, ThermoFisher Scientific), supplemented with 50 μM β-mercaptoethanol (Sigma-Aldrich).

    Article Title: Endothelial NLRP3 inflammasome activation drives immunothrombosis in Streptococcus pyogenes infection.
    Article Snippet: Streptococcus pyogenes (Strep A), a formidable human pathogen, is notorious for causing life-threatening diseases such as necrotizing fasciitis and streptococcal toxic shock syndrome, often complicated by thrombosis and coagulation abnormalities.. While macrophage inflammasome activation has been widely studied in Strep A pathogenesis, the contribution of vascular endothelial cells-key regulators of immunity and coagulation-remains largely unexplored.. This study aimed to determine whether endothelial NLRP3 inflammasome activation drives immunothrombosis during invasive Strep A infection and to define the roles of streptolysin O (SLO) and streptolysin S (SLS) in this mechanism.

    Article Title: Shared molecular mechanisms of vascular endothelial cells in psoriasis and diabetes comorbidity
    Article Snippet: .. The human microvascular endothelial cell line (HMEC-1, CRL-3243) was procured from the American Type Culture Collection (ATCC, USA) and cultured following standard protocols. ..

    Article Title: Aerosolized ApoA1 Nanoparticles Synthesized by Microfluidics Cross the Lung Barrier and Modulate Inflammation
    Article Snippet: Image acquisition was performed using a Gatan SC600A CCD camera (Gatan, USA). .. HMEC-1 cells, a human microvascular endothelial cell line (ATCC# CRL-3243), were cultured in MCDB 131 medium (P04-80057, Pan Biotech) supplemented with 10% fetal bovine serum (FBS) (ST30-3302, Pan Biotech), 100 units/mL Penicillin-100μg/mL Streptomycin (P06-07100, Pan Biotech), 250μg/mL Amphotericin-B (P06-01100, Pan Biotech), 10 ng/mL Epidermal Growth Factor (EGF) (E9644; Sigma-Aldrich, USA), 1 μg/mL Hydrocortisone (Sigma), and 10 mM L-Glutamine (Pan Biotech). .. A549 cells, a human alveolar epithelial cell line (ATCC# CCL-185), were routinely cultured in RPMI 1640 medium (P04-22100, Pan Biotech) supplemented with 10% heat-inactivated FBS (ST30-3302, Pan Biotech) and 100 units/mL Penicillin-100μg/mL Streptomycin (P06-07100, Pan Biotech).

    Functional Assay:

    Article Title: Method for tissue regeneration using cancer cell-derived exosomes
    Article Snippet: Cell lines include triple negative breast cancer cell line [MDA-MB-231 (ATCC® HTB-26TM)], colorectal cancer cell line [HT-29 (ATCC® HTB-38TM)], and mesenchymal stem cell line [Bone Marrow-Derived Mesenchymal Stem Cells (ATCC® PCS-500-012TM)]. .. In addition, AC16 human cardiomyocyte cell line (SCC109, Merck-Millipore, MA, USA) and a microvascular endothelial cell line [HMEC-1 (ATCC® CRL-3243TM)] are used for functional assays purposes. .. Exosome isolation.



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    Effects of DOX, miR-196a antagonist, and AP-1 inhibitor on blood-brain barrier (BBB) integrity, tight junction proteins, and annexin A1 expression. A: Quantitative analysis of Evans blue (EB) extravasation (μg/g tissue), occludin, and claudin-5 protein expression in the hippocampus of mice. Data are presented as the mean ± standard deviation (SD). Protein expression was normalized to GAPDH. Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Control group (group C); # P < 0.05, ## P < 0.01, ### P < 0.001 versus DOX-treated group (group D); ns, not significant (adjusted P > 0.05). B: Representative Western blot bands of occludin and claudin-5 proteins in mouse hippocampal tissues. GAPDH served as the loading control. Bands were selected from three independent experiments with high reproducibility, and integrated optical density (IOD) was quantified using ImageJ software. C: Immunofluorescence staining of annexin A1 (ANXA1) <t>in</t> <t>bEnd.3</t> cells. Green fluorescence indicates ANXA1-positive signals, and blue fluorescence indicates DAPI-stained nuclei. Scale bar = 300 μm. All images were captured with identical exposure parameters. D: Quantitative analysis of the ANXA1-positive area per cell (μm 2 ) in bEnd.3 cells. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Group C; # P < 0.05, ## P < 0.01, ### P < 0.001 versus Group D; ns, not significant (adjusted P > 0.05).
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    Effects of DOX, miR-196a antagonist, and AP-1 inhibitor on blood-brain barrier (BBB) integrity, tight junction proteins, and annexin A1 expression. A: Quantitative analysis of Evans blue (EB) extravasation (μg/g tissue), occludin, and claudin-5 protein expression in the hippocampus of mice. Data are presented as the mean ± standard deviation (SD). Protein expression was normalized to GAPDH. Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Control group (group C); # P < 0.05, ## P < 0.01, ### P < 0.001 versus DOX-treated group (group D); ns, not significant (adjusted P > 0.05). B: Representative Western blot bands of occludin and claudin-5 proteins in mouse hippocampal tissues. GAPDH served as the loading control. Bands were selected from three independent experiments with high reproducibility, and integrated optical density (IOD) was quantified using ImageJ software. C: Immunofluorescence staining of annexin A1 (ANXA1) <t>in</t> <t>bEnd.3</t> cells. Green fluorescence indicates ANXA1-positive signals, and blue fluorescence indicates DAPI-stained nuclei. Scale bar = 300 μm. All images were captured with identical exposure parameters. D: Quantitative analysis of the ANXA1-positive area per cell (μm 2 ) in bEnd.3 cells. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Group C; # P < 0.05, ## P < 0.01, ### P < 0.001 versus Group D; ns, not significant (adjusted P > 0.05).
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    Effects of DOX, miR-196a antagonist, and AP-1 inhibitor on blood-brain barrier (BBB) integrity, tight junction proteins, and annexin A1 expression. A: Quantitative analysis of Evans blue (EB) extravasation (μg/g tissue), occludin, and claudin-5 protein expression in the hippocampus of mice. Data are presented as the mean ± standard deviation (SD). Protein expression was normalized to GAPDH. Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Control group (group C); # P < 0.05, ## P < 0.01, ### P < 0.001 versus DOX-treated group (group D); ns, not significant (adjusted P > 0.05). B: Representative Western blot bands of occludin and claudin-5 proteins in mouse hippocampal tissues. GAPDH served as the loading control. Bands were selected from three independent experiments with high reproducibility, and integrated optical density (IOD) was quantified using ImageJ software. C: Immunofluorescence staining of annexin A1 (ANXA1) <t>in</t> <t>bEnd.3</t> cells. Green fluorescence indicates ANXA1-positive signals, and blue fluorescence indicates DAPI-stained nuclei. Scale bar = 300 μm. All images were captured with identical exposure parameters. D: Quantitative analysis of the ANXA1-positive area per cell (μm 2 ) in bEnd.3 cells. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Group C; # P < 0.05, ## P < 0.01, ### P < 0.001 versus Group D; ns, not significant (adjusted P > 0.05).
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    Image Search Results


    Effects of DOX, miR-196a antagonist, and AP-1 inhibitor on blood-brain barrier (BBB) integrity, tight junction proteins, and annexin A1 expression. A: Quantitative analysis of Evans blue (EB) extravasation (μg/g tissue), occludin, and claudin-5 protein expression in the hippocampus of mice. Data are presented as the mean ± standard deviation (SD). Protein expression was normalized to GAPDH. Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Control group (group C); # P < 0.05, ## P < 0.01, ### P < 0.001 versus DOX-treated group (group D); ns, not significant (adjusted P > 0.05). B: Representative Western blot bands of occludin and claudin-5 proteins in mouse hippocampal tissues. GAPDH served as the loading control. Bands were selected from three independent experiments with high reproducibility, and integrated optical density (IOD) was quantified using ImageJ software. C: Immunofluorescence staining of annexin A1 (ANXA1) in bEnd.3 cells. Green fluorescence indicates ANXA1-positive signals, and blue fluorescence indicates DAPI-stained nuclei. Scale bar = 300 μm. All images were captured with identical exposure parameters. D: Quantitative analysis of the ANXA1-positive area per cell (μm 2 ) in bEnd.3 cells. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Group C; # P < 0.05, ## P < 0.01, ### P < 0.001 versus Group D; ns, not significant (adjusted P > 0.05).

    Journal: Open Life Sciences

    Article Title: Doxorubicin compromises blood-brain barrier integrity by suppressing annexin A1 expression

    doi: 10.1515/biol-2025-1297

    Figure Lengend Snippet: Effects of DOX, miR-196a antagonist, and AP-1 inhibitor on blood-brain barrier (BBB) integrity, tight junction proteins, and annexin A1 expression. A: Quantitative analysis of Evans blue (EB) extravasation (μg/g tissue), occludin, and claudin-5 protein expression in the hippocampus of mice. Data are presented as the mean ± standard deviation (SD). Protein expression was normalized to GAPDH. Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Control group (group C); # P < 0.05, ## P < 0.01, ### P < 0.001 versus DOX-treated group (group D); ns, not significant (adjusted P > 0.05). B: Representative Western blot bands of occludin and claudin-5 proteins in mouse hippocampal tissues. GAPDH served as the loading control. Bands were selected from three independent experiments with high reproducibility, and integrated optical density (IOD) was quantified using ImageJ software. C: Immunofluorescence staining of annexin A1 (ANXA1) in bEnd.3 cells. Green fluorescence indicates ANXA1-positive signals, and blue fluorescence indicates DAPI-stained nuclei. Scale bar = 300 μm. All images were captured with identical exposure parameters. D: Quantitative analysis of the ANXA1-positive area per cell (μm 2 ) in bEnd.3 cells. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05, ** P < 0.01, *** P < 0.001 versus Group C; # P < 0.05, ## P < 0.01, ### P < 0.001 versus Group D; ns, not significant (adjusted P > 0.05).

    Article Snippet: The mouse brain microvascular endothelial cell line bEnd.3 (American Type Culture Collection, ATCC ® CRL-2299TM) was utilized in this study as an in vitro model of the blood-brain barrier.

    Techniques: Expressing, Standard Deviation, Control, Western Blot, Software, Immunofluorescence, Staining, Fluorescence

    miR-196a directly targets annexin A1 (ANXA1) and is upregulated by DOX. A: Quantitative analysis of miR-196a relative expression in bEnd.3 cells. U6 snRNA was used as the internal reference, and expression levels were calculated using the 2 − ΔΔCt method. Experimental groups were consistent with <xref ref-type=Figure 1 . Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D; ns, not significant (adjusted P > 0.05). B: Schematic diagram of the predicted binding site between miR-196a-5p and the 3′ untranslated region (3′UTR) of the ANXA1 gene, including the wild-type (WT) ANXA1 3′UTR (containing the intact miR-196a-5p binding sequence) and the mutant (Mut) ANXA1 3′UTR (with site-directed mutations in the binding sequence to disrupt miR-196a-5p binding). C: Relative luciferase activity detected by dual-luciferase reporter assay in bEnd.3 cells. Cells were cotransfected with miR-196a mimics/negative control and WT/Mut ANXA1 3′UTR reporter plasmids. Data are presented as the mean ± SD Statistical analysis was performed using an unpaired two-tailed Student’s t -test. * P < 0.05 indicates a statistically significant difference. " width="100%" height="100%">

    Journal: Open Life Sciences

    Article Title: Doxorubicin compromises blood-brain barrier integrity by suppressing annexin A1 expression

    doi: 10.1515/biol-2025-1297

    Figure Lengend Snippet: miR-196a directly targets annexin A1 (ANXA1) and is upregulated by DOX. A: Quantitative analysis of miR-196a relative expression in bEnd.3 cells. U6 snRNA was used as the internal reference, and expression levels were calculated using the 2 − ΔΔCt method. Experimental groups were consistent with Figure 1 . Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D; ns, not significant (adjusted P > 0.05). B: Schematic diagram of the predicted binding site between miR-196a-5p and the 3′ untranslated region (3′UTR) of the ANXA1 gene, including the wild-type (WT) ANXA1 3′UTR (containing the intact miR-196a-5p binding sequence) and the mutant (Mut) ANXA1 3′UTR (with site-directed mutations in the binding sequence to disrupt miR-196a-5p binding). C: Relative luciferase activity detected by dual-luciferase reporter assay in bEnd.3 cells. Cells were cotransfected with miR-196a mimics/negative control and WT/Mut ANXA1 3′UTR reporter plasmids. Data are presented as the mean ± SD Statistical analysis was performed using an unpaired two-tailed Student’s t -test. * P < 0.05 indicates a statistically significant difference.

    Article Snippet: The mouse brain microvascular endothelial cell line bEnd.3 (American Type Culture Collection, ATCC ® CRL-2299TM) was utilized in this study as an in vitro model of the blood-brain barrier.

    Techniques: Expressing, Binding Assay, Sequencing, Mutagenesis, Luciferase, Activity Assay, Reporter Assay, Negative Control, Two Tailed Test

    DOX activates AP-1 transcriptional activity in bEnd.3 cells. A: Representative Western blot bands of c-fos and c-jun proteins in bEnd.3 cells from the control group (group C) and DOX-treated group (group D). GAPDH served as the loading control. Each group includes results from two biological replicates. B: Representative Western blot bands of phosphorylated c-fos (p-c-fos) and total c-fos proteins in bEnd.3 cells from group C and group D, clearly showing the relative expression levels of the target proteins. C: Representative Western blot bands of phosphorylated c-jun (p-c-Jun) and total c-jun proteins in bEnd.3 cells from group C and group D, clearly showing the phosphorylation modification levels of the target proteins. D: Quantitative analysis of c-fos and c-jun protein relative expression in bEnd.3 cells from group C and group D. Expression levels were normalized to GAPDH. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D. E: Quantitative analysis of the phosphorylation ratios of p-c-fos/c-fos and p-c-Jun/c-Jun proteins in bEnd.3 cells from group C and group D. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D.

    Journal: Open Life Sciences

    Article Title: Doxorubicin compromises blood-brain barrier integrity by suppressing annexin A1 expression

    doi: 10.1515/biol-2025-1297

    Figure Lengend Snippet: DOX activates AP-1 transcriptional activity in bEnd.3 cells. A: Representative Western blot bands of c-fos and c-jun proteins in bEnd.3 cells from the control group (group C) and DOX-treated group (group D). GAPDH served as the loading control. Each group includes results from two biological replicates. B: Representative Western blot bands of phosphorylated c-fos (p-c-fos) and total c-fos proteins in bEnd.3 cells from group C and group D, clearly showing the relative expression levels of the target proteins. C: Representative Western blot bands of phosphorylated c-jun (p-c-Jun) and total c-jun proteins in bEnd.3 cells from group C and group D, clearly showing the phosphorylation modification levels of the target proteins. D: Quantitative analysis of c-fos and c-jun protein relative expression in bEnd.3 cells from group C and group D. Expression levels were normalized to GAPDH. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D. E: Quantitative analysis of the phosphorylation ratios of p-c-fos/c-fos and p-c-Jun/c-Jun proteins in bEnd.3 cells from group C and group D. Data are presented as the mean ± SD Statistical analysis was performed using one-way ANOVA followed by Tukey’s HSD post hoc test. * P < 0.05 versus Group C; # P < 0.05 versus Group D.

    Article Snippet: The mouse brain microvascular endothelial cell line bEnd.3 (American Type Culture Collection, ATCC ® CRL-2299TM) was utilized in this study as an in vitro model of the blood-brain barrier.

    Techniques: Activity Assay, Western Blot, Control, Expressing, Phospho-proteomics, Modification