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mda mb 231 cells  (ATCC)


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    ATCC mda mb 231 cells
    Mda Mb 231 Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 388 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+aortic+smooth+muscle+cells/Primary+Aortic+Smooth+Muscle+Cells%3B+Normal%2C+Human/pm42321432-179-7-14
    Average 95 stars, based on 388 article reviews
    mda mb 231 cells - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    other:

    Article Title: Mapping atherogenesis mechanisms in smooth muscle cells by targeting genes linked to coronary artery disease
    Article Snippet: Human aortic smooth muscle cells , ATCC , Cat# PCS-100-012, Lot #80323179.

    Article Title: CTHRC1 is a new therapeutic target and serum diagnostic biomarker for aortic dissection
    Article Snippet: Mouse aortic smooth muscle cells (MOVAS, ATCC CRL-2797) and Human aortic smooth muscle cells (HASMC, ATCC PCS-100-012) were originally obtained from American Tissue Culture Collection Biobank (Manassas, VA, USA) and were maintained in DMEM (Gibco) with 10% FBS (FSD500, ExCell), penicillin/streptomycin 100 U/ml (15140122, Gibco) and 2 mM L-glutamine (25030081, Gibco), at 37°C with 5% CO2.

    Article Title: Olsenella scatoligenes -derived skatole promotes smooth muscle cell proliferation and migration to aggravate atherosclerosis
    Article Snippet: Human aortic smooth muscle cells (HASMCs, CRL-1999) and HEK293T cells (CRL-3216) were purchased from the American Type Culture Collection.

    Article Title: <scp>PCL</scp>–<scp>PLA</scp> Blends for Electrospun Vascular Grafts With Enhanced Cellular Activity and Long‐Term Biodegradability
    Article Snippet: Smalldiameter tissueengineered vascular grafts face challenges such as mechanical instability, poor endothelialization, stenosis, thrombosis, and intimal hyperplasia.. In this study, novel bilayer fibrous vascular graft designs were developed that structurally and biologically mimic native vessels.. The grafts were fabricated by electrospinning PLA, PCL, and PLCL polymers, featuring randomly distributed fibers (_R) in the inner layer and radially oriented fibers (_O) in the outer layer.

    Article Title: Olsenella scatoligenes-derived Skatole Promotes Smooth Muscle Cell Proliferation and Migration to Aggravate Atherosclerosis.
    Article Snippet: Human aortic smooth muscle cells (HASMCs, CRL-1999) and HEK293T cells (CRL- 3216) were purchased from the American type culture collection.

    Construct:

    Article Title: Development of a multi-scale nanofiber scaffold platform for structurally and functionally replicated artificial perforating arteries.
    Article Snippet: Experimental models for exploring abnormal brain blood vessels, including ischemic stroke, are crucial in neuroscience; recently, significant attention has been paid to artificial tissues through tissue engineering.. Nanofibers, although commonly used as tissue engineering scaffolds, undergo structural deformations easily, making it challenging to create uniform tissue, especially for the smallest-diameter ones such as perforating arteries.. This study focused on the development of a platform capable of reconstructing structurally and functionally replicated perforating arteries.

    Biomarker Discovery:

    Article Title: Development of a Multi-Channel and Multilayered PDMS Microfluidic Platform for Real-Time Visualization and Multi-Condition Parallel Testing of Mechanically Stimulated Cells
    Article Snippet: .. Human aortic smooth muscle cells (CRL-1999, ATCC, Manassas, VA, USA) were used as a model system for platform validation. ..

    Cell Culture:

    Article Title: Unveiling the association between fluoroquinolones and aortic diseases using real-world database analysis and pharmacological experiments.
    Article Snippet: Fluoroquinolones, which are widely used antibiotics, have been linked to aortic disease, which prompted an FDA warning in 2018.. Recent reports have challenged the perception that fluoroquinolones pose a significant risk for vascular diseases.. This study aimed to investigate whether fluoroquinolones increase the risk of aortic diseases by focusing on the onset of aortic dissection.



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    Ai-Aiv , Wire injury model. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet one week before and for another three weeks after injury. Ai , Neointima formation was assessed in movat pentachrome-stained sections three weeks after injury. Scale bar represents 100 µm. Aii , Quantification of neointima area. n = 6-9 mice per genotype. Two-sided unpaired t test. Aiii , Representative DAPI and α-Sma staining. Aiv , Quantification of total cells in the neointima, and VSMC content. n = 3-4 mice per genotype. The quantification of cells is presented as the percentage of positively stained cells per section. Two-sided unpaired t test and Two-sided Mann-Whitney test. Scale bar represents 100 µm. Bi , Two-photon microscopy of endothelial Vcam-1 expression in ex vivo mounted carotid arteries. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet for 4 weeks followed by imaging of Vcam-1 and Cd31 (n = 6-7 mice per group). Bi , Quantification of endothelial Vcam-1 in mounted carotid arteries. Scale bar, 50 µm. The quantification of Vcam-1 expression is presented as the percentage of endothelial lining per field of view. C , Quantitative proteomic profiling of MAoEC. Shown is the reactome pathway of differentially regulated proteins in TNF-α-stimulated cells (FDR-adj. p value < 0.05). Di, Dii , Transcriptomic profiling of mouse aortic smooth muscle cells (MAoSMC). MAoSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with TNF-α for 6 hours and subjected to gene expression profiling. Di , Volcano plot of log 2 FoldChange ( Hdac9 +/+ Apoe –/– versus Hdac9 –/– Apoe –/– ) and –log 10 p-adjusted values showing top 30 differentially expressed genes related to cell migration. Highlighted in green and orange are the upregulated and downregulated genes respectively. Dii , Gene set enrichment analysis showing functional annotation of dysregulated genes (all FDR corrected). Diii , Scratch wound-healing assay. VSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with PDGF-BB for 24 hours and analyzed for their migratory capacity. Quantification of the area covered by migrated cells. n = 5 mice per genotype. Two-sided unpaired t test. Div , Contractile markers and modulators of VSMC phenotypic transformation from the transcriptome analysis. Ei-Fiii , Functional and molecular assays in human aortic smooth muscle cells (HAoSMC). HAoSMC were transiently transfected with HDAC9 siRNA or scrambled control ( SCR ) RNA for 72 hours and subsequently stimulated with TNF-α (20 ng/mL) for indicated periods or left untreated. Ei , Quantification of PDGF-BB-induced proliferation of <t>HAoSMCs</t> by EdU assay. Eii , Representative immunoblots of VCAM-1 and Actin. Quantification of VCAM-1 normalized to Actin levels ( Eiii) , and IL-8 release ( Eiv). Fi , Representative immunoblots of p65 phosphorylation at serine 468 and total p65 levels. Quantification of phosphorylated p65 at serine 468 ( Fii ) and serine 536 ( Fiii ) normalized to total p65. n = 6-7 independent experiments. Two-way ANOVA with Bonferroni multiple comparison test for comparison of HDAC9 siRNA vs. SCR RNA. Data are means ± SEM.
    Human Aortic Smooth Muscle Cells Haosmcs, supplied by PromoCell, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+aortic+smooth+muscle+cells/Human+Aortic+Smooth+Muscle+Cells/bio_rxiv__64898__2026__05__12__723753-79-0-9
    Average 95 stars, based on 1 article reviews
    human aortic smooth muscle cells haosmcs - by Bioz Stars, 2026-09
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    Image Search Results


    The effect of TCC on the biological function of vascular smooth muscle cells (VSMCs). (A) Apoptosis experiment. (B) Statistical chart of apoptosis experiment data. (C) CCK-8 experiment determines cell viability. (D) Migration experiment. (E) Migration Capability Analysis. # p < 0.05 vs. TCC, * p < 0.05 vs. Control.

    Journal: Frontiers in Cardiovascular Medicine

    Article Title: Research and development of novel embolization materials and study on their feasibility of preventing T2EL after EVAR abdominal aortic aneurysm

    doi: 10.3389/fcvm.2026.1740816

    Figure Lengend Snippet: The effect of TCC on the biological function of vascular smooth muscle cells (VSMCs). (A) Apoptosis experiment. (B) Statistical chart of apoptosis experiment data. (C) CCK-8 experiment determines cell viability. (D) Migration experiment. (E) Migration Capability Analysis. # p < 0.05 vs. TCC, * p < 0.05 vs. Control.

    Article Snippet: Human aortic vascular smooth muscle cells (VSMCs) and human aortic endothelial cells (VECs) were obtained from Wuhan Procell Life Science & Technology Co., Ltd. All cells were primary cells and used between passages 3–8.

    Techniques: CCK-8 Assay, Migration, Control

    The effect of TCC on the biological function of vascular smooth muscle cells (VECs). (A) Apoptosis experiment. (B) Statistical chart of apoptosis experiment data. (C) CCK-8 experiment determines cell viability. (D) Migration experiment. (E) Migration Capability Analysis. # p < 0.05 vs. TCC, * p < 0.05 vs. Control.

    Journal: Frontiers in Cardiovascular Medicine

    Article Title: Research and development of novel embolization materials and study on their feasibility of preventing T2EL after EVAR abdominal aortic aneurysm

    doi: 10.3389/fcvm.2026.1740816

    Figure Lengend Snippet: The effect of TCC on the biological function of vascular smooth muscle cells (VECs). (A) Apoptosis experiment. (B) Statistical chart of apoptosis experiment data. (C) CCK-8 experiment determines cell viability. (D) Migration experiment. (E) Migration Capability Analysis. # p < 0.05 vs. TCC, * p < 0.05 vs. Control.

    Article Snippet: Human aortic vascular smooth muscle cells (VSMCs) and human aortic endothelial cells (VECs) were obtained from Wuhan Procell Life Science & Technology Co., Ltd. All cells were primary cells and used between passages 3–8.

    Techniques: CCK-8 Assay, Migration, Control

    Ai-Aiv , Wire injury model. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet one week before and for another three weeks after injury. Ai , Neointima formation was assessed in movat pentachrome-stained sections three weeks after injury. Scale bar represents 100 µm. Aii , Quantification of neointima area. n = 6-9 mice per genotype. Two-sided unpaired t test. Aiii , Representative DAPI and α-Sma staining. Aiv , Quantification of total cells in the neointima, and VSMC content. n = 3-4 mice per genotype. The quantification of cells is presented as the percentage of positively stained cells per section. Two-sided unpaired t test and Two-sided Mann-Whitney test. Scale bar represents 100 µm. Bi , Two-photon microscopy of endothelial Vcam-1 expression in ex vivo mounted carotid arteries. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet for 4 weeks followed by imaging of Vcam-1 and Cd31 (n = 6-7 mice per group). Bi , Quantification of endothelial Vcam-1 in mounted carotid arteries. Scale bar, 50 µm. The quantification of Vcam-1 expression is presented as the percentage of endothelial lining per field of view. C , Quantitative proteomic profiling of MAoEC. Shown is the reactome pathway of differentially regulated proteins in TNF-α-stimulated cells (FDR-adj. p value < 0.05). Di, Dii , Transcriptomic profiling of mouse aortic smooth muscle cells (MAoSMC). MAoSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with TNF-α for 6 hours and subjected to gene expression profiling. Di , Volcano plot of log 2 FoldChange ( Hdac9 +/+ Apoe –/– versus Hdac9 –/– Apoe –/– ) and –log 10 p-adjusted values showing top 30 differentially expressed genes related to cell migration. Highlighted in green and orange are the upregulated and downregulated genes respectively. Dii , Gene set enrichment analysis showing functional annotation of dysregulated genes (all FDR corrected). Diii , Scratch wound-healing assay. VSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with PDGF-BB for 24 hours and analyzed for their migratory capacity. Quantification of the area covered by migrated cells. n = 5 mice per genotype. Two-sided unpaired t test. Div , Contractile markers and modulators of VSMC phenotypic transformation from the transcriptome analysis. Ei-Fiii , Functional and molecular assays in human aortic smooth muscle cells (HAoSMC). HAoSMC were transiently transfected with HDAC9 siRNA or scrambled control ( SCR ) RNA for 72 hours and subsequently stimulated with TNF-α (20 ng/mL) for indicated periods or left untreated. Ei , Quantification of PDGF-BB-induced proliferation of HAoSMCs by EdU assay. Eii , Representative immunoblots of VCAM-1 and Actin. Quantification of VCAM-1 normalized to Actin levels ( Eiii) , and IL-8 release ( Eiv). Fi , Representative immunoblots of p65 phosphorylation at serine 468 and total p65 levels. Quantification of phosphorylated p65 at serine 468 ( Fii ) and serine 536 ( Fiii ) normalized to total p65. n = 6-7 independent experiments. Two-way ANOVA with Bonferroni multiple comparison test for comparison of HDAC9 siRNA vs. SCR RNA. Data are means ± SEM.

    Journal: bioRxiv

    Article Title: Cardiovascular risk gene HDAC9 drives maladaptive vascular remodeling after arterial injury

    doi: 10.64898/2026.05.12.723753

    Figure Lengend Snippet: Ai-Aiv , Wire injury model. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet one week before and for another three weeks after injury. Ai , Neointima formation was assessed in movat pentachrome-stained sections three weeks after injury. Scale bar represents 100 µm. Aii , Quantification of neointima area. n = 6-9 mice per genotype. Two-sided unpaired t test. Aiii , Representative DAPI and α-Sma staining. Aiv , Quantification of total cells in the neointima, and VSMC content. n = 3-4 mice per genotype. The quantification of cells is presented as the percentage of positively stained cells per section. Two-sided unpaired t test and Two-sided Mann-Whitney test. Scale bar represents 100 µm. Bi , Two-photon microscopy of endothelial Vcam-1 expression in ex vivo mounted carotid arteries. Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control littermate mice received Western-type diet for 4 weeks followed by imaging of Vcam-1 and Cd31 (n = 6-7 mice per group). Bi , Quantification of endothelial Vcam-1 in mounted carotid arteries. Scale bar, 50 µm. The quantification of Vcam-1 expression is presented as the percentage of endothelial lining per field of view. C , Quantitative proteomic profiling of MAoEC. Shown is the reactome pathway of differentially regulated proteins in TNF-α-stimulated cells (FDR-adj. p value < 0.05). Di, Dii , Transcriptomic profiling of mouse aortic smooth muscle cells (MAoSMC). MAoSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with TNF-α for 6 hours and subjected to gene expression profiling. Di , Volcano plot of log 2 FoldChange ( Hdac9 +/+ Apoe –/– versus Hdac9 –/– Apoe –/– ) and –log 10 p-adjusted values showing top 30 differentially expressed genes related to cell migration. Highlighted in green and orange are the upregulated and downregulated genes respectively. Dii , Gene set enrichment analysis showing functional annotation of dysregulated genes (all FDR corrected). Diii , Scratch wound-healing assay. VSMC, isolated from Hdac9 –/– Apoe –/– and Hdac9 +/+ Apoe –/– control mice, were stimulated with PDGF-BB for 24 hours and analyzed for their migratory capacity. Quantification of the area covered by migrated cells. n = 5 mice per genotype. Two-sided unpaired t test. Div , Contractile markers and modulators of VSMC phenotypic transformation from the transcriptome analysis. Ei-Fiii , Functional and molecular assays in human aortic smooth muscle cells (HAoSMC). HAoSMC were transiently transfected with HDAC9 siRNA or scrambled control ( SCR ) RNA for 72 hours and subsequently stimulated with TNF-α (20 ng/mL) for indicated periods or left untreated. Ei , Quantification of PDGF-BB-induced proliferation of HAoSMCs by EdU assay. Eii , Representative immunoblots of VCAM-1 and Actin. Quantification of VCAM-1 normalized to Actin levels ( Eiii) , and IL-8 release ( Eiv). Fi , Representative immunoblots of p65 phosphorylation at serine 468 and total p65 levels. Quantification of phosphorylated p65 at serine 468 ( Fii ) and serine 536 ( Fiii ) normalized to total p65. n = 6-7 independent experiments. Two-way ANOVA with Bonferroni multiple comparison test for comparison of HDAC9 siRNA vs. SCR RNA. Data are means ± SEM.

    Article Snippet: Human Aortic Smooth Muscle Cells (HAoSMCs) were purchased from PromoCell (Heidelberg, Germany), plated on cell culture dishes coated with collagen (Biochrom AG, Berlin, Germany) and cultured in smooth muscle cell growth medium (PromoCell, Heidelberg, Germany), according to manufacturer’s recommendations.

    Techniques: Control, Western Blot, Staining, MANN-WHITNEY, Microscopy, Expressing, Ex Vivo, Imaging, Isolation, Gene Expression, Migration, Functional Assay, Wound Healing Assay, Transformation Assay, Transfection, EdU Assay, Phospho-proteomics, Comparison