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recombinant human vegf a165  (MedChemExpress)


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    Structured Review

    MedChemExpress recombinant human vegf a165
    Recombinant Human Vegf A165, supplied by MedChemExpress, used in various techniques. Bioz Stars score: 94/100, based on 2 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/vegf165/VEGF165%2C+Human/pmc13463935-118-5-9
    Average 94 stars, based on 2 article reviews
    recombinant human vegf a165 - by Bioz Stars, 2026-09
    94/100 stars

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    Related Articles

    Cell Culture:

    Article Title: TRIM34-Mediated Ubiquitination and Degradation of HIF-1A Regulates Glycolysis in Endothelial Cells, Inhibits Angiogenesis, and Relieves the Progression of Lung Fibrosis.
    Article Snippet: Idiopathic interstitial pulmonary fibrosis (IPF) is a chronic and progressive disease characterized by interstitial fibrosis, with poor prognosis and high mortality.. TRIM34 is involved in the intracellular ubiquitination process, but its mechanism of action in IPF is currently unknown.. The purpose of this study was to investigate the effect of TRIM34 on the IPF process and its mechanism.

    other:

    Article Title: Nudifloside, a Secoiridoid Glucoside Derived from Callicarpa nudiflora, Inhibits Endothelial-to-Mesenchymal Transition and Angiogenesis in Endothelial Cells by Suppressing Ezrin Phosphorylation.
    Article Snippet: VEGF165 (HY-P7110A) and TGF-β1(HY-P78168) were purchased from MedChemExpress LLC (Shanghai, China).


    Article Title: Transmembrane modification of tumor vascular targeting peptide A7R as molecular cargo delivery tool.
    Article Snippet: In recent years, targeting tumor angiogenesis has emerged as a prominent research focus in the treatment and prevention of tumor expansion.. A7R (ATWLPPR) exhibits high affinity and specificity for VEGFR-2, which is overexpressed in various tumors.. To enhance the tumor tissue and cell penetration capabilities of A7R, we substituted its non-critical amino acid with Arginine (R) and Glutamic acid (E), cyclized the mutant peptide, and linked it to the membrane permeation sequence using coordination principles.

    Article Title: Recombinant DTβ4-inspired porous 3D vascular graft enhanced antithrombogenicity and recruited circulating CD93 + /CD34 + cells for endothelialization
    Article Snippet: Subsequently, the 3DVGs were immersed in the solution of PBS, VEGF165 (1 mg/ml) (MedChemExpress, Shanghai, China, HY-P7311), Tβ4 (1 mg/ml; 4963.49 Da; China Peptides Ltd., Shanghai), or DTβ4 (1 mg/ml) for 2 hours in the ice bath.

    Control:

    Article Title: LL37 promotes angiogenesis: a potential therapeutic strategy for lower limb ischemic diseases
    Article Snippet: .. Cells were used between passages three and six to ensure consistent cell behavior, prior to treatment with: LL-37 (MCE, Cat# HY-P1222, ddH 2 O); VEGF165 (MCE, Cat#HEK293, 0.1% BSA); Control: phosphate-buffered saline (PBS) (Gibco, Cat# 10010001). ..

    Saline:

    Article Title: LL37 promotes angiogenesis: a potential therapeutic strategy for lower limb ischemic diseases
    Article Snippet: .. Cells were used between passages three and six to ensure consistent cell behavior, prior to treatment with: LL-37 (MCE, Cat# HY-P1222, ddH 2 O); VEGF165 (MCE, Cat#HEK293, 0.1% BSA); Control: phosphate-buffered saline (PBS) (Gibco, Cat# 10010001). ..



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    HBMECs were infected with LV-RNAi-NC or LV-SULF1-RNAi and cultured overnight in medium containing 1% FBS, followed by stimulation <t>with</t> <t>VEGF-A165</t> (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of VEGFR2 ( B ), p-VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.
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    HBMECs were infected with LV-RNAi-NC or LV-SULF1-RNAi and cultured overnight in medium containing 1% FBS, followed by stimulation <t>with</t> <t>VEGF-A165</t> (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of VEGFR2 ( B ), p-VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.
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    MedChemExpress recombinant human vegf165
    HBMECs were infected with LV-RNAi-NC or LV-SULF1-RNAi and cultured overnight in medium containing 1% FBS, followed by stimulation <t>with</t> <t>VEGF-A165</t> (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of VEGFR2 ( B ), p-VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.
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    Image Search Results


    HBMECs were infected with LV-RNAi-NC or LV-SULF1-RNAi and cultured overnight in medium containing 1% FBS, followed by stimulation with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of VEGFR2 ( B ), p-VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Journal: bioRxiv

    Article Title: Xenium In Situ Profiling Uncovers HSPG-Dependent SULF1/VEGFR2 Signaling Mediating Vascular Remodeling in Moyamoya Disease

    doi: 10.64898/2026.04.28.721514

    Figure Lengend Snippet: HBMECs were infected with LV-RNAi-NC or LV-SULF1-RNAi and cultured overnight in medium containing 1% FBS, followed by stimulation with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of VEGFR2 ( B ), p-VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Article Snippet: For signaling assays, HBMECs were cultured overnight in medium containing 1% fetal bovine serum (FBS) and then stimulated with vascular endothelial growth factor A165 (VEGF-A165) protein (HY-P70458A; MedChemExpress [MCE], New Jersey, USA) for 0, 10, and 30 min. For heparinase III pretreatment experiments, HBMECs were cultured in medium containing 1% FBS for 24 h, pretreated with heparinase III (HY-P2953; MCE, New Jersey, USA) at 20 mU for 2 h, and then stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. For functional assays and qRT-PCR, transfected HBMECs were treated with VEGF-A165 at a final concentration of 10 ng/mL.

    Techniques: Infection, Cell Culture, Western Blot

    HBMECs were processed as follows: LV-oe-vector group, cells were transfected with the control lentiviral plasmid; LV-oe-vector+heparinase III group, cells were transfected with the control lentiviral plasmid and pretreated with heparinase III; LV-oe-SULF1 group, cells were transfected with the LV-SULF1 lentiviral plasmid; LV-oe-SULF1+heparinase III group, cells were transfected with the LV-SULF1 lentiviral plasmid and pretreated with heparinase III. All groups were stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of p-VEGFR2 ( B ), VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Journal: bioRxiv

    Article Title: Xenium In Situ Profiling Uncovers HSPG-Dependent SULF1/VEGFR2 Signaling Mediating Vascular Remodeling in Moyamoya Disease

    doi: 10.64898/2026.04.28.721514

    Figure Lengend Snippet: HBMECs were processed as follows: LV-oe-vector group, cells were transfected with the control lentiviral plasmid; LV-oe-vector+heparinase III group, cells were transfected with the control lentiviral plasmid and pretreated with heparinase III; LV-oe-SULF1 group, cells were transfected with the LV-SULF1 lentiviral plasmid; LV-oe-SULF1+heparinase III group, cells were transfected with the LV-SULF1 lentiviral plasmid and pretreated with heparinase III. All groups were stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. A , Representative western blots of VEGFR2, p-VEGFR2, ERK1/2, p-ERK1/2, AKT, p-AKT, SULF1, and β-actin. B through H , Quantitative analysis of p-VEGFR2 ( B ), VEGFR2 ( C ), ERK1/2 ( D ), p-ERK1/2 ( E ), AKT ( F ), p-AKT ( G ), and SULF1 ( H ). Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Article Snippet: For signaling assays, HBMECs were cultured overnight in medium containing 1% fetal bovine serum (FBS) and then stimulated with vascular endothelial growth factor A165 (VEGF-A165) protein (HY-P70458A; MedChemExpress [MCE], New Jersey, USA) for 0, 10, and 30 min. For heparinase III pretreatment experiments, HBMECs were cultured in medium containing 1% FBS for 24 h, pretreated with heparinase III (HY-P2953; MCE, New Jersey, USA) at 20 mU for 2 h, and then stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. For functional assays and qRT-PCR, transfected HBMECs were treated with VEGF-A165 at a final concentration of 10 ng/mL.

    Techniques: Plasmid Preparation, Transfection, Control, Western Blot

    HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL). A , Representative images of tube formation in each group after 6 h. Scale bars are shown in the panels. B and C , Quantitative analysis of branch points ( B ) and total segments length ( C ). D , Representative microscopic images of migrating HBMECs in the Transwell assay after 24 h. Scale bars are shown in the panels. E , Quantitative analysis of the number of migrating cells. Results were mean ± SD for three individual experiments. n =3, * P <0.05, ** P <0.01.

    Journal: bioRxiv

    Article Title: Xenium In Situ Profiling Uncovers HSPG-Dependent SULF1/VEGFR2 Signaling Mediating Vascular Remodeling in Moyamoya Disease

    doi: 10.64898/2026.04.28.721514

    Figure Lengend Snippet: HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL). A , Representative images of tube formation in each group after 6 h. Scale bars are shown in the panels. B and C , Quantitative analysis of branch points ( B ) and total segments length ( C ). D , Representative microscopic images of migrating HBMECs in the Transwell assay after 24 h. Scale bars are shown in the panels. E , Quantitative analysis of the number of migrating cells. Results were mean ± SD for three individual experiments. n =3, * P <0.05, ** P <0.01.

    Article Snippet: For signaling assays, HBMECs were cultured overnight in medium containing 1% fetal bovine serum (FBS) and then stimulated with vascular endothelial growth factor A165 (VEGF-A165) protein (HY-P70458A; MedChemExpress [MCE], New Jersey, USA) for 0, 10, and 30 min. For heparinase III pretreatment experiments, HBMECs were cultured in medium containing 1% FBS for 24 h, pretreated with heparinase III (HY-P2953; MCE, New Jersey, USA) at 20 mU for 2 h, and then stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. For functional assays and qRT-PCR, transfected HBMECs were treated with VEGF-A165 at a final concentration of 10 ng/mL.

    Techniques: Transfection, Plasmid Preparation, Transwell Assay

    HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL) for 24 h. A , Representative cell scratch images of HBMECs at 0 and 24 h in each group. Dashed lines indicate the wound margins. Scale bars are shown in the panels. B , Quantitative analysis of relative migration ability. Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Journal: bioRxiv

    Article Title: Xenium In Situ Profiling Uncovers HSPG-Dependent SULF1/VEGFR2 Signaling Mediating Vascular Remodeling in Moyamoya Disease

    doi: 10.64898/2026.04.28.721514

    Figure Lengend Snippet: HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL) for 24 h. A , Representative cell scratch images of HBMECs at 0 and 24 h in each group. Dashed lines indicate the wound margins. Scale bars are shown in the panels. B , Quantitative analysis of relative migration ability. Results were mean ± SD for three individual experiments. n =3, ** P <0.01.

    Article Snippet: For signaling assays, HBMECs were cultured overnight in medium containing 1% fetal bovine serum (FBS) and then stimulated with vascular endothelial growth factor A165 (VEGF-A165) protein (HY-P70458A; MedChemExpress [MCE], New Jersey, USA) for 0, 10, and 30 min. For heparinase III pretreatment experiments, HBMECs were cultured in medium containing 1% FBS for 24 h, pretreated with heparinase III (HY-P2953; MCE, New Jersey, USA) at 20 mU for 2 h, and then stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. For functional assays and qRT-PCR, transfected HBMECs were treated with VEGF-A165 at a final concentration of 10 ng/mL.

    Techniques: Transfection, Plasmid Preparation, Migration

    HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL) for 24 h. The mRNA levels of ANGPT2 ( A ), ESM1 ( B ), KDR ( C ), ICAM1 ( D ), and VCAM1 ( E ) were detected by qRT-PCR. Results were mean ± SD for three individual experiments. n =3, * P <0.05, ** P <0.01.

    Journal: bioRxiv

    Article Title: Xenium In Situ Profiling Uncovers HSPG-Dependent SULF1/VEGFR2 Signaling Mediating Vascular Remodeling in Moyamoya Disease

    doi: 10.64898/2026.04.28.721514

    Figure Lengend Snippet: HBMECs were transfected with LV-RNAi-NC, LV-SULF1-RNAi, LV-oe-vector, and LV-oe-SULF1 lentiviral plasmids, respectively. After transfection, cells were treated with VEGF-A165 (10 ng/mL) for 24 h. The mRNA levels of ANGPT2 ( A ), ESM1 ( B ), KDR ( C ), ICAM1 ( D ), and VCAM1 ( E ) were detected by qRT-PCR. Results were mean ± SD for three individual experiments. n =3, * P <0.05, ** P <0.01.

    Article Snippet: For signaling assays, HBMECs were cultured overnight in medium containing 1% fetal bovine serum (FBS) and then stimulated with vascular endothelial growth factor A165 (VEGF-A165) protein (HY-P70458A; MedChemExpress [MCE], New Jersey, USA) for 0, 10, and 30 min. For heparinase III pretreatment experiments, HBMECs were cultured in medium containing 1% FBS for 24 h, pretreated with heparinase III (HY-P2953; MCE, New Jersey, USA) at 20 mU for 2 h, and then stimulated with VEGF-A165 (50 ng/mL) for 0, 10, and 30 min. For functional assays and qRT-PCR, transfected HBMECs were treated with VEGF-A165 at a final concentration of 10 ng/mL.

    Techniques: Transfection, Plasmid Preparation, Quantitative RT-PCR