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Rabbit Anti-VEGFA  antibody (bs-1313R)  
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產(chǎn)品編號(hào) bs-1313R
英文名稱 Rabbit Anti-VEGFA  antibody
中文名稱 血管內(nèi)皮生長(zhǎng)因子抗體
別    名 Vascuoar endothelial growth factor A; VEGF A; vascular endothelial growth factor A isoform 2 precursor; MGC70609; MVCD1; VEGF; VPF; VEGFA_HUMAN; VEGF-A; Vascular permeability factor (VPF);   
Specific References  (60)     |     bs-1313R has been referenced in 60 publications.
[IF=17.521] Huan Lei. et al. A Combination Therapy Using Electrical Stimulation and Adaptive, Conductive Hydrogels Loaded with Self-Assembled Nanogels Incorporating Short Interfering RNA Promotes the Repair of Diabetic Chronic Wounds. Advanced Science. 2022 Sep;:2201425  IF ;  Rat.  
[IF=16.744] Lubin Zhou. et al. A self-pumping dressing with in situ modification of non-woven fabric for promoting diabetic wound healing. CHEM ENG J. 2022 Dec;:141108  IHC ;  Rat.  
[IF=14.919] Lu, Gonggong. et al. An instantly fixable and self-adaptive scaffold for skull regeneration by autologous stem cell recruitment and angiogenesis. NAT COMMUN. 2022 May;13(1):1-20  IF ;  Rabbit.  
[IF=10.652] Pei Liu. et al. Biphasic CK2.1-coated β-glycerophosphate chitosan/LL37-modified layered double hydroxide chitosan composite scaffolds enhance coordinated hyaline cartilage and subchondral bone regeneration. Chem Eng J. 2021 Aug;418:129531  IHC ;  Rabbit.  
[IF=10.435] Mei, Jiawei. et al. An injectable photo-cross-linking silk hydrogel system augments diabetic wound healing in orthopaedic surgery through spatiotemporal immunomodulation. J NANOBIOTECHNOL. 2022 Dec;20(1):1-22  IHC ;  Mouse.  
[IF=9.933] Qiuyue Ding. et al. Bioinspired Multifunctional Black Phosphorus Hydrogel with Antibacterial and Antioxidant Properties: A Stepwise Countermeasure for Diabetic Skin Wound Healing. 2022 Feb 19  WB ;  Human.  
[IF=9.078] Lin Zou. et al. Icariin-releasing 3D printed scaffold for bone regeneration. Compos Part B-Eng. 2022 Mar;232:109625  IHC ;  Rat.  
[IF=7.242] Yong Tang. et al. Laminin alpha 4 promotes bone regeneration by facilitating cell adhesion and vascularization. Acta Biomater. 2021 Mar;:  WB,IF,IHC ;  Mouse.  
[IF=6.832] Liu, Jingyu. et al. Therapeutic effect of adipose stromal vascular fraction spheroids for partial bladder outlet obstruction induced underactive bladder. Stem Cell Res Ther. 2022 Dec;13(1):1-16  WB ;  Rat.  
[IF=6.684] Huihua Kai. et al. LncRNA NORAD Promotes Vascular Endothelial Cell Injury and Atherosclerosis Through Suppressing VEGF Gene Transcription via Enhancing H3K9 Deacetylation by Recruiting HDAC6. Front Cell Dev Biol. 2021; 9: 701628  WB ;  Human.  
[IF=6.291] Peng Zheng. et al. Alleviative effect of melatonin on the decrease of uterine receptivity caused by blood ammonia through ROS/NF-κB pathway in dairy cow. Ecotox Environ Safe. 2022 Feb;231:113166  ELISA ;  Bovine.  
[IF=6.208] Yongxin Guo. et al. Beneficial Effects of Oleosomes Fused with Human Fibroblast Growth Factor 1 on Wound Healing via the Promotion of Angiogenesis. INT J MOL SCI. 2022 Jan;23(21):13152  WB ;  Rat, Human.  
[IF=6.064] Yu Hedong. et al. Improved repair of rabbit calvarial defects with hydroxyapatite/chitosan/polycaprolactone composite scaffold-engrafted EPCs and BMSCs. FRONT BIOENG BIOTECH. 2022 Aug;0:1275  WB ;  Rabbit.  
[IF=5.923] Liang Hu. et al. Transient Activation of Hedgehog Signaling Inhibits Cellular Senescence and Inflammation in Radiated Swine Salivary Glands through Preserving Resident Macrophages. Int J Mol Sci. 2021 Jan;22(24):13493  WB,IHC ;  Pig.  
[IF=5.201] Qiong Li. et al. CD73+ Mesenchymal Stem Cells Ameliorate Myocardial Infarction by Promoting Angiogenesis. Front Cell Dev Biol. 2021; 9: 637239  WB,IHC ;  Rat.  
[IF=5.195] Qian Yu. et al. Yuhong ointment ameliorates inflammatory responses and wound healing in scalded mice. J ETHNOPHARMACOL. 2023 Apr;306:116118  IHC ;  Mouse.  
[IF=5.195] Haiyue Zhao. et al. Naru-3 inhibits inflammation, synovial hyperplasia, and neovascularization in collagen-induced arthritis in rats. J ETHNOPHARMACOL. 2023 Jul;311:116350  IHC ;  Rat.  
[IF=4.996] Zhou Zihe. et al. External beam radiotherapy inhibits stent related granulation hyperplasia in rabbit trachea. SCI REP-UK. 2023 May;13(1):1-8  IHC ;  Rabbit.  
[IF=4.848] Hu Y et al. Non-Invasive Estimation of Glioma IDH1 Mutation and VEGF Expression by Histogram Analysis of Dynamic Contrast-Enhanced MRIFront Oncol.2020 Dec 8;10:593102.  IHC ;  Human.  
[IF=4.784] Ding J et al. Anti-angiogenic effect of a chemically sulfated polysaccharide from Phellinus ribis by inhibiting VEGF/VEGFR pathway. Int J Biol Macromol. 2020 Mar 11;154:72-81.  IHC,WB ;  mouse.  
[IF=4.631] Jufang Wang. et al. TNF-α and IL-1β Promote Renal Podocyte Injury in T2DM Rats by Decreasing Glomerular VEGF/eNOS Expression Levels and Altering Hemodynamic Parameters. J INFLAMM RES. 2022 Dec 09  WB ;  Rat.  
[IF=4.473] Yanhua Mao. et al. Human amniotic mesenchymal stem cells?promote endometrium regeneration in a rat model of intrauterine adhesion. CELL BIOL INT. 2022 Nov;:  IHC ;  Rat.  
[IF=4.268] Jian-xia Wen. et al. Therapeutic Effects and Potential Mechanism of Dehydroevodiamine on N-Methyl-N′-Nitro-N-Nitrosoguanidine-Induced Chronic Atrophic Gastritis. Phytomedicine. 2021 Jun;:153619  WB,IHC ;  Rat.  
[IF=4.197] Xuewen Qian. et al. Acidosis induces synovial fibroblasts to release vascular endothelial growth factor via acid-sensitive ion channel 1a. Lab Invest. 2020 Aug;101(3):280-291  WB,IHC ;  Human.  
[IF=4.064] Ming Ni. et al. Sox11 Modified Tendon-Derived Stem Cells Promote the Repair of Osteonecrosis of Femoral Head:. Cell Transplant. 2021;():  WB ;  Rabbit.  
[IF=3.973] Liu N et al. Polyphotosensitizer Nanogels for GSH-Responsive Histone Deacetylase Inhibitors delivery and enhanced Cancer Photodynamic Therapy. Colloids Surf B Biointerfaces.?2019 Dec 23;188:110753.  IHC-P ;  Mouse.  
[IF=3.887] Yan LI. et al. The combination of EGCG with warfarin reduces deep vein thrombosis in rabbits through modulating HIF-1α and VEGF via the PI3K/AKT and ERK1/2 signaling pathways. CHIN J NAT MEDICINES. 2022 Sep;20:679  WB ;  Human.  
[IF=3.752] Lifen Wang. et al. Electroacupuncture attenuates ischemic injury after stroke and promotes angiogenesis via activation of EPO mediated Src and VEGF signaling pathways. PLOS ONE. 2022 Sep;17(9):e0274620  WB ;  Rat.  
[IF=3.528] Jie Wang. et al. A radiomics model based on DCE-MRI and DWI may improve the prediction of estimating IDH1 mutation and angiogenesis in gliomas. Eur J Radiol. 2022 Feb;147:110141  IHC ;  Human.  
[IF=3.44] Han Y et al. Studies on bacterial cellulose/poly vinyl alcohol (BC/PVA) hydrogel composites as tissue-engineered corneal stroma. Biomed Mater.?2019 Nov 12.  IHC-P ;  Rabbit.  
研究領(lǐng)域 腫瘤  信號(hào)轉(zhuǎn)導(dǎo)  生長(zhǎng)因子和激素  血管內(nèi)皮細(xì)胞  
抗體來源 Rabbit
克隆類型 Polyclonal
交叉反應(yīng) Human,Mouse,Rat,Rabbit (predicted: Pig,Cow,Chicken,Dog)
產(chǎn)品應(yīng)用 WB=1:500-2000,IHC-P=1:100-500,IHC-F=1:100-500,IF=1:100-500,ELISA=1:5000-10000
not yet tested in other applications.
optimal dilutions/concentrations should be determined by the end user.
理論分子量 23kDa
細(xì)胞定位 細(xì)胞外基質(zhì) 分泌型蛋白 
性    狀 Liquid
濃    度 1mg/ml
免 疫 原 KLH conjugated synthetic peptide derived from human VEGF: 102-213/213 
亞    型 IgG
純化方法 affinity purified by Protein A
緩 沖 液 0.01M TBS (pH7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol.
保存條件 Shipped at 4℃. Store at -20℃ for one year. Avoid repeated freeze/thaw cycles.
注意事項(xiàng) This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
PubMed PubMed
產(chǎn)品介紹 This gene is a member of the PDGF/VEGF growth factor family and encodes a protein that is often found as a disulfide linked homodimer. This protein is a glycosylated mitogen that specifically acts on endothelial cells and has various effects, including mediating increased vascular permeability, inducing angiogenesis, vasculogenesis and endothelial cell growth, promoting cell migration, and inhibiting apoptosis. Elevated levels of this protein is linked to POEMS syndrome, also known as Crow-Fukase syndrome. Mutations in this gene have been associated with proliferative and nonproliferative diabetic retinopathy. Alternatively spliced transcript variants, encoding either freely secreted or cell-associated isoforms, have been characterized. There is also evidence for the use of non-AUG (CUG) translation initiation sites upstream of, and in-frame with the first AUG, leading to additional isoforms.

Function:
Growth factor active in angiogenesis, vasculogenesis and endothelial cell growth. Induces endothelial cell proliferation, promotes cell migration, inhibits apoptosis and induces permeabilization of blood vessels. Binds to the FLT1/VEGFR1 and KDR/VEGFR2 receptors, heparan sulfate and heparin. NRP1/Neuropilin-1 binds isoforms VEGF-165 and VEGF-145. Isoform VEGF165B binds to KDR but does not activate downstream signaling pathways, does not activate angiogenesis and inhibits tumor growth.

Subunit:
Homodimer; disulfide-linked. Also found as heterodimer with PGF.

Subcellular Location:
Secreted. Note=VEGF121 is acidic and freely secreted. VEGF165 is more basic, has heparin-binding properties and, although a signicant proportion remains cell-associated, most is freely secreted. VEGF189 is very basic, it is cell-associated after secretion and is bound avidly by heparin and the extracellular matrix, although it may be released as a soluble form by heparin, heparinase or plasmin.

Tissue Specificity:
Isoform VEGF189, isoform VEGF165 and isoform VEGF121 are widely expressed. Isoform VEGF206 and isoform VEGF145 are not widely expressed.

DISEASE:
Defects in VEGFA are a cause of susceptibility to microvascular complications of diabetes type 1 (MVCD1) [MIM:603933]. These are pathological conditions that develop in numerous tissues and organs as a consequence of diabetes mellitus. They include diabetic retinopathy, diabetic nephropathy leading to end-stage renal disease, and diabetic neuropathy. Diabetic retinopathy remains the major cause of new-onset blindness among diabetic adults. It is characterized by vascular permeability and increased tissue ischemia and angiogenesis.

Similarity:
Belongs to the PDGF/VEGF growth factor family.

SWISS:
P15692

Gene ID:
7422

Database links:

Entrez Gene: 403802 Dog

Entrez Gene: 7422 Human

Entrez Gene: 22339 Mouse

Entrez Gene: 83785 Rat

Omim: 192240 Human

SwissProt: Q9MYV3 Dog

SwissProt: P15692 Human

SwissProt: Q00731 Mouse

SwissProt: P16612 Rat

Unigene: 73793 Human

Unigene: 282184 Mouse

Unigene: 1923 Rat




血管內(nèi)皮細(xì)胞生長(zhǎng)因子(VEGF)是一種特異作用于血管內(nèi)皮細(xì)胞的多功能細(xì)胞因子,它能引起血管通透性增加,引起細(xì)胞外基質(zhì)成分改變,誘導(dǎo)血管形成.在炎癥、創(chuàng)傷愈合、心臟缺血、動(dòng)脈粥樣硬化、糖尿病性視網(wǎng)膜病變及腫瘤形成等與血管生成和病變有關(guān)的諸多病理過程中起重要作用.
VEGF與血管生成有關(guān),因而與腫瘤生長(zhǎng)有很大關(guān)系,近年來受到很多關(guān)注。
產(chǎn)品圖片
Sample:Kidney(Mouse) Lysate at 30 ug Primary: Anti-VEGF (bs-1313R) at 1/300 dilution Secondary: IRDye800CW Goat Anti-Rabbit IgG at 1/20000 dilution Predicted band size: 23 kD Observed band size: 27 kD
Tissue/cell: rabbit liver tissue; 4% Paraformaldehyde-fixed and paraffin-embedded; Antigen retrieval: citrate buffer ( 0.01M, pH 6.0 ), Boiling bathing for 15min; Block endogenous peroxidase by 3% Hydrogen peroxide for 30min; Blocking buffer (normal goat serum,C-0005) at 37∩ for 20 min; Incubation: Anti-VEGF Polyclonal Antibody, Unconjugated(bs-1313R) 1:400, overnight at 4∑C, followed by conjugation to the secondary antibody(SP-0023) and DAB(C-0010) staining
Tissue/cell: rat brain tissue; 4% Paraformaldehyde-fixed and paraffin-embedded; Antigen retrieval: citrate buffer ( 0.01M, pH 6.0 ), Boiling bathing for 15min; Block endogenous peroxidase by 3% Hydrogen peroxide for 30min; Blocking buffer (normal goat serum,C-0005) at 37∩ for 20 min; Incubation: Anti-VEGF Polyclonal Antibody, Unconjugated(bs-1313R) 1:300, overnight at 4∑C, followed by conjugation to the secondary antibody(SP-0023) and DAB(C-0010) staining
Tissue/cell: human colon carcinoma; 4% Paraformaldehyde-fixed and paraffin-embedded; Antigen retrieval: citrate buffer ( 0.01M, pH 6.0 ), Boiling bathing for 15min; Block endogenous peroxidase by 3% Hydrogen peroxide for 30min; Blocking buffer (normal goat serum,C-0005) at 37∩ for 20 min; Incubation: Anti-VEGF Polyclonal Antibody, Unconjugated(bs-1313R) 1:200, overnight at 4∑C, followed by conjugation to the secondary antibody(SP-0023) and DAB(C-0010) staining
Paraformaldehyde-fixed, paraffin embedded (rat kidney); Antigen retrieval by boiling in sodium citrate buffer (pH6.0) for 15min; Blocking buffer (normal goat serum) at 37°C for 30min; Incubation with (VEGFA) Polyclonal Antibody, Unconjugated (bs-1313R) at 1:200 overnight at 4°C, followed by a conjugated Goat Anti-Rabbit IgG antibody (bs-0295G-AF594) for 90 minutes, and DAPI for nuclei staining.
Paraformaldehyde-fixed, paraffin embedded (mouse kidney); Antigen retrieval by boiling in sodium citrate buffer (pH6.0) for 15min; Blocking buffer (normal goat serum) at 37°C for 30min; Incubation with (VEGFA) Polyclonal Antibody, Unconjugated (bs-1313R) at 1:200 overnight at 4°C, followed by a conjugated Goat Anti-Rabbit IgG antibody (bs-0295G-AF594) for 90 minutes, and DAPI for nuclei staining.
Tissue/cell: rabbit meniscus tissue;4% Paraformaldehyde-fixed and paraffin-embedded; Antigen retrieval: citrate buffer ( 0.01M, pH 6.0 ), Boiling bathing for 15min; Blocking buffer (normal goat serum,C-0005) at 37∩ for 20 min; Incubation: Anti-VEGF Polyclonal Antibody, Unconjugated(bs-1313R) 1:300, overnight at 4∑C; The secondary antibody was Goat Anti-Rabbit IgG, PE conjugated(bs-0295G-PE)used at 1:200 dilution for 40 minutes at 37∑C. DAPI(5ug/ml,blue,C-0033) was used to stain the cell nuclei
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