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Figure 1. Western blot analysis of MMP9 using anti-MMP9 antibody (PB9668). Electrophoresis was performed on a 5-20% SDS-PAGE gel at 70V (Stacking gel) / 90V (Resolving gel) for 2-3 hours. The sample well of each lane was loaded with 30 ug of sample under reducing conditions. Lane 1: human A549 whole cell lysates. After electrophoresis, proteins were transferred to a nitrocellulose membrane at 150 mA for 50-90 minutes. Blocked the membrane with 5% non-fat milk/TBS for 1.5 hour at RT. The membrane was incubated with rabbit anti-MMP9 antigen affinity purified polyclonal antibody (Catalog # PB9668) at 0.5 microg/mL overnight at 4°C, then washed with TBS-0.1%Tween 3 times with 5 minutes each and probed with a goat anti-rabbit IgG-HRP secondary antibody at a dilution of 1:5000 for 1.5 hour at RT. The signal is developed using an Enhanced Chemiluminescent detection (ECL) kit (Catalog # EK1002) with Tanon 5200 system. A specific band was detected for MMP9 at approximately 79 kDa. The expected band size for MMP9 is at 79 kDa.
Figure 1. Western blot analysis of MMP9 using anti-MMP9 antibody (PB9668). Electrophoresis was performed on a 5-20% SDS-PAGE gel at 70V (Stacking gel) / 90V (Resolving gel) for 2-3 hours. The sample well of each lane was loaded with 30 ug of sample under reducing conditions. Lane 1: human A549 whole cell lysates. After electrophoresis, proteins were transferred to a nitrocellulose membrane at 150 mA for 50-90 minutes. Blocked the membrane with 5% non-fat milk/TBS for 1.5 hour at RT. The membrane was incubated with rabbit anti-MMP9 antigen affinity purified polyclonal antibody (Catalog # PB9668) at 0.5 microg/mL overnight at 4°C, then washed with TBS-0.1%Tween 3 times with 5 minutes each and probed with a goat anti-rabbit IgG-HRP secondary antibody at a dilution of 1:5000 for 1.5 hour at RT. The signal is developed using an Enhanced Chemiluminescent detection (ECL) kit (Catalog # EK1002) with Tanon 5200 system. A specific band was detected for MMP9 at approximately 79 kDa. The expected band size for MMP9 is at 79 kDa.
Figure 1. Western blot analysis of MMP9 using anti-MMP9 antibody (PB9668). Electrophoresis was performed on a 5-20% SDS-PAGE gel at 70V (Stacking gel) / 90V (Resolving gel) for 2-3 hours. The sample well of each lane was loaded with 30 ug of sample under reducing conditions. Lane 1: human A549 whole cell lysates. After electrophoresis, proteins were transferred to a nitrocellulose membrane at 150 mA for 50-90 minutes. Blocked the membrane with 5% non-fat milk/TBS for 1.5 hour at RT. The membrane was incubated with rabbit anti-MMP9 antigen affinity purified polyclonal antibody (Catalog # PB9668) at 0.5 microg/mL overnight at 4°C, then washed with TBS-0.1%Tween 3 times with 5 minutes each and probed with a goat anti-rabbit IgG-HRP secondary antibody at a dilution of 1:5000 for 1.5 hour at RT. The signal is developed using an Enhanced Chemiluminescent detection (ECL) kit (Catalog # EK1002) with Tanon 5200 system. A specific band was detected for MMP9 at approximately 79 kDa. The expected band size for MMP9 is at 79 kDa.

Anti-MMP9 Antibody Picoband(r)

Research Use Only
PB9668
Boster Bio
ApplicationsWestern Blot, ELISA, ImmunoHistoChemistry
Product group Antibodies
ReactivityHuman
TargetMMP9
100 ug
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Overview

  • Supplier
    Boster Bio
  • Product Name
    Anti-MMP-9 Antibody
  • Delivery Days Customer
    9
  • Antibody Specificity
    No cross reactivity with other proteins.
  • Application Supplier Note
    Tested Species: In-house tested species with positive results. Other applications have not been tested. Optimal dilutions should be determined by end users.
  • Applications
    Western Blot, ELISA, ImmunoHistoChemistry
  • Certification
    Research Use Only
  • Clonality
    Polyclonal
  • Concentration
    500 ug/ml
  • Formulation
    Lyophilized
  • Gene ID4318
  • Target name
    MMP9
  • Target description
    matrix metallopeptidase 9
  • Target synonyms
    CLG4B; GELB; macrophage gelatinase; MANDP2; matrix metallopeptidase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase); matrix metalloproteinase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase); matrix metalloproteinase-9; MMP-9; type V collagenase
  • Host
    Rabbit
  • Isotype
    IgG
  • Protein IDP14780
  • Protein Name
    Matrix metalloproteinase-9
  • Scientific Description
    Boster Bio Anti-MMP9 Antibody Picoband® catalog # PB9668. Tested in ELISA, IHC, WB applications. This antibody reacts with Human. The brand Picoband indicates this is a premium antibody that guarantees superior quality, high affinity, and strong signals with minimal background in Western blot applications. Only our best-performing antibodies are designated as Picoband, ensuring unmatched performance.
  • Reactivity
    Human
  • Storage Instruction
    -20°C,2°C to 8°C
  • UNSPSC
    12352203

References

  • MiR-135a-5p suppresses trophoblast proliferative, migratory, invasive, and angiogenic activity in the context of unexplained spontaneous abortion. Lu Y et al., 2022 May 24, Reprod Biol Endocrinol
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  • Combination of ferulic acid, ligustrazine and tetrahydropalmatine inhibits invasion and metastasis through MMP/TIMP signaling in endometriosis. Tan Y et al., 2021, PeerJ
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  • Long Noncoding RNA TINCR-Mediated Regulation of Acetyl-CoA Metabolism Promotes Nasopharyngeal Carcinoma Progression and Chemoresistance. Zheng ZQ et al., 2020 Dec 1, Cancer Res
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  • Insulin-like growth factor-binding protein 3 inhibits angiotensin II-induced aortic smooth muscle cell phenotypic switch and matrix metalloproteinase expression. Chen S et al., 2020 Nov, Exp Physiol
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  • Cytotoxic necrotizing factor 1 promotes prostate cancer progression through activating the Cdc42-PAK1 axis. Guo Y et al., 2017 Oct, J Pathol
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  • Circular RNA 0000096 affects cell growth and migration in gastric cancer. Li P et al., 2017 Feb 28, Br J Cancer
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  • TGF-beta1 promotes scar fibroblasts proliferation and transdifferentiation via up-regulating MicroRNA-21. Liu Y et al., 2016 Aug 24, Sci Rep
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  • NOB1 silencing inhibits the growth and metastasis of laryngeal cancer cells through the regulation of JNK signaling pathway. Gao X et al., 2016 Jun, Oncol Rep
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  • In vitro study on human cytomegalovirus affecting early pregnancy villous EVTs invasion function. Tao L et al., 2011 Mar 11, Virol J
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