Recombinant AGT antibody (Alexa Fluor 488)
The Rabbit Monoclonal anti-AGT antibody is suitable to detect AGT in samples from Human. It has been validated for WB, IP, ICC, IF and FACS.
Catalog No. ABIN7792560
$438.90
Plus shipping costs $50.00
Delivery in 6 to 9 Business Days
Quick Overview for Recombinant AGT antibody (Alexa Fluor 488) (ABIN7792560)
Target
See all AGT Antibodies
AGT
(Angiotensinogen (serpin Peptidase Inhibitor, Clade A, Member 8) (AGT))
Antibody Type
Recombinant Antibody
Reactivity
Human
Host
Rabbit
Clonality
Monoclonal
Conjugate
This AGT antibody is conjugated to Alexa Fluor 488
Application
Western Blotting (WB), Immunoprecipitation (IP), Immunocytochemistry (ICC), Immunofluorescence (IF), Flow Cytometry (FACS)
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Purpose
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Conjugated Angiotensinogen Rabbit mAb
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Specificity
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Angiotensinogen Antibody detects endogenous levels of total Angiotensinogen
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Purification
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Affinity-chromatography
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Immunogen
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A synthesized peptide derived from human Angiotensinogen
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Application Notes
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most applications: 1: 50 - 1: 250
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Restrictions
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For Research Use only
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Buffer
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Liquid in PBS, 0.5 % BSA, 40 % Glycerol, 0.02 % Sodium Azide.
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Preservative
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Sodium azide
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Precaution of Use
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This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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Handling Advice
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Protect from light!
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Storage
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4 °C
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Storage Comment
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Store at 4°C in dark for 6 months
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Target
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AGT
(Angiotensinogen (serpin Peptidase Inhibitor, Clade A, Member 8) (AGT))
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Alternative Name
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Angiotensinogen
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Background
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AGT, Ang, Ang I, Ang II, Ang III, Angiotensinogen, ANHU, ANRT, AT-2, AT-II, PAT, Pre angiotensinogen, Serpin A8, SERPINA8,
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UniProt
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P01019
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Pathways
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JAK-STAT Signaling, ACE Inhibitor Pathway, EGFR Signaling Pathway, Peptide Hormone Metabolism, Regulation of Systemic Arterial Blood Pressure by Hormones, Regulation of Lipid Metabolism by PPARalpha, Protein targeting to Nucleus, Feeding Behaviour, Monocarboxylic Acid Catabolic Process, Dicarboxylic Acid Transport, Positive Regulation of Response to DNA Damage Stimulus, Regulation of long-term Neuronal Synaptic Plasticity
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