| Field | Specification |
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| Host | |
| Immunogen | A synthesized peptide derived from human Adiponectin was used as the immunogen for the Adipoq antibody. |
| Isotype | |
| Product Type | |
| Purity | |
| Reactivity | |
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| Target | |
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Overview
Adipoq Antibody / Adiponectin is a anti-Adipoq Rabbit antibody Recombinant Rabbit Monoclonal clone 30A64 supplied in Liquid format. Recommended for workflows such as Western blot (WB), Immunohistochemistry (IHC), Immunocytochemistry (ICC), Immunofluorescence (IF) with listed reactivity in Mouse.
Key elements and design rationale
- Target: Adipoq
- Antibody details: Rabbit, Recombinant Rabbit Monoclonal, clone 30A64, isotype Rabbit IgG
- Format: Liquid
- Applications (as listed): WB, IHC, ICC, IF
Biological background
Adipoq antibody is widely applied in endocrinology, metabolism research, and cardiovascular biology. Adiponectin improves insulin sensitivity and has anti inflammatory and anti atherogenic properties. Reduced adiponectin levels are associated with obesity, type 2 diabetes, metabolic syndrome, and coronary artery disease. By detecting adiponectin, researchers can evaluate how adipose tissue hormones regulate systemic metabolism and disease risk.
ELISA quantifies circulating adiponectin in serum and plasma, while western blotting detects its oligomeric forms. Immunohistochemistry maps adiponectin expression in adipose tissue and other metabolic organs. These applications provide powerful tools for exploring adipokine biology.
Adiponectin has protective roles in vascular biology, reducing endothelial activation and inhibiting smooth muscle proliferation. It also influences inflammation by modulating cytokine production and macrophage polarization. Dysregulation of adiponectin contributes to insulin resistance, atherosclerosis, and nonalcoholic fatty liver disease. By applying Adipoq antibody, scientists can study mechanisms linking adipose tissue function to systemic metabolism and cardiovascular health.
Adipoq antibody from
Research relevance and current trends
- Connecting protein-level changes to phenotype using orthogonal readouts (genetic perturbation, transcriptomics, imaging).
- Considering isoforms and post-translational regulation when interpreting protein-level changes.
- Comparing results across species and model systems with matched controls.
Common research applications
- Western blotting: compare relative abundance and activation-state changes across conditions.
- Immunofluorescence: visualize subcellular distribution and cell-to-cell heterogeneity.
- Immunohistochemistry: map target signal in tissue context and compare regions/phenotypes.
Interpret changes in signal alongside appropriate controls and, when relevant, in parallel with total-protein or pathway readouts.
Notes for experimental interpretation
- Signal can reflect expression level, isoform composition, and post-translational state; interpret results in the context of your model system and stimuli.
- Species differences and sample matrices can influence epitope recognition; prioritize matched controls and orthogonal confirmation when feasible.
Antibody notes: Monoclonal antibodies provide a defined epitope recognition profile that can support consistent comparisons across experiments.
Customization & Add-ons: Can’t find the antibody you need—or require a custom format for your assay? We can help you source the best match or support custom antibody solutions for diverse research needs, including species and isotype selection, conjugations and labeling (e.g., HRP/AP, biotin, fluorophores), purification grade options (Protein A/G, affinity purified), formulation preferences (buffer selection, carrier-free, glycerol-free), custom concentrations and aliquoting, low-endotoxin options for cell-based work, and application-focused QC/validation support (project dependent). Click Talk to a Scientist to submit a request, email us at support@biohippo.com, or explore our Research Services for additional support—our team will follow up with feasibility details and next steps.