Metabolism

Metabolism

Tools for research on metabolic transporters, hormone receptors, and nutrient-sensing pathways.

Antibodies, ligands, and modulators made and tested in-house for transporters, GPCRs, ion channels, and signaling proteins involved in metabolic regulation. Useful for studies of glucose transport, nutrient uptake, endocrine signaling, and metabolic homeostasis in immunoassays like immunohistochemistry (IHC), immunocytochemistry (ICC), western blot (WB), flow cytometry, or cell-based assays. 

FAQs

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    1. Reagents are shipped at room temperature in a stable lyophilized form. To spin down all the powder to the bottom of the vial, centrifuge vials (10,000 x g, 5 minutes) before adding any solvent.
      Note: The lyophilizate may be difficult to visualize in the vial.
    2. Follow product-specific instructions for selecting the preferred solvent solution**.Add your solvent directly to the centrifuged vial and tap on it to dissolve the lyophilized reagent.
    3. Tilt and gently roll the liquid over the walls of the vial.
      Important! For toxins and peptides – avoid vigorous vortexing (up to 3 seconds of light vortexing is enough). For neurotrophins, pro-neurotrophins, and growth factors – we recommend completely avoiding vortex.
    4. Spin down and divide the solution into single-use aliquots.Store the aliquots at -20°C.
    5. Before use, thaw the vial and dilute the reagent in working buffer.

    **Venom toxins are usually soluble in pure water (e.g., double-distilled water (ddH2O)) at high micromolar concentrations (0.1–1 mM). You can typically reconstitute the lyophilized product in any aqueous buffer. Yet, we highly recommend preparing a stock solution in pure water, unless stated otherwise in the product datasheetFor neurotrophins, pro-neurotrophins, and growth factors, our general recommendation is to reconstitute with sterile water at a concentration of 0.01–0.1 mg/mL as a stock solution. You can further dilute the stock solution as needed.

    Note: We recommend preparing fresh working buffers before each use.
    Note:
    Avoid multiple freeze-thaw cycles to maintain biological activity.
    Note:
    Avoid heating peptides/proteins. Work at ambient room temperature and no higher than 37oC.

  • The blocking peptide is the antigen we use for immunization during antibody generation so that we can create an antigen-specific antibody. You can use this blocking peptide as a negative control alongside other controls in an immunoassay to give some insight into antibody specificity, but not selectivity.

    It’s important to note that the blocking peptide is not an effective control for use with live cells. If you need a control for flow cytometry, we recommend an isotype antibody control instead.

    For more details, see our guide to blocking peptides.

  • We carefully choose the epitope for immunization, taking into account two main parameters: immunogenicity and specificity of the epitope.

    Before immunization, we run a search to verify that the chosen epitope has maximum homology with other species and minimum homology among members of the same family or other proteins. After immunization and collection of sera, the antibodies are affinity-purified on immobilized antigens (the injected peptides).

    This means you shouldn’t have to worry about your antibody cross-reacting with close members of the same protein family.

  • Affinity-purified rabbit polyclonal antibodies are mainly IgGs.

1449 Results
  • Anti-Human TRPV2 (VRL1) (extracellular)-FITC Antibody
    A Rabbit Polyclonal Antibody to Human TRPV2 (extracellular) conjugated to the fluorescent dye FITC
    • Product Code: ACC-139-F
    • Short Description: A Rabbit Polyclonal Antibody to Human TRPV2 (extracellular) conjugated to the fluorescent dye FITC
    • Host: Rabbit
    • Label: FITC
    • Reactivity: Human
    • Applications: Live cell imaging, Flow cytometry
    • Target: Vanilloid receptor-like protein 1, VRL-1, Osm-9-like TRP channel 2, OTRPC2
  • Anti-Human TRPV6 (extracellular) Antibody
    A Rabbit Polyclonal Antibody to Human TRPV6 Channel
    • Product Code: ACC-028
    • Short Description: A Rabbit Polyclonal Antibody to Human TRPV6 Channel
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human
    • Applications: Live cell imaging, Western blot, Immunocytochemistry, Immunofluorescence
    • Target: Epithelial calcium channel 2, ECaC2, Calcium transport protein 1, CaT1, CaT-like, CaT-L, Transient receptor potential cation channel subfamily V member 6
  • Anti-Human Tumor Necrosis Factor Receptor 2 (extracellular) Antibody
    A Rabbit Polyclonal Antibody to Human Tumor Necrosis Factor Receptor 2 (extracellular)
    • Product Code: ANT-042
    • Short Description: A Rabbit Polyclonal Antibody to Human Tumor Necrosis Factor Receptor 2 (extracellular)
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human
    • Applications: Indirect flow cytometry, Live cell imaging, Western blot
    • Target: TNFR2, Tumor Necrosis Factor Receptor Superfamily Member 1B, TNFRSF1B, Tumor Necrosis Factor Receptor Type II, TNF-RII, CD120b
  • Anti-IGF1 Antibody
    A Rabbit Polyclonal antibody to IGF1
    • Product Code: ANT-046
    • Short Description: A Rabbit Polyclonal antibody to IGF1
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human, Rat, Mouse
    • Applications: Western blot, Immunohistochemistry
    • Target: Insulin Like Growth Factor 1, Insulin-Like Growth Factor I, IGF-I, Somatomedin-C
  • Anti-IGF1R (extracellular) Antibody
    A Rabbit Polyclonal Antibody to IGF1R
    • Product Code: ANT-045
    • Short Description: A Rabbit Polyclonal Antibody to IGF1R
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human, Rat, Mouse
    • Applications: Indirect flow cytometry, Live cell imaging, Western blot, Immunohistochemistry
    • Target: Insulin-like growth factor 1 receptor, IGF-I receptor, CD221
  • Anti-IP<sub>3</sub> Receptor-1 (ITPR1) Antibody
    A Rabbit Polyclonal Antibody to IP3 Receptor-1
    • Product Code: ACC-019
    • Short Description: A Rabbit Polyclonal Antibody to IP3 Receptor-1
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human, Rat, Mouse
    • Applications: Western blot, Immunocytochemistry, Immunofluorescence, Immunoprecipitation, Immunohistochemistry
    • Target: Inositol 1,4,5-trisphosphate receptor type 1, IP3R1, InsP3R1
  • Anti-IP<sub>3</sub> Receptor-2 (ITPR2) Antibody
    A Rabbit Polyclonal Antibody to IP3 Receptor-2
    • Product Code: ACC-116
    • Short Description: A Rabbit Polyclonal Antibody to IP3 Receptor-2
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Mouse
    • Applications: Western blot, Immunofluorescence, Immunohistochemistry
    • Target: Inositol 1,4,5-trisphosphate receptor type 2, IP3R2, InsP3R2, IP3 receptor isoform 2
  • Anti-IP<sub>3</sub> Receptor-2 (ITPR2)-ATTO Fluor-594 Antibody
    A Rabbit Polyclonal Antibody to IP3 Receptor-2 Conjugated to the Fluorescent Dye ATTO-594
    • Product Code: ACC-116-AR
    • Short Description: A Rabbit Polyclonal Antibody to IP3 Receptor-2 Conjugated to the Fluorescent Dye ATTO-594
    • Host: Rabbit
    • Label: ATTO 594
    • Reactivity: Mouse
    • Applications: Immunofluorescence, Immunohistochemistry
    • Target: Inositol 1,4,5-trisphosphate receptor type 2, IP3R2, InsP3R2, IP3 receptor isoform 2
  • Anti-IQGAP1 Antibody
    A Rabbit Polyclonal Antibody to IQGAP1
    • Product Code: APZ-055
    • Short Description: A Rabbit Polyclonal Antibody to IQGAP1
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Human, Rat, Mouse
    • Applications: Western blot, Immunofluorescence, Immunohistochemistry
    • Target: IQ Motif Containing GTPase Activating Protein 1, Ras GTPase-Activating-Like Protein IQGAP1, p195
  • Anti-KCNE1 (IsK) Antibody
    A Rabbit Polyclonal Antibody to KCNE1
    • Product Code: APC-163
    • Short Description: A Rabbit Polyclonal Antibody to KCNE1
    • Host: Rabbit
    • Label: Unconjugated
    • Reactivity: Rat, Mouse
    • Applications: Western blot
    • Target: Delayed rectifier potassium channel subunit IsK, Minimal potassium channel, MinK
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Step-by-Step Protocols