
Thermo Fisher Scientific INSR beta Recombinant Superclonal Antibody (6HCLC)
인슐린 수용체 베타 서브유닛을 인식하는 Recombinant Superclonal 항체로, 인간 시료에 반응하며 Western blot에 최적화되어 있습니다. 다중 클론 혼합으로 높은 민감도와 일관성을 제공하며, Protein A 정제 및 PBS 완충액에 보존되어 있습니다.
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Applications and Tested Dilution
| Application | Tested Dilution |
|---|---|
| Western Blot (WB) | 2–5 µg/mL |
Product Specifications
| 항목 | 내용 |
|---|---|
| Species Reactivity | Human |
| Host / Isotype | Rabbit / IgG |
| Expression System | Expi293 |
| Class | Recombinant Superclonal |
| Type | Antibody |
| Clone | 6HCLC |
| Immunogen | Recombinant protein corresponding to amino acids 1283–1382 of human IR beta subunit |
| Conjugate | Unconjugated |
| Form | Liquid |
| Concentration | 0.5 mg/mL |
| Purification | Protein A |
| Storage Buffer | PBS |
| Contains | 0.09% sodium azide |
| Storage Conditions | Store at 4°C for short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles. |
| Shipping Conditions | Wet ice |
| RRID | AB_2532545 |
Product Specific Information
This antibody is predicted to react with mouse based on sequence homology.
Recombinant rabbit Superclonal™ antibodies are unique offerings from Thermo Fisher Scientific. They consist of multiple different recombinant monoclonal antibodies, combining the sensitivity of polyclonal antibodies with the specificity of monoclonal antibodies, while maintaining batch-to-batch consistency.
Functionally similar to polyclonal antibodies, they recognize multiple epitopes on the target, providing higher detection sensitivity for low-abundance proteins. Each lot contains a defined mixture of light and heavy chains, eliminating biological variability common in polyclonal production.
Note: Formerly called “Recombinant Polyclonal Antibody”, now rebranded as “Recombinant Superclonal™ Antibody”. The product and performance remain unchanged.
Target Information
The biological actions of insulin and IGF-1 are mediated by their respective receptor tyrosine kinases, which regulate multiple signaling pathways through phosphorylation cascades. Binding of insulin or IGF-1 to the extracellular domain induces autophosphorylation and activation of downstream targets.
Differences in receptor sequence confer ligand specificity and distinct intracellular signaling outcomes. Defects in the insulin receptor (IR) are linked to insulin resistance syndromes, while IGF-1R defects can cause growth retardation. Both pathways are also implicated in cancer development.
For Research Use Only.
Not for use in diagnostic procedures. Not for resale without express authorization.
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