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Thermo Fisher Scientific INSR alpha Monoclonal Antibody (83-7), Biotin
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Thermo Fisher Scientific INSR alpha Monoclonal Antibody (83-7), Biotin

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Insulin receptor alpha를 표적으로 하는 Biotin 결합 mouse monoclonal antibody입니다. ELISA, FACS, ICC/IF, IHC(P) 등 다양한 응용에 적합하며 사람, 소, 쥐 등 여러 종에 반응합니다. 연구용으로만 사용됩니다.

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마지막 업데이트 2025. 08. 05. 오후 09:22
Thermo Fisher Scientific MA513764 INSR alpha Monoclonal Antibody (83-7), Biotin 500 ul pk판매 단위 pk ·
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803,900원VAT 포함 884,290원

Thermo Fisher Scientific · Thermo Fisher Scientific INSR alpha Monoclonal Antibody (83-7), Biotin

Thermo Fisher Scientific INSR alpha Monoclonal Antibody (83-7), Biotin

Applications and Tested Dilution

Application Tested Dilution Publications
Immunohistochemistry (Paraffin) (IHC (P)) 2–4 µg/mL -
Immunocytochemistry (ICC/IF) 1:10–1:100 1 publication
Flow Cytometry (Flow) Assay-dependent 2 publications
ELISA Assay-dependent 3 publications

Product Specifications

Specification Description
Published species Hamster, Human, Mouse
Host/Isotype Mouse / IgG1, kappa
Class Monoclonal
Type Antibody
Clone 83-7
Immunogen IM-9 lymphocytes followed by IR
Conjugate Biotin
Form Liquid
Concentration 0.2 mg/mL
Storage conditions 4°C
Shipping conditions Wet ice
RRID AB_10980520

Additional Formats


Product Specific Information

MA5-13764 targets Insulin Receptor alpha in ELISA, FACS, ICC/IF, and IHC (P) applications and shows reactivity with Bovine, Human, Ovine, Porcine, Rat, and Rabbit samples.
The MA5-13764 immunogen is IM-9 lymphocytes followed by IR.


Target Information

Biological actions of insulin and IGF-1 are mediated by their respective cell surface receptor tyrosine kinases that regulate multiple signaling pathways through activation of phosphorylation cascades.
Insulin/IGF-1 binding to the extracellular domain leads to autophosphorylation of downstream target proteins. These receptors differ in sequence in regions that confer specificity for the designated ligand and intracellular signaling domains, resulting in distinct functional consequences.
Defects in IR cause various insulin resistance syndromes, while IGF-1R defects may lead to growth retardation. Both signaling cascades are important in cancer development.


For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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