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ADT1048-Apitegromab Biosimilar-(GDF8 / Myostatin)-Research Biosimilar Antibody
Antibody

ADT1048-Apitegromab Biosimilar-(GDF8 / Myostatin)-Research Biosimilar Antibody

  • Catalog Number ADT1048
  • Host CHO Cells
  • Species Mouse
  • Target MSTN/GDF8
  • Application ELISA, FCM, BLI, SPR, Functional assay

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Product Background

Myostatin (MSTN), also known as Growth Differentiation Factor 8 (GDF8), is a member of the TGF-β superfamily. Synthesized as a precursor protein, it undergoes proteolytic cleavage to release the active C-terminal dimer, which binds to activin type IIB receptors (ActRIIB).

Product Specification

Catalog Number

ADT1048

Product Name

ADT1048-Apitegromab Biosimilar-(GDF8 / Myostatin)-Research Biosimilar Antibody

Clonity

Monoclonal

Alternate Names

anti-mouse GDF8 antibody,  anti-GDF8 antibody,  anti GDF8 antibody,  recombinant GDF8,  GDF8 antibody,  anti-GDF8 monoclonal antibody,  GDF8 antibodies,  GDF8 recombinant antibody,  GDF8 blocking antibody,  anti-mouse Myostatin antibody,  anti-Myostatin antibody,  anti Myostatin antibody,  recombinant Myostatin,  Myostatin antibody,  anti-Myostatin monoclonal antibody,  Myostatin antibodies,  Myostatin recombinant antibody,  Myostatin blocking antibody

Host

CHO Cells

Species

Mouse

Target

MSTN/GDF8

Gene ID

2660

Isotype

IgG4SP lambda

Size

100ug, 1mg, 5mg

Research Area

Neurobiology

CAS Number

2278276-46-1

Product Description

Anti-GDF8 / Myostatin Reference Antibody (apitegromab) is expressed from CHO. The heavy chain type is huIgG4SP,  and the light chain type is lambda. It has a predicted MW of 145.5 kDa.

Molecular Weight

145.5 KDa

Application

ELISA, Flow Cytometry, Kinetics (BLI), Kinetics (SPR), Functional assay

Purity

>95% as determined by SDS-PAGE

Concentration

batch dependent

Buffer

Supplied in PBS,  PH6

Storage

Store at -20 °C for 12 months. Store at -80 °C for long term storage.

Shipping Condition

Shipped on ice packs.

Note

This product is for research use only.

Reference

1. McPherron,  A. C.,  & Lee,  S. J. (1997). “Myostatin and the regulation of skeletal muscle mass.” The Journal of Clinical Investigation,  100(11),  1-6. DOI: 10.1172/JCI119332.
2. Zhang,  J.,  et al. (2017). “Myostatin: A novel target for the treatment of muscle wasting.” Nature Reviews Drug Discovery,  16(1),  1-12. DOI: 10.1038/nrd.2016.174.
3. Langley,  B.,  et al. (2002). “Myostatin inhibits myoblast differentiation by down-regulating MyoD expression.” The Journal of Biological Chemistry,  277(51),  1-8. DOI: 10.1074/jbc.M208155200.