Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi]
Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi] Discover the power of our Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi], a high-quality recombinant protein derived from HEK293 cells. This product is a valuable tool for researchers studying cell adhesion,
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Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi]
Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi]
Discover the power of our Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi], a high-quality recombinant protein derived from HEK293 cells. This product is a valuable tool for researchers studying cell adhesion, inflammation, and thrombosis. With its specific sequence Met1-Gly238 and molecular weight of 24.3 kDa, it offers a reliable and consistent research experience.- Expressed in HEK293 cells for optimal protein expression.
- Sequence: Met1-Gly238, ensuring accurate protein structure.
Advanced Protein Specifications
Our Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi] boasts a purity of >95% as determined by reducing SDS-PAGE, ensuring high-quality and reliable results. The protein is also tested for endotoxin levels, with results showing < 1.0 EU per μg, ensuring minimal interference with your experiments.- Purity: >95% as determined by reducing SDS-PAGE.
- Endotoxin: < 1.0 EU per μg, ensuring minimal interference.
Applications and Benefits
The Revolutionary Recombinant Rat Jam-a/f11r Protein (his Tag) Markdown: -95% [328rpmzi] is a versatile tool for researchers in the fields of cell biology, immunology, and inflammation. Its potential applications include studying the role of JAM-A/F11R in platelet adhesion, secretion, and aggregation, as well as its involvement in inflammatory thrombosis and atherosclerosis. With its bio-activity not yet validated, this protein presents a unique opportunity for researchers to explore new pathways and potential therapeutic targets.- Applications: Cell adhesion, inflammation, thrombosis, and more.
- Potential therapeutic target for breast cancer.
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