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- Tel: 858.663.9055
- Email: info@nsjbio.com
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Von Willebrand factor (VWF) is a large secreted glycoprotein encoded by the VWF gene and synthesized primarily by vascular endothelial cells and megakaryocytes. vWF Antibody Clone VWF/1465 is used in studies of hemostasis, endothelial biology, platelet adhesion, and vascular pathology, where accurate recognition of this well-established endothelial and megakaryocytic marker is essential. VWF antibody, also known as von Willebrand factor antibody, is widely used in the literature when investigating blood vessel lining cells, platelet-related mechanisms, and disorders involving abnormal coagulation or vascular integrity.
VWF plays a central role in primary hemostasis by mediating platelet tethering and adhesion at sites of vascular injury, particularly under conditions of high shear stress. It also serves as the carrier protein for coagulation factor VIII, helping stabilize that factor in the circulation. The protein is produced as a precursor that undergoes extensive processing and multimerization, yielding high-molecular-weight forms that are critical for normal adhesive function. Because of this biology, VWF has long been regarded as a reliable marker of endothelial differentiation and vascular-lined structures, while also remaining highly relevant in studies of platelet formation and megakaryocyte maturation.
This vWF Antibody Clone VWF/1465 provides a defined monoclonal reagent for detecting von Willebrand factor (VWF), with microarray-based specificity validation supporting selective target recognition. Clone VWF/1465 enables consistent identification of VWF in experimental systems where minimizing non-specific binding and ensuring reproducible results are important considerations.
In tissue biology, VWF expression is classically associated with endothelial cells lining blood vessels and with megakaryocytic lineage cells involved in platelet production. For this reason, VWF antibody is frequently used in studies examining vascular distribution, angiogenesis, endothelial injury, thrombotic disease, tumor vasculature, and lineage characterization in hematopathology research. Its localization within endothelial secretory organelles and platelet-related granules further supports its utility in studies of secretion, storage, and regulated release.
Because VWF is closely tied to vascular and platelet biology, it remains a biologically intuitive marker for identifying endothelial differentiation in normal tissues and in disease-oriented samples. Clone VWF/1465 supports these applications by providing consistent detection of VWF, making it suitable for studies requiring reliable identification of endothelial structures and investigation of von Willebrand factor function.
The optimal dilution of the vWF Antibody Clone VWF/1465 for each application should be determined by the researcher.
Amino acids 1815-1939 from the human protein were used as the immunogen for this vWF Antibody Clone VWF/1465.
Store the vWF antibody at 2-8oC (with azide) or aliquot and store at -20oC or colder (without azide).
von Willebrand factor antibody, VWF antibody, von Willebrand factor Clone VWF/1465 antibody, VWF Clone VWF/1465 antibody, endothelial marker VWF antibody
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