- Tel: 858.663.9055
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Email: info@nsjbio.com
- Tel: 858.663.9055
- Email: info@nsjbio.com
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Zebrafish BMP2 Antibody / BMP2A Antibody recognizes Bone Morphogenetic Protein 2A (BMP2A), a secreted signaling molecule belonging to the transforming growth factor-beta (TGF-beta) superfamily. BMP2A functions as an important developmental morphogen that regulates embryonic patterning, tissue differentiation, skeletal formation, and organ development. Through activation of BMP signaling pathways, BMP2A influences cellular proliferation, lineage specification, and morphogenetic processes required for normal vertebrate development. The highly conserved nature of BMP signaling has established zebrafish as an important model for investigating BMP2A biology and developmental regulation.
BMP family proteins play central roles during embryogenesis by controlling tissue patterning and directing developmental cell fate decisions. In zebrafish, BMP2A contributes to formation of skeletal structures, cardiovascular tissues, neural development, and early embryonic organization. Expression of BMP2A is frequently examined in studies investigating developmental biology, organogenesis, regeneration, and tissue morphogenesis. Because BMP signaling pathways influence numerous developmental events, BMP2A serves as an important marker of growth factor-mediated developmental regulation.
Beyond embryonic development, BMP2A participates in tissue maintenance, repair, and regeneration. Members of the BMP family regulate differentiation of mesenchymal and osteogenic cell populations and contribute to maintenance of tissue homeostasis. Researchers commonly evaluate BMP2A expression in studies focused on bone biology, regenerative medicine, stem cell differentiation, and developmental signaling pathways. As a result, BMP2A remains one of the most widely studied developmental growth factors within vertebrate systems.
Zebrafish provide unique advantages for investigating BMP signaling because developmental processes can be directly visualized in living embryos and larvae. Researchers frequently monitor BMP2A expression during studies of skeletal development, fin regeneration, cardiovascular formation, embryonic patterning, and developmental toxicology. Because BMP signaling mechanisms are highly conserved between zebrafish and mammals, findings generated using zebrafish models often provide valuable insight into vertebrate developmental biology and tissue regeneration.
At NSJ Bioreagents, we provide highly validated antibodies for developmental biology, stem cell biology, regenerative medicine, and zebrafish research. Zebrafish BMP2 Antibody / BMP2A Antibody targets a key growth factor involved in embryogenesis, skeletal development, and tissue morphogenesis. BMP2A expression is widely studied in the context of developmental signaling, organ formation, regeneration, osteogenesis, and vertebrate development. Continued investigation of this important morphogen is expanding our understanding of the molecular pathways that regulate tissue formation and developmental patterning.
Explore our BMP2 Antibody / Osteogenic Growth Factor Antibody page for additional validation data and applications involving skeletal development, osteogenesis, and tissue regeneration.
This Zebrafish antibody is part of a broader Zebrafish / Danio rerio antibody panel offered by NSJ Bioreagents.
The optimal working dilution of the Zebrafish BMP2 Antibody / BMP2A Antibody should be determined empirically by the investigator.
An E.coli-derived Zebrafish BMP2A recombinant protein (amino acids L24-R279) was used as the immunogen for the Zebrafish BMP2 / BMP2A Antibody.
After reconstitution, the Zebrafish BMP2 / BMP2A Antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
Zebrafish BMP2A Antibody, Zebrafish Bone Morphogenetic Protein 2A Antibody, Zebrafish Osteogenic Growth Factor Antibody, Zebrafish TGF-Beta Superfamily Protein Antibody, Zebrafish Developmental Morphogen Antibody, Zebrafish Skeletal Development Protein Antibody
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