• HEK293 expressed
  • Endotoxin-free
  • Animal-component free

HumanKine® recombinant human BMP-7 protein


<100 ng/mL EC50

Species Reactivity




Cat No : HZ-1229

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BMP 7, BMP7, BMP-7, bone morphogenetic protein 7, Eptotermin alfa, HZ1229, OP 1, OP1, Osteogenic protein 1

Technical Specifications

GeneID 655
Species Human
Expression HEK293
Activity <100 ng/mL EC50
Purity >95%
Endotoxin<1 EU/µg
Accession NumberP18075
Molecular Mass 20 kDa, homodimer, glycosylated
Formulation 10mM Acetic Acid
Species Reactivity human,mouse

Stability and Reconstitution

Stability and Storage Lyophilized proteins are stable for 1 year from the date of receipt if stored between (-20°C) and (-80°C). Upon reconstitution we recommend that the solution can be stored at (4°C) for short term or at (-20°C) to (-80°C) for long term. Repeated freeze thaw cycles should be avoided with reconstituted products.
Reconstitution Briefly centrifuge the vial before opening. It is recommended to reconstitute the protein in 10mM Acetic Acid containing 0.1% endotoxin-free recombinant human serum albumin (HSA).


Bone morphogenetic protein-7 (BMP7), also known as osteogenic protein-1 or OP-1, plays a key role in the differentiation of mesenchymal cells into bone and cartilage. BMP7 may be involved in bone homeostasis (PMID: 15621726). It is expressed in the brain, kidneys and bladder. BMP7 is also present in several cancers, including breast, prostate, and colon cancers (PMID: 16419056, PMID: 15531927). Overexpression of BMP7 mRNA in colorectal cancer patients is significantly associated with poor prognosis and low overall survival (PMID: 18259822). Recent studies suggest that high-expression level of BMP7 serves as a biomarker for poor prognosis for HCC (PMID: 23179403).


BMP 7, BMP7, BMP-7, bone morphogenetic protein 7, Eptotermin alfa, HZ1229, OP 1, OP1, Osteogenic protein 1



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Generation of special autosomal dominant polycystic kidney disease iPSCs with the capability of functional kidney-like cell differentiation.

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An Easy Long-acting BMP7 Release System Based on Biopolymer Nanoparticles for Inducing Osteogenic Differentiation of Adipose Mesenchymal Stem Cells.

Authors - Rui Chen


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Osteogenic differentiation system based on biopolymer nanoparticles for stem cells in simulated microgravity.

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Seven diverse human embryonic stem cell-derived chondrogenic clonal embryonic progenitor cell lines display site-specific cell fates.

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A human embryonic stem cell-derived clonal progenitor cell line with chondrogenic potential and markers of craniofacial mesenchyme.

Authors - HalSternberg