Examples of 'osteoblast' in a sentence

Meaning of "osteoblast"

osteoblast (noun) - a type of cell responsible for bone formation and repair in the human body
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  • A mononucleate cell from which bone develops.

How to use "osteoblast" in a sentence

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osteoblast
Osteoblast cells secrete bone matrix material.
Fibronectin blocks osteoblast differentiation and.
Osteoblast numbers are determined by point counting.
Biochemical changes indicative of osteoblast differentiation were also assessed.
These features are characteristic of cells of the osteoblast lineage.
The MSCs are induced towards osteoblast and adipocyte differentiations.
This cavity is then filled with bone by an osteoblast.
An osteoblast is a mononucleate cell that is responsible for bone formation.
Similar functions are seen in neuronal and osteoblast differentiation.
Osteoblast are responsible for the mineralization and construction of bone matrix.
Menin and endocrine tumorigenesis and osteoblast function.
And osteoblast stimulants.
All collagens tested were able to increase the osteoblast activity.
The phosphodiesterases are expressed in osteoblasts and are involved in osteoblast differentiation.
Mechanisms involved in abnormal human osteoarthritic subchondral osteoblast mineralization.

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The phosphodiesterase is expressed in osteoblasts and is involved in osteoblast differentiation.
Osteoblast milk product.
The hormone estrogen is also important for osteoblast regulation.
Osteoblast cells then make and mineralise new bone tissue.
Alkaline phosphatase is known to be differentiation marker of osteoblast in earlier stage.
Osteoblast precursors are pluripotent cells also known as mesenchymal stem cells.
Care is taken not to damage the osteoblast or bone cells by overheating.
Effects of static magnetic fields on bone formation in rat osteoblast cultures.
Another indicator of osteoblast lineage is the ability to secrete alkaline phosphatase.
The peptides of the present invention can promote osteoblast differentiation.
Osteoblast populations obtained by sequential enzyme digestion from rat calvaria are used.
Osteoporosis occurs as a result of a mismatch between osteoclast and osteoblast activity.
Skeletal integrity is maintained when osteoblast and osteoclast formation an activity are balanced.
Serum levels of alkaline phosphatase and osteocalcin refl ect osteoblast activity.
Only cells receiving osteoblast medium stained positive and turned dark.
The peptide of the present invention can promote osteoblast differentiation.
The osteoblast creates and repairs new bone by actually building around itself.
Cultures were supported initially with basic osteoblast media without differentiation factors.
The deficient part of the bone absorbed by osteoclast is repaired by osteogenesis by osteoblast.
This response might be important in maintaining osteoblast survival under some conditions.
The balance between osteoblast and osteoclast differentiation is critical for bone homeostasis.
Increases bone formation in bone tissue culture as well as osteoblast precursor replication and.
The reaction occurs when osteoblast cells attach to a surface of the prosthetic material.
The impregnation of the bone biomaterial with the fucans stimulates osteoblast proliferation.
Bone formation may have arisen from osteoblast differentiation as well as endochondral ossification.
Another preferred combination is a compound of the present invention and an osteoblast anabolic agent.
The bone turnover is reduced while the osteoblast activity and bone mineralization is preserved.
Positive indication may be detected when majority of said osteoprogenitor cells express an osteoblast marker.
Nonetheless it is known that corticosteroids reduce osteoblast function and sex hormone secretion.
Osteoblast and Adipocyte Differentiation of MSCs.
The film clinical handling characteristics as well as osteoblast attachment and growth were evaluated.
First, the osteoblast puts up collagen fibers.
These cells can originate from bone explants from which osteoblast cells are isolated.
Activation of osteolast causes activation of osteoblast compensatively thereby making osteogenesis superior to bony adsorption.
Conclusions AOD was significantly mitogenic in primary osteoblast cultures.

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