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On the basis of the above work, it seemed likely that morphogens were present in the bone matrix.
The majority of bone is made of the bone matrix.
Osteocytes are osteoblasts which have become trapped inside of the bone matrix.
Shown here is a normal spongy bone matrix.
This sealing zone becomes the site of osteoclast attachment to the bone matrix.
When loaded, fluid flows away from areas of high compressive loading in the bone matrix.
Osteoblasts that become trapped in the bone matrix become osteocytes.
They are usually used to construct connective tissues, tendons, bone matrix and muscle fiber.
A major stumbling block to purification was the insolubility of demineralized bone matrix.
Osteoblasts start covering the broken-down cartilage with bone matrix.
Evidence suggests that bone cells produce growth factors for extracellular storage in the bone matrix.
The release of these growth factors from the bone matrix could cause the proliferation of osteoblast precursors.
Osteonectin is also detectable in osteoid, bone matrix proper and dentin.
The osteocyte lies within a small chamber called a lacuna, which is within the bone matrix.
This impairs osteoclast acidification and the dissolution of the underlying bone matrix.
New bone induction by demineralized bone matrix in immunosuppressed rats.
Flexible, bifurcating blood vessels and fibrous but elastic bone matrix tissue were recognized.
Linezolid is readily distributed to all tissues in the body apart from bone matrix and white adipose tissue.
Materials picked up by osteocytes adjacent to blood vessels, are distributed throughout the bone matrix via the canaliculi.
When the cancer cells have metastasized, the mechanical dynamics of the bone matrix become weaker as skeletal strength decreases.
At this stage, some of the fibroblasts begin to lay down bone matrix in the form of collagen monomers.
Osteoblasts are just like chondroblasts, but they secrete bone matrix instead of cartilage matrix.
In fact, collagen is the most abundant protein in the human body and accounts for 90% of bone matrix protein content.
It is beneficial to design biomaterials for bone-contacting devices with bone matrix proteins to promote bone growth.
This salt must be cleared by the body and as a result washes away some of the calcium that would be part of the bone matrix.