The organic matrix elements of a bone are primarily collagen. This allows the bone to flex.
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Yes, that's correct. Osteoid is the organic component of the bone matrix, primarily made up of collagen fibers and secreted by osteoblasts. It provides the framework for mineralization and the subsequent formation of bone tissue.
Bone salts, such as calcium and phosphorus, provide hardness to bones by forming a mineralized matrix. The organic matrix, composed mainly of collagen fibers, gives bones flexibility by providing a framework for mineral deposition. Together, bone salts and the organic matrix work synergistically to make bones both strong and flexible.
The organic bone matrix is called osteoid. It is made up of collagen fibers and proteoglycans, providing a framework for mineralization to occur, leading to bone formation.
Yes, the primary organic fibers found in cartilage matrix are collagen fibers. These fibers provide strength and structure to the cartilage tissue. Additionally, there are proteoglycans and glycoproteins present in the matrix that help maintain its integrity and function.
Osteoblasts are the cells responsible for producing the organic matrix in bone. They are specialized bone cells that secrete collagen and other proteins that form the framework for mineralization in bone tissue.
Osteoid tissue is an organic component of bone that forms before it gets mineralized into hard bone tissue. It consists mainly of collagen and provides a framework for mineral deposition, contributing to the strength and flexibility of bones.
matrix
the main component of the extracellular matrix
Yes. Osteoid is the organic bone matrix secreted by osteoblasts.
Yes, that's correct. Osteoid is the organic component of the bone matrix, primarily made up of collagen fibers and secreted by osteoblasts. It provides the framework for mineralization and the subsequent formation of bone tissue.
The organic portion of matrix is important in providing tensile strength, ability to resist stretch, and flexibility. It is not important in providing hardness.
matrix and cells. not tissues
Osteoblasts
Bone salts, such as calcium and phosphorus, provide hardness to bones by forming a mineralized matrix. The organic matrix, composed mainly of collagen fibers, gives bones flexibility by providing a framework for mineral deposition. Together, bone salts and the organic matrix work synergistically to make bones both strong and flexible.
The organic bone matrix is called osteoid. It is made up of collagen fibers and proteoglycans, providing a framework for mineralization to occur, leading to bone formation.
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Collagen