answersLogoWhite

0

it is embryonic connective tissue that is derived from the mesoderm and that differentiate into hematopoietic and connective tissue

User Avatar

Wiki User

12y ago

What else can I help you with?

Continue Learning about Biology

What is Mesenchymal derivatives?

Mesenchymal derivatives are tissues or cells that originate from mesenchyme, which is a type of embryonic tissue that gives rise to various structures in the body such as bone, muscle, and connective tissues. Mesenchymal derivatives play important roles in the development and maintenance of the body's structure and function.


Do osteoblasts form from mesenchymal cells?

Well, honey, you're not too far off the mark. Osteoblasts do indeed arise from mesenchymal stem cells. These mesenchymal cells have the magical ability to differentiate into various cell types, including our bone-building buddies, the osteoblasts. So, cheers to your almost-correct assumption!


Where are the mesenchymal cells found?

There are different forms of mesenchymal cells and tissues found almost everywhere in the body, and these tissues can be thought of, broadly, as: connective tissues, blood vessels, and lymphatic vessels.Mesenchymal cells/ tissues originate from the middle embryonic germ layer (there are 3 - endoderm, mesoderm, ectoderm) called the "mesoderm" and differentiate into the body's various connective tissues found in bone, cartilage, ligaments, tendons, muscles, skin, organs, extracellular matrix, as they also form the blood vessels and lymphatic vessels.


What is the function of osteoprogenitor cell?

Osteoprogenitor cells are stem cells that have the potential to differentiate into osteoblasts, which are responsible for bone formation. They play a vital role in bone repair and regeneration processes in the body by helping to generate new bone tissue.


The cell derived from osteoprogenitor cells which produces ossification is the?

Osteoblasts are the cells derived from osteoprogenitor cells that are responsible for producing new bone tissue through the process of ossification. These cells play a critical role in bone formation and remodeling by secreting the matrix needed for bone mineralization.

Related Questions

Mesenchymal Stem Cells Market?

Mesenchymal Stem Cells Market


What is Mesenchymal derivatives?

Mesenchymal derivatives are tissues or cells that originate from mesenchyme, which is a type of embryonic tissue that gives rise to various structures in the body such as bone, muscle, and connective tissues. Mesenchymal derivatives play important roles in the development and maintenance of the body's structure and function.


What are Mesenchymal stem cells used for?

Mesenchymal stem cells are used for regenerative and tissue engineering. More information on the use of stem cells can found on Wikipedia, Regenexx, Euro Stem Cell and many more.


Which type of stem cell can differentiated into the most type of cells?

Undifferentiated mesenchymal cell


What does immunostain Vimentin positive mean?

Immunostaining for Vimentin positive indicates the presence of vimentin, a type of intermediate filament protein typically expressed in mesenchymal cells. This positivity suggests that the cells being analyzed are of mesenchymal origin or have undergone an epithelial-mesenchymal transition (EMT), which is often seen in certain tumors and tissue repair processes. Vimentin positivity is commonly used in pathology to help identify sarcomas and other malignancies with mesenchymal characteristics.


In which connective tissues mesenchymal cells are found?

Mesenchymal cells are primarily found in mesenchyme, a type of connective tissue that is embryonic in origin. They are also present in loose connective tissue and can differentiate into various types of cells, including fibroblasts, adipocytes, and chondrocytes, contributing to the formation and repair of other connective tissues. Additionally, mesenchymal stem cells can be found in adult tissues, such as bone marrow and adipose tissue, where they play a role in tissue homeostasis and regeneration.


Mesenchymal cells are most commonly found in what kind of connective tissue?

Mesenchymal cells are most commonly found in loose connective tissue, such as the stroma of various organs, where they can differentiate into different cell types like fibroblasts, adipocytes, and chondrocytes.


Intramembranous ossification begins with what cells?

Intramembranous ossification begins when osteoblasts differentiate within a mesenchymal or fibrous connective tissue.


What does the root EMT mean?

The root EMT stands for epithelial-mesenchymal transition, a process where epithelial cells acquire mesenchymal cell properties. It is involved in development, wound healing, and cancer progression.


What is mesenchymal carcinoma?

Mesenchymal carcinoma is a rare and aggressive type of cancer that originates from mesenchymal tissues, which are the connective tissues of the body, including bone, cartilage, fat, and muscle. It is characterized by the presence of malignant mesenchymal cells and can manifest in various forms, including sarcomas. Due to its rarity and diverse presentations, mesenchymal carcinoma often poses challenges in diagnosis and treatment. Effective management typically involves a combination of surgery, chemotherapy, and radiation, depending on the specific subtype and stage of the disease.


Do osteoblasts form from mesenchymal cells?

Well, honey, you're not too far off the mark. Osteoblasts do indeed arise from mesenchymal stem cells. These mesenchymal cells have the magical ability to differentiate into various cell types, including our bone-building buddies, the osteoblasts. So, cheers to your almost-correct assumption!


What are the three types of stem cells in adults?

The three types of stem cells in adults are hematopoietic stem cells (found in bone marrow and produce blood cells), mesenchymal stem cells (found in various tissues like bone marrow and fat, can differentiate into bone, cartilage, and fat cells), and neural stem cells (found in the brain and spinal cord, can differentiate into neurons and supporting cells).