Войдите в систему

Commitment is the process whereby stem cells:

  1. lose their ability to form all cell types and
  2. irreversibly change into a specific type.

The multipotent hematopoietic stem cells, (HSCs), differentiate into the multipotent hematopoietic progenitor cells, (HPCs). The HPCs express many lineage-specific cytokine receptors. Each of these receptors binds specific cytokines, activates distinct signaling pathways, and expresses a particular gene set. The HPCs further differentiate to form committed progenitors, forming either common myeloid progenitors (CMPs) or common lymphoid progenitors (CLPs). The CMPs and CLPs proliferate, self-renew, and further differentiate into mature blood cells and immune cells depending on the receptors they express and the specific cytokines that bind. For example:

  • Thrombopoietin (TpoR)- They help progenitors differentiate into megakaryocytes or platelets.
  • Erythropoietin (EpoR)-These receptors promote the development of erythrocytes.
  • Macrophage-colony stimulating factor (M-CSFR)-These receptors regulate the formation of macrophages.
  • Granulocyte-colony stimulating factor (G-CSFR)- They help HPCs differentiate into granulocytes.
  • Interleukin-7 receptor (IL-7R)- They help progenitor cells become lymphocytes.

Thus, lineage commitment helps HSCs lose their multipotency and differentiate into more restricted cell fate.

Теги
Lineage CommitmentStem CellsHematopoietic Stem Cells HSCsHematopoietic Progenitor Cells HPCsCytokine ReceptorsCommon Myeloid Progenitors CMPsCommon Lymphoid Progenitors CLPsThrombopoietin TpoRErythropoietin EpoRMacrophage colony Stimulating Factor M CSFRGranulocyte colony Stimulating Factor G CSFRInterleukin 7 Receptor IL 7RCell DifferentiationCell Fate

Из главы 40:

article

Now Playing

40.6 : Lineage Commitment

A Hierarchical Stem-Cell System: Blood Cell Formation

2.9K Просмотры

article

40.1 : Обзор сосудистой системы

A Hierarchical Stem-Cell System: Blood Cell Formation

2.6K Просмотры

article

40.2 : Механизм ангиогенеза

A Hierarchical Stem-Cell System: Blood Cell Formation

4.5K Просмотры

article

40.3 : Регуляция ангиогенеза и кровоснабжения

A Hierarchical Stem-Cell System: Blood Cell Formation

2.5K Просмотры

article

40.4 : Кроветворения

A Hierarchical Stem-Cell System: Blood Cell Formation

4.9K Просмотры

article

40.5 : Мультипотенция гемопоэтических стволовых клеток

A Hierarchical Stem-Cell System: Blood Cell Formation

3.0K Просмотры

article

40.7 : Эритропоэза

A Hierarchical Stem-Cell System: Blood Cell Formation

3.8K Просмотры

article

40.8 : Дифференцировка распространенных миелоидных клеток-предшественников

A Hierarchical Stem-Cell System: Blood Cell Formation

3.1K Просмотры

article

40.9 : Регуляция гемопоэтических стволовых клеток

A Hierarchical Stem-Cell System: Blood Cell Formation

3.1K Просмотры

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены