40.4
血球形成のプロセスは造血と呼ばれます。 造血は発生の初期、胚形成の 7 日目に始まります。 造血のこの段階は原始波と呼ばれ、胚外の卵黄嚢により、血管芽細胞と呼ばれる共通の前駆体から赤血球細胞と内皮細胞の生成が可能になります。 赤血球細胞は酸素を供給して、急速に分裂する胚の成長をサポートします。 血管…
造血とは、造血幹細胞(HSC)と呼ばれる単一の種類の細胞から、さまざまな種類の血液細胞が産生されるプロセスです。
成人では、造血は骨髄で起こります。骨髄は、網様体細胞、間質細胞、および複雑な血管網に囲まれています。造血は、これらの血管と細胞成分の間の空間で発生します。
HSCは、非対称分裂を経ることで絶えず増殖し、自己再生します。彼らは2つの娘細胞を産生し、そのうちの1つは親細胞のように自己再生し、骨髄のHSCプールを維持することができます。
対照的に、組織の損傷、成長の急増、または感染に応答して放出される特定の分子因子は、セカンドドーター細胞を骨髄系前駆細胞やリンパ系前駆細胞などのより特殊な細胞に分化するのに役立ちます。
HSC前駆細胞は、赤血球、リンパ球、マクロファージ、ナチュラルキラー細胞など、あらゆる種類の血液細胞を産生できます。
これらの血液細胞は、特定の役割を担うと、骨髄を離れて血管に入り、作用部位に移動します。
View the full transcript and gain access to JoVE Core videos
Q1: What is hematopoiesis and where does it occur in adults?
Hematopoiesis is the process by which different types of blood cells are produced from hematopoietic stem cells (HSCs). In adults, hematopoiesis occurs in the bone marrow, which is surrounded by reticular cells, stromal cells, and blood vessels. The process takes place in the spaces between these components, where HSCs continuously multiply and self-renew.
Q2: How do hematopoietic stem cells maintain themselves through asymmetric division?
HSCs undergo asymmetric division to produce two daughter cells with different fates. One daughter cell self-renews like the parent cell, maintaining the HSC pool in the bone marrow. The other daughter cell differentiates into specialized cells such as myeloid progenitor cells and lymphoid progenitor cells in response to molecular factors released during tissue injury, growth spurts, or infection.
Q3: What types of blood cells can hematopoietic stem cells produce?
HSC progenitors can produce all types of blood cells due to their multipotent nature, including red blood cells, lymphocytes, macrophages, and natural killer cells. Once committed to their specific roles, these differentiated blood cells leave the bone marrow and enter blood vessels to migrate to their sites of action throughout the body.
Q4: What are the differences between dormant and active hematopoietic stem cells in bone marrow?
Bone marrow contains two HSC populations with distinct characteristics. Dormant or quiescent HSCs are non-proliferative and remain attached to the inner bone surface. Active or primed HSCs rapidly proliferate in response to vascular endothelial growth factors and are located in the central marrow region, allowing them to respond quickly to physiological demands.
Q5: How do hematopoietic stem cells migrate and home to target tissues?
HSCs migrate from bone marrow into circulating blood by losing cell adherence molecules and chemokine receptor CXCR4. During HSC homing, they regain these molecules and receptors, allowing them to bind and anchor to target tissues following chemokine gradients. Homing to bone marrow is essential for regulating HSC homeostasis and maintaining the HSC pool through proliferation.
Q6: When does hematopoiesis begin during embryonic development?
Hematopoiesis starts early during development on the seventh day of embryogenesis in a phase called the primitive wave. During this phase, the extraembryonic yolk sac produces erythroid cells and endothelial cells from a common precursor called hemangioblast. These erythroid cells provide oxygen to support the rapidly dividing embryo's growth.
Q7: Where do hematopoietic stem cells migrate during fetal development?
During fetal development, hemangioblasts develop into hematopoietic stem cells that migrate to the liver. This represents a shift from the yolk sac as the primary hematopoietic site during the primitive wave to the liver during fetal stages, before hematopoiesis eventually becomes established in the bone marrow of adults.