克隆性血液形成的动态和血液性恶性瘤的风险
Christopher Maximilian Arends1, Siddhartha Jaiswal2
1Department of Pathology, Stanford School of Medicine, Stanford, CA, USA. arendscm@stanford.edu.
International journal of hematology
|August 7, 2024
概括
克隆性造血,突变干细胞的扩张,增加了血液癌症和其他疾病的风险. 了解其驱动因素是开发这些疾病新疗法的关键.
科学领域:
- 血液学 血液学 血液学
- 遗传学 是一个遗传学.
- 在瘤学瘤学.
背景情况:
- 克隆性造血包括血造干细胞克隆的与年龄相关的扩张,具有体质突变.
- 这种扩张与血液恶性瘤,心血管疾病和死亡率增加有关.
- 了解驱动克隆扩张的机制对于识别治疗点至关重要,因为克隆尺寸更大会增加风险.
研究的目的:
- 审查用于估计克隆血液形成中的克隆扩张率的方法.
- 确定影响克隆扩张的因素及其与骨髓质恶性瘤的关系.
- 讨论最近的克隆性血液形成风险预测模型.
主要方法:
- 审查最近提出的估计克隆扩张率的方法.
- 对大规模生物库数据的分析.
- 与实验模型的整合.
主要成果:
- 最近开发的方法有助于研究克隆性血液形成的自然史和识别扩张因子.
- 鉴定出来的因素将克隆扩张与转向髓状瘤的进展联系起来.
- 对不良结果的最新风险预测模型的总结.
结论:
- 虽然对克隆扩张的理解正在不断发展,但正在取得重大进展.
- 将大型生物库数据与实验模型相结合,对于未来的发现至关重要.
- 这种方法将有助于确定因果因素,阐明机制,并定义临床干预的治疗目标.
相关概念视频
Hematopoiesis
5.2K
The process of blood cell formation is called hematopoiesis. Hematopoiesis starts early during development, on the seventh day of embryogenesis. This phase of hematopoiesis is called the primitive wave, wherein the extraembryonic yolk sac allows the production of erythroid cells and endothelial cells from a common precursor called hemangioblast. The erythroid cells provide oxygen to support the growth of the rapidly dividing embryo. Hemangioblasts later develop into hematopoietic stem cells or...
5.2K
Regulation of Hematopoietic Stem Cells
3.2K
All blood and immune cells are produced from the multipotent hematopoietic stem cells (HSCs) by the process of hematopoiesis. However, they all have a limited life span. In addition, many are depleted in immune surveillance or combatting an injury or infection. This makes blood one of the most regenerative tissues. Hematopoiesis helps replenish these blood and immune cells, restoring the body's normal functioning. However, overproduction of blood and immune cells can make them cancerous or...
3.2K
Overview of Hematopoiesis
3.9K
Hematopoiesis, or blood cell production, is a vital biological process that begins early in embryonic development and continues throughout life. This process generates the various types of cells found in blood, including red blood cells, white blood cells, and platelets from hematopoietic stem cells (HSCs).
Developmental Phases of Hematopoiesis
Initially, HSCs are formed in the embryonic yolk sac, a critical site for early blood cell production. These stem cells subsequently migrate to other...
Developmental Phases of Hematopoiesis
Initially, HSCs are formed in the embryonic yolk sac, a critical site for early blood cell production. These stem cells subsequently migrate to other...
3.9K
Multipotency of Hematopoietic Stem Cells
3.0K
The hematopoietic stem cells or HSCs are multipotent, meaning they can differentiate and give rise to all blood and immune cells. HSCs are maintained in the quiescent stage until an external stimulus initiates their differentiation. The multipotent HSCs exist as two heterogeneous populations, long-term repopulating cells (LTRC) and short-term repopulating cells (STRC). The two HSC populations have different surface markers or receptors and are classified based on quiescence and long-term...
3.0K
Lineage Commitment
3.0K
Commitment is the process whereby stem cells:
3.0K
Disorders of Leukocytes
923
Leukocyte disorders can lead to either leukopenia, characterized by an abnormally low leukocyte count, or leukocytosis, marked by a very high leukocyte number.
Leukopenia may result from bone marrow disorders, autoimmune diseases, and infectious diseases. For example, conditions such as multiple myeloma and aplastic anemia can impair the bone marrow's ability to produce adequate leukocytes. Similarly, autoimmune diseases like lupus and viral infections such as HIV can prompt the immune...
Leukopenia may result from bone marrow disorders, autoimmune diseases, and infectious diseases. For example, conditions such as multiple myeloma and aplastic anemia can impair the bone marrow's ability to produce adequate leukocytes. Similarly, autoimmune diseases like lupus and viral infections such as HIV can prompt the immune...
923


