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Multipotency of Hematopoietic Stem Cells01:19

Multipotency of Hematopoietic Stem Cells

3.1K
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...
3.1K
Multipotency and Niche of Bulge Stem Cell01:06

Multipotency and Niche of Bulge Stem Cell

3.6K
A hair follicle or HF is a small part of the skin that produces the hair shaft. Paul Gerson Unna was the first to observe a bulge in the human hair follicle's outer root sheath (ORS). The bulge is present between the sebaceous gland and the arrector pili muscle and is the niche for hair follicle stem cells (HFSCs). The bulge is also a niche for melanocyte stem cells, and their loss results in graying of hair. The HFSCs express Sox9 and Lhx2, which help them maintain stemness and prevent...
3.6K
Motor Units01:13

Motor Units

4.0K
The motor unit is a fundamental component of the neuromuscular system and plays a crucial role in coordinating muscle contractions. It consists of a somatic motor neuron, which connects and controls multiple skeletal muscle fibers, forming a single functional segment. The axon of the motor neuron branches out and establishes synaptic connections known as neuromuscular junctions with individual muscle fibers within the motor unit.
Motor units come in different sizes, with smaller units...
4.0K
Hierarchy of Motor Control01:18

Hierarchy of Motor Control

2.7K
The hierarchy of motor control refers to the different levels of organization and processing involved in controlling movement in the body. These levels range from higher cortical areas involved in planning and decision-making to lower spinal cord reflexes that respond automatically to external stimuli.
2.7K
Cellular Differentiation00:57

Cellular Differentiation

2.7K
How does a complex organism such as a human develop from a single cell? It all starts from a single fertilized egg which gives rise to a vast array of cell types, such as nerve cells, muscle cells, and epithelial cells that characterize the adult? Throughout development and adulthood, cellular differentiation leads cells to assume their final morphology and physiology. Differentiation is the process by which unspecialized cells become specialized to carry out distinct functions.
A zygote is a...
2.7K
Differentiation of Common Myeloid Progenitor Cells01:15

Differentiation of Common Myeloid Progenitor Cells

3.2K
Common myeloid progenitors (CMPs) are oligopotent cells that can differentiate into granulocytes and macrophages. Granulocytes and macrophages are essential for protecting the body against bacterial, viral, or fungal infections. They migrate from the bone marrow into the circulating blood to reach specific tissue sites where they differentiate and help in immune surveillance. However, they survive only for a few days and must be continuously made available to the organism to maintain a robust...
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相关实验视频

Updated: Jul 2, 2025

Efficient Differentiation of Mouse Embryonic Stem Cells into Motor Neurons
09:42

Efficient Differentiation of Mouse Embryonic Stem Cells into Motor Neurons

Published on: June 9, 2012

22.4K

多模式Hox5活动产生运动神经元多样性的多样性.

K C Ritesh1, Raquel López de Boer1, Minshan Lin1

  • 1Department of Neurosciences, Case Western Reserve University, Cleveland, OH, USA.

bioRxiv : the preprint server for biology
|February 19, 2024
PubMed
概括

像Hoxa5这样的Hox蛋白通过控制基因可访问性和与辅助因子相互作用来建立运动神经元 (MN) 的多样性. 这项研究揭示了Hoxa5如何诱导和维持特定的MN身份,这对于呼吸等功能至关重要.

科学领域:

  • 神经科学是一个神经科学.
  • 发展生物学 发展生物学
  • 遗传学 是一个遗传学.

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Chicken Embryo Spinal Cord Slice Culture Protocol
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Chicken Embryo Spinal Cord Slice Culture Protocol

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Mouse Hindbrain Ex Vivo Culture to Study Facial Branchiomotor Neuron Migration
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Mouse Hindbrain Ex Vivo Culture to Study Facial Branchiomotor Neuron Migration

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相关实验视频

Last Updated: Jul 2, 2025

Efficient Differentiation of Mouse Embryonic Stem Cells into Motor Neurons
09:42

Efficient Differentiation of Mouse Embryonic Stem Cells into Motor Neurons

Published on: June 9, 2012

22.4K
Chicken Embryo Spinal Cord Slice Culture Protocol
10:57

Chicken Embryo Spinal Cord Slice Culture Protocol

Published on: March 25, 2013

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Mouse Hindbrain Ex Vivo Culture to Study Facial Branchiomotor Neuron Migration
10:57

Mouse Hindbrain Ex Vivo Culture to Study Facial Branchiomotor Neuron Migration

Published on: March 18, 2014

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背景情况:

  • 运动神经元 (MN) 对运动和呼吸等基本行为至关重要.
  • 霍克斯蛋白质产生MN多样性,但分配不同亚型身份的机制尚不清楚.
  • 了解霍克斯对应函数是破译MN发展的关键.

结论:

  • 霍克萨5采用多种机制来诱导和维持MN身份.
  • 特定的霍克斯-辅因子相互作用对于分配不同的MN命运至关重要.
  • 这项研究澄清了MN亚型规范的转录控制.