哺乳類の頭支柱細胞は,毛細胞に分裂し,トランス差別化することができる
Patricia M White1, Angelika Doetzlhofer, Yun Shain Lee
1Gonda Department of Cell and Molecular Biology, House Ear Institute, 2100 W. Third Street, Los Angeles, California 90057, USA.
Nature
|June 23, 2006
まとめ
哺乳類の内耳毛細胞は再生しない. しかし,産後サポート細胞は分裂し,新しい毛細胞になり,難聴の治療に役立つ可能性がある.
科学分野:
- オート・ニューロロジー
- 細胞生物学 細胞生物学
- 再生医学は,再生医療である.
背景:
- 哺乳類の内耳器官であるコルティの感覚毛細胞は,損傷を受けた後に再生しない.
- 鳥とは異なり,哺乳類は毛細胞の再生を欠いているので,細胞の可塑性を支えるのかという疑問が生じます.
研究 の 目的:
- 産後哺乳類の内支柱細胞の再生可能性を調査する.
- 支える細胞が分裂し,毛細胞に微分化できるかどうかを判断する.
主な方法:
- 産後マウスのコクレアから産後ミトーシス後サポート細胞の浄化.
- これらの細胞を培養して,その増殖および分化能力を評価する.
- 細胞増殖を支える年齢による変化を分析し,p27 (Kip1) 調節に焦点を当てた.
主要な成果:
- 産後哺乳類のサポート細胞は,培養中の毛細胞に分裂し,トランス差別化する能力を保持しています.
- 細胞増殖を支える年齢依存性の低下は,部分的にはp27のダウンレギュレーションの障害によるものです (Kip1) (Cdkn1b).
結論:
- 産後哺乳類のサポート細胞は,固有の再生能力を有しています.
- 細胞増殖をサポートする治療戦略は,毛細胞を回復させ,聴覚障害を治療することができます.
関連する概念動画
Hair Cells
36.1K
Hair cells are the sensory receptors of the auditory system—they transduce mechanical sound waves into electrical energy that the nervous system can understand. Hair cells are located in the organ of Corti within the cochlea of the inner ear, between the basilar and tectorial membranes. The actual sensory receptors are called inner hair cells. The outer hair cells serve other functions, such as sound amplification in the cochlea, and are not discussed in detail here.
36.1K
The Cochlea
41.0K
The cochlea is a coiled structure in the inner ear that contains hair cells—the sensory receptors of the auditory system. Sound waves are transmitted to the cochlea by small bones attached to the eardrum called the ossicles, which vibrate the oval window that leads to the inner ear. This causes fluid in the chambers of the cochlea to move, vibrating the basilar membrane.
41.0K
Multipotency and Niche of Bulge Stem Cell
2.9K
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...
2.9K
Unrenewable Cells
2.1K
In humans, the photoreceptor cells of the eye and sensory hair cells of the ear lack stem cells. These cells are thus unrenewable and cannot be replaced when they are damaged or destroyed.
Photoreceptors
The retina is composed of several layers and contains specialized cells called photoreceptors. The photoreceptors (rods and cones) change their membrane potential when stimulated by light energy. There are two types of photoreceptors—rods and cones—which differ in the shape of...
Photoreceptors
The retina is composed of several layers and contains specialized cells called photoreceptors. The photoreceptors (rods and cones) change their membrane potential when stimulated by light energy. There are two types of photoreceptors—rods and cones—which differ in the shape of...
2.1K
iPS Cell Differentiation
2.2K
The ability of induced pluripotent stem cells or iPSCs to differentiate into most body cell types has stimulated repair and regenerative medicine research over the past few decades. iPSC-derived blood cells, hepatocytes, beta islet cells, cardiomyocytes, neurons, and other cell types can repair injuries or regenerate damaged tissue in diseases such as diabetes and neurodegenerative disorders.
2.2K
Cellular Differentiation
5.7K
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...
A zygote is a...
5.7K


