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関連する概念動画

Adult Stem Cells01:33

Adult Stem Cells

Stem cells are undifferentiated cells that divide and produce more stem cells or progenitor cells that differentiate into mature, specialized cell types. All the cells in the body are generated from stem cells in the early embryo, but small populations of stem cells are also present in many adult tissues including the bone marrow, brain, skin, and gut. These adult stem cells typically produce the various cell types found in that tissue—to replace cells that are damaged or to continuously renew...
Multipotency of Hematopoietic Stem Cells01:19

Multipotency of Hematopoietic Stem Cells

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...
Mesenchymal Stem Cells01:19

Mesenchymal Stem Cells

Mesenchymal stem cells (MSCs) are adult stem cells that can differentiate into most connective tissue cell types, except for hematopoietic cells, depending upon the source of MSCs. For example, bone-marrow-derived MSCs (BM-MSCs) can differentiate into osteocytes, hepatocytes, and pancreatic and neuronal cells. MSCs can be isolated from various sources such as bone marrow, placenta, adipose tissue, teeth, and Wharton’s jelly, a gelatinous substance in the umbilical cord. The ease of their access...
Satellite Stem Cells and Muscular Dystrophy01:21

Satellite Stem Cells and Muscular Dystrophy

Satellite stem cells or myosatellite cells are quiescent stem cells that Alexander Mauro first identified in 1961. These cells are located between the sarcolemma, the plasma membrane of muscle fibers, and the basal lamina, the connective tissue sheath covering it. These mononucleated cells are activated in response to muscle injury, can transform into myoblasts, and may form or repair muscle fibers. Myosatellite cells can provide additional myonuclei for muscle regeneration or return to a...
Stem Cell Niche01:26

Stem Cell Niche

The stem cell niche is the dynamic microenvironment where stem cells reside. Inside these niches, the cells may remain undifferentiated, undergo high self-renewal, or become lineage-specific progenitors. Stem cells coexist with other niche cells, such as stromal cells. They also interact closely with the ECM. Cell-cell and cell-matrix communication occur via adhesion molecules or soluble factors that signal the stem cells and determine their fate. Stromal cells also provide survival signals to...
Stem Cell Culture01:17

Stem Cell Culture

Stem cell research aims to find ways to use stem cells to regenerate and repair cellular damage. Over time, most adult cells undergo the wear and tear of aging and lose their ability to divide and repair themselves. Stem cells do not display a particular morphology or function. Adult stem cells, which exist as a small subset of cells in most tissues, keep dividing and can differentiate into a number of specialized cells generally formed by that tissue. These cells enable the body to renew and...

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関連する実験動画

Updated: Jul 20, 2026

Comprehensive Profiling of Dopamine Regulation in Substantia Nigra and Ventral Tegmental Area
09:54

Comprehensive Profiling of Dopamine Regulation in Substantia Nigra and Ventral Tegmental Area

Published on: August 10, 2012

26.4K

空間と時間における骨格幹細胞

Moustapha Kassem1, Paolo Bianco2

  • 1Department of Endocrinology; University Hospital of Odense, 5000 Odense C, Denmark; The Danish Stem Cell Centre-DanStem, Panum Institute, University of Copenhagen, 2200 Copenhagen, Denmark.

Cell
|January 17, 2015
PubMed
まとめ

研究者らは,マウスの骨格組織のための特定の幹細胞を特定し,これは骨の維持と再生に不可欠です. この発見は,細胞の構造を明らかにした.

科学分野:

  • 骨格生物学 骨格生物学とは
  • 幹細胞の研究についてです.
  • 再生医学は再生医学である.

背景:

  • 骨格幹細胞の正確なアイデンティティと機能は,まだ完全に理解されていません.
  • 臓器生理学と組織ホメオスタシスへのそれらの貢献は,さらなる解明を必要とします.

研究 の 目的:

  • 骨格組織を構成する幹細胞を特定し,特徴づけること.
  • 骨格組織の維持と再生におけるこれらの幹細胞とその祖先の役割を調査する.

主な方法:

  • ネズミのモデルを使用して,骨格幹細胞を特定し,隔離しました.
  • 特定された幹細胞集団の生物学的性質と系統関係を特徴づけた.

主要な成果:

  • ネズミの骨格組織のための独特の幹細胞集団を成功裏に特定しました.
  • より限られた潜在能力を有する下流の祖先の存在を証明した.
  • 骨格組織の維持と再生におけるこれらの細胞の役割を確認した.

結論:

  • 特定の骨格幹細胞と祖先の階層がマウスの体内に存在する.
  • これらの細胞は,骨格組織の恒常性および修復プロセスに不可欠です.

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Primary Culture of Mouse Dopaminergic Neurons
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Environmental Modulations of the Number of Midbrain Dopamine Neurons in Adult Mice
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Environmental Modulations of the Number of Midbrain Dopamine Neurons in Adult Mice

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関連する実験動画

Last Updated: Jul 20, 2026

Comprehensive Profiling of Dopamine Regulation in Substantia Nigra and Ventral Tegmental Area
09:54

Comprehensive Profiling of Dopamine Regulation in Substantia Nigra and Ventral Tegmental Area

Published on: August 10, 2012

26.4K
Primary Culture of Mouse Dopaminergic Neurons
11:58

Primary Culture of Mouse Dopaminergic Neurons

Published on: September 8, 2014

39.1K
Environmental Modulations of the Number of Midbrain Dopamine Neurons in Adult Mice
09:35

Environmental Modulations of the Number of Midbrain Dopamine Neurons in Adult Mice

Published on: January 20, 2015

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  • これらの細胞に関するさらなる研究は,再生療法のための約束を保持しています.