創傷細胞の体内再プログラムにより皮膚上皮組織が生成される
Masakazu Kurita1,2, Toshikazu Araoka1,3, Tomoaki Hishida1
1The Salk Institute for Biological Studies, La Jolla, CA, USA.
Nature
|September 7, 2018
まとめ
科学者たちは 傷の細胞を 皮膚細胞にプログラムし直し マウスの大きな皮膚潰瘍を 迅速に治癒させました この新しい方法は 慢性的な傷の治療に 皮膚移植の代替手段となる可能性があります
科学分野:
- 再生医療
- 傷 の 癒し
- 細胞生物学
背景:
- 大規模な皮膚潰瘍は健康に重大なリスクをもたらし,世界の人口の高齢化によりますます一般的です.
- 治らない潰瘍の現在の治療法は 皮膚移植や培養細胞などに 限界があります
研究 の 目的:
- 大きな皮膚潰瘍の治療のための新しい治療戦略を開発する.
- 皮膚の覆い面を生成するための in vivo 再プログラムの可能性を探求する.
主な方法:
- 皮膚潰瘍に存在するメゼンキマ細胞は in vivo で再プログラムされた.
- 皮膚細胞系統の特異性を誘導するために4つの特定の転写因子を変換した.
- ネズミのモデルでデノボエピテライゼーションの効果を評価した.
主要な成果:
- 創傷中のメゼンキマ細胞を in vivoで再プログラムすることで, 拡張性のある上皮組織が成功しました.
- 転写因子の変換により,マウスの皮膚潰瘍の迅速かつ効率的なデノボエピテライゼーションが起こりました.
- 生成された上皮組織は傷の部位を覆った.
結論:
- 皮膚の傷を治療する新しい治療法です
- この方法は,組織ホメオスタシスと修復の障害を含む他の条件に潜在的に適応できます.
- 創傷管理の再生戦略への移行が示唆されています
さらに関連する動画
関連する概念動画
Epithelial Tissues and Their Functions
40.8K
Epithelial tissues are large sheets of cells covering all of the surfaces of the body. These surfaces can be internal or external, for example, skin, airways, the digestive tract, the urinary system, and the reproductive system. Hollow organs and body cavities that do not connect to the body's exterior, including blood vessels and serous membranes, are lined by epithelial tissue known as the endothelium.
Epithelial tissues provide the body's first line of protection from physical,...
Epithelial tissues provide the body's first line of protection from physical,...
40.8K
Classification of Epithelial Tissues: Overview
22.1K
Epithelial tissues are classified according to the shape of the cells and the number of cell layers formed. Cell shapes can be squamous (flattened and thin), cuboidal (square-like, as wide as it is tall), or columnar (rectangular, taller than it is wide). Additionally, the nucleus shape helps identify the type of epithelial cells. Squamous cells have flattened disc-shaped nuclei, cuboidal cells have spherical nuclei, and columnar cells have elongated nuclei.
Based on the number of cell layers,...
Based on the number of cell layers,...
22.1K
Somatic to iPS Cell Reprogramming
2.7K
Reprogramming alters the gene expression in somatic cells, transforming them into induced pluripotent stem (iPS) cells over several generations. Scientists can reprogram cells by introducing genes for four transcription factors—Oct4, Sox2, Klf4, and c-Myc (OSKM) by viral or non-viral methods. These factors are also known as Yamanaka factors after Shinya Yamanaka, who first generated iPS cells using mouse skin cells. Yamanaka was awarded the Nobel Prize in Physiology or Medicine in 2012...
2.7K
Classification of Epithelial Tissues: Stratified Epithelium
12.8K
Stratified epithelium consists of several stacked layers of cells. They provide the durability to withstand constant physical and chemical attacks. Stratified epithelium is named after the shape of the most apical layer of cells. Stratified squamous epithelium is the most common type found in the human body. In this tissue, the apical cells are squamous, whereas the basal layer contains either columnar or cuboidal cells. The basal cells divide to form new daughter cells, which gradually become...
12.8K
Classification of Epithelial Tissues: Glandular Epithelium
12.0K
The glandular epithelium is made of one or more epithelial cells modified to synthesize and secrete chemical substances. Glandular epithelia can be classified based on cell number. Unicellular glands have individual secretory cells scattered across the epithelial monolayer. In contrast, multicellular glands consist of a hollow tubular duct attached to the cluster of secretory cells located in the deep pockets.
Multicellular glands are formed during early development when epithelial budding...
Multicellular glands are formed during early development when epithelial budding...
12.0K
Classification of Epithelial Tissues: Simple Epithelium
13.2K
Simple epithelium consists of a single layer of cells that lines body cavities and blood vessels. The shape of the cells in the epithelium reflects the function of the tissue. Cells in simple squamous epithelium appear as thin scales with flat, elliptical nuclei that mirror the form of the cell.
Because of the thinness of the cells, simple squamous epithelium is present where the rapid passage of chemical compounds is observed. For example, the endothelium that lines the capillaries and vessels...
Because of the thinness of the cells, simple squamous epithelium is present where the rapid passage of chemical compounds is observed. For example, the endothelium that lines the capillaries and vessels...
13.2K


