寻找难以捉摸的肺干细胞生态位

Translational respiratory medicine Pub Date : 2014-04-03 eCollection Date: 2014-01-01 DOI:10.1186/2213-0802-2-7
Ena Ray Banerjee
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摘要

这篇论文从三个角度阐述了干细胞生物学的各个方面以及可用于研究和转化为再生医学的工具。肺部时刻面临着环境的侵袭,不断承受着氧化应激,是重要的解毒器官。在退行性疾病和炎症的情况下,肺部会发生不可逆的重塑,很难对垂死的组织进行治疗和/或移植。另一个难点是研究其发育和再生方面,以最好地解决上述问题。因此,本视角首先回顾了干细胞的类型、作用途径和无脊椎动物的模型,以及微环境及其动态;其次是高等生物的干细胞和生态位;最后是研究损伤模型中干细胞破坏模式的新方法的数据和推论,以及推定肺干细胞生态位的信息。众所周知,干细胞是一种隐性细胞,保留着某些原始特征,类似于无脊椎动物的古老细胞、无脊椎动物和脊椎动物的发育阶段以及哺乳动物等复杂生物的柔韧细胞,表现出刺激特异性行为,或克隆繁殖,或保持良好的保护并隐藏在专门的龛位中,或动员和分化为成熟的功能性细胞,以维持家务、修复损伤或制造新组织。在肺纤维化中,肺泡上皮逐渐退化。为了与再生医学的目标保持一致,本视角以各种模型和检测方法来评估干细胞及其龛位的长期和短期特性。我们还报告了功能性肺干细胞的鉴定和特征描述,以阐明干细胞龛如何对抗这一退化过程。我们还介绍了通过追踪侧群细胞的短期测定法和追踪标记保留细胞的长期测定法,从这种肺变性损伤模型中得出的推论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Looking for the elusive lung stem cell niche.

Looking for the elusive lung stem cell niche.

This discourse contains three perspectives on various aspects of Stem Cell Biology and tools available to study and translate into Regenerative Medicine. The lung incessantly faces onslaught of the environment, constantly undergoes oxidative stress, and is an important organ of detoxification. In degenerative diseases and inflammation, the lung undergoes irreversible remodeling that is difficult to therapeutically address and/or transplant a dying tissue. The other difficulty is to study its development and regenerative aspects to best address the aforementioned problems. This perspective therefore addresses- firstly, review of types of stem cells, their pathway of action and models in invertebrate organisms vis-a-vis microenvironment and its dynamics; secondly, stem cells in higher organisms and niche; and lastly data and inference on a novel approach to study stem cell destruction patterns in an injury model and information on putative lung stem cell niche. Stem cells are cryptic cells known to retain certain primitive characteristics making them akin to ancient cells of invertebrates, developmental stages in invertebrates and vertebrates and pliant cells of complex creatures like mammals that demonstrate stimulus-specific behavious, whether to clonally propagate or to remain well protected and hidden within specialized niches, or mobilize and differentiate into mature functionally operative cells to house-keep, repair injury or make new tissues. In lung fibrosis, alveolar epithelium degenerates progressively. In keeping with the goal of regenerative medicine, various models and assays to evaluate long and short term identity of stem cells and their niches is the subject of this perspective. We also report identification and characterization of functional lung stem cells to clarify how stem cell niches counteract this degenerative process. Inferences drawn from this injury model of lung degeneration using a short term assay by tracking side population cells and a long term assay tracking label retaining cells have been presented.

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