首页> 外文期刊>Frontiers in Cell and Developmental Biology >The Intestinal Epithelium – Fluid Fate and Rigid Structure From Crypt Bottom to Villus Tip
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The Intestinal Epithelium – Fluid Fate and Rigid Structure From Crypt Bottom to Villus Tip

机译:肠上皮 - 从隐窝底部到绒毛尖的流体命运和刚性结构

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The single-layered, simple epithelium of the gastro-intestinal tract controls nutrient uptake, coordinates our metabolism and shields us from pathogens. Despite its seemingly simple architecture, the intestinal lining consists of highly distinct cell populations that are continuously renewed by the same stem cell population. The need to maintain balanced diversity of cell types in an unceasingly regenerating tissue demands intricate mechanisms of spatial or temporal cell fate control. Recent advances in single-cell sequencing, spatio-temporal profiling and organoid technology have shed new light on the intricate micro-structure of the intestinal epithelium and on the mechanisms that maintain it. This led to the discovery of unexpected plasticity, zonation along the crypt-villus axis and new mechanism of self-organization. However, not only the epithelium, but also the underlying mesenchyme is distinctly structured. Several new studies have explored the intestinal stroma with single cell resolution and unveiled important interactions with the epithelium that are crucial for intestinal function and regeneration. In this review, we will discuss these recent findings and highlight the technologies that lead to their discovery. We will examine strengths and limitations of each approach and consider the wider impact of these results on our understanding of the intestine in health and disease.
机译:单层胃肠道的单层简单的上皮对照营养吸收,坐标,我们的新陈代谢和盾牌免受病原体。尽管其看似简单的架构,但肠内衬里包括高度不同的细胞群,这些群体被同一干细胞群不断更新。在不可续再生的组织中保持细胞类型的平衡分集需要复杂的空间或时间细胞命运控制。单细胞测序的最新进展,时空分析和有机体技术在肠上皮的复杂微结构和维持它的机制上脱落了新的光。这导致了发现意想不到的可塑性,沿着隐藏绒毛轴的区划和自组织的新机制。然而,不仅是上皮,而且底层间充质是明显的。几项新研究已经探索了单细胞分辨率的肠道基质,并与对肠功能和再生至关重要的上皮进行了重要的相互作用。在这篇综述中,我们将讨论最近的发现,并突出导致其发现的技术。我们将研究各种方法的优势和局限,并考虑对这些结果对健康和疾病肠道的理解更广泛的影响。

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