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干细胞微环境优势定理。

A stem cell niche dominance theorem.

作者信息

Wolkenhauer Olaf, Shibata Darryl K, Mesarović Mihajlo D

机构信息

Department of Systems Biology and Bioinformatics, University of Rostock, Rostock, Germany.

出版信息

BMC Syst Biol. 2011 Jan 8;5:4. doi: 10.1186/1752-0509-5-4.

Abstract

BACKGROUND

Multilevelness is a defining characteristic of complex systems. For example, in the intestinal tissue the epithelial lining is organized into crypts that are maintained by a niche of stem cells. The behavior of the system 'as a whole' is considered to emerge from the functioning and interactions of its parts. What we are seeking here is a conceptual framework to demonstrate how the "fate" of intestinal crypts is an emergent property that inherently arises from the complex yet robust underlying biology of stem cells.

RESULTS

We establish a conceptual framework in which to formalize cross-level principles in the context of tissue organization. To this end we provide a definition for stemness, which is the propensity of a cell lineage to contribute to a tissue fate. We do not consider stemness a property of a cell but link it to the process in which a cell lineage contributes towards tissue (mal)function. We furthermore show that the only logically feasible relationship between the stemness of cell lineages and the emergent fate of their tissue, which satisfies the given criteria, is one of dominance from a particular lineage.

CONCLUSIONS

The dominance theorem, conceived and proven in this paper, provides support for the concepts of niche succession and monoclonal conversion in intestinal crypts as bottom-up relations, while crypt fission is postulated to be a top-down principle.

摘要

背景

多层次性是复杂系统的一个决定性特征。例如,在肠道组织中,上皮内层被组织成隐窝,由干细胞微环境维持。系统“作为一个整体”的行为被认为源于其各部分的功能和相互作用。我们在此寻求的是一个概念框架,以证明肠道隐窝的“命运”是一种涌现特性,它本质上源于干细胞复杂而稳健的基础生物学。

结果

我们建立了一个概念框架,用于在组织组织的背景下形式化跨层次原则。为此,我们提供了干性的定义,即细胞谱系对组织命运做出贡献的倾向。我们不认为干性是细胞的一种属性,而是将其与细胞谱系对组织(功能异常)功能做出贡献的过程联系起来。我们还表明,细胞谱系的干性与其组织的涌现命运之间唯一逻辑上可行的关系,满足给定标准的,是特定谱系的主导关系。

结论

本文提出并证明的主导定理为肠道隐窝中的微环境更替和单克隆转化概念作为自下而上的关系提供了支持,而隐窝裂变被假定为自上而下的原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/158a/3030540/996b337ab5e2/1752-0509-5-4-1.jpg

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