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分析干细胞及其后代群体中模式形成的技术。

Techniques for analysing pattern formation in populations of stem cells and their progeny.

机构信息

Centre for Mathematical Medicine & Biology, School of Mathematical Sciences, University of Nottingham, University Park, Nottingham NG7 2RD, UK.

出版信息

BMC Bioinformatics. 2011 Oct 12;12:396. doi: 10.1186/1471-2105-12-396.

Abstract

BACKGROUND

To investigate how patterns of cell differentiation are related to underlying intra- and inter-cellular signalling pathways, we use a stochastic individual-based model to simulate pattern formation when stem cells and their progeny are cultured as a monolayer. We assume that the fate of an individual cell is regulated by the signals it receives from neighbouring cells via either diffusive or juxtacrine signalling. We analyse simulated patterns using two different spatial statistical measures that are suited to planar multicellular systems: pair correlation functions (PCFs) and quadrat histograms (QHs).

RESULTS

With a diffusive signalling mechanism, pattern size (revealed by PCFs) is determined by both morphogen decay rate and a sensitivity parameter that determines the degree to which morphogen biases differentiation; high sensitivity and slow decay give rise to large-scale patterns. In contrast, with juxtacrine signalling, high sensitivity produces well-defined patterns over shorter lengthscales. QHs are simpler to compute than PCFs and allow us to distinguish between random differentiation at low sensitivities and patterned states generated at higher sensitivities.

CONCLUSIONS

PCFs and QHs together provide an effective means of characterising emergent patterns of differentiation in planar multicellular aggregates.

摘要

背景

为了研究细胞分化模式与细胞内和细胞间信号通路之间的关系,我们使用随机个体模型来模拟当干细胞及其后代作为单层培养时的模式形成。我们假设单个细胞的命运受到来自相邻细胞的信号的调节,这些信号通过弥散或旁分泌信号传递。我们使用两种适合平面多细胞系统的不同空间统计度量来分析模拟模式:对关联函数(PCFs)和四分图直方图(QHs)。

结果

在弥散信号机制中,模式大小(由 PCFs 揭示)由形态发生素的衰减率和一个决定形态发生素偏置分化程度的敏感参数决定;高灵敏度和缓慢衰减导致大尺度模式。相比之下,在旁分泌信号中,高灵敏度在较短的尺度上产生清晰的模式。QHs 比 PCFs 更易于计算,并允许我们区分低灵敏度下的随机分化和高灵敏度下生成的模式状态。

结论

PCFs 和 QHs 一起为描述平面多细胞聚集体中分化的新兴模式提供了有效的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ce/3252362/5f78a7967694/1471-2105-12-396-1.jpg

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