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A Two-Dimensional Model of the Colonic Crypt Accounting for the Role of the Basement Membrane and Pericryptal Fibroblast Sheath

机译:二维模型的地下墓室占基底膜和周围的成纤维细胞鞘的作用。

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摘要

The role of the basement membrane is vital in maintaining the integrity and structure of an epithelial layer, acting as both a mechanical support and forming the physical interface between epithelial cells and the surrounding connective tissue. The function of this membrane is explored here in the context of the epithelial monolayer that lines the colonic crypt, test-tube shaped invaginations that punctuate the lining of the intestine and coordinate a regular turnover of cells to replenish the epithelial layer every few days. To investigate the consequence of genetic mutations that perturb the system dynamics and can lead to colorectal cancer, it must be possible to track the emerging tissue level changes that arise in the crypt. To that end, a theoretical crypt model with a realistic, deformable geometry is required. A new discrete crypt model is presented, which focuses on the interaction between cell- and tissue-level behaviour, while incorporating key subcellular components. The model contains a novel description of the role of the surrounding tissue and musculature, based upon experimental observations of the tissue structure of the crypt, which are also reported. A two-dimensional (2D) cross-sectional geometry is considered, and the shape of the crypt is allowed to evolve and deform. Simulation results reveal how the shape of the crypt may contribute mechanically to the asymmetric division events typically associated with the stem cells at the base. The model predicts that epithelial cell migration may arise due to feedback between cell loss at the crypt collar and density-dependent cell division, an hypothesis which can be investigated in a wet lab. This work forms the basis for investigation of the deformation of the crypt structure that can occur due to proliferation of cells exhibiting mutant phenotypes, experiments that would not be possible in vivo or in vitro.
机译:基底膜的作用对于维持上皮层的完整性和结构至关重要,既充当机械支撑,又形成上皮细胞与周围结缔组织之间的物理界面。此膜的功能在上皮单层的背景下进行探索,该上皮衬着结肠隐窝,呈试管形的内陷,穿刺肠壁并协调细胞的规则更新,每隔几天即可补充上皮层。为了研究扰动系统动力学并导致大肠癌的遗传突变的后果,必须有可能追踪隐窝中出现的新出现的组织水平变化。为此,需要具有现实的,可变形的几何形状的理论隐窝模型。提出了一个新的离散隐窝模型,该模型着重于细胞和组织水平行为之间的相互作用,同时结合了关键的亚细胞成分。基于对隐窝组织结构的实验观察,该模型还包含了对周围组织和肌肉组织作用的新颖描述,也已有报道。考虑二维(2D)横截面几何形状,并允许隐窝的形状发展和变形。仿真结果揭示了隐窝的形状如何机械地促成通常与基干细胞相关的不对称分裂事件。该模型预测,上皮细胞迁移可能是由于隐窝颈处细胞丢失与密度依赖性细胞分裂之间的反馈而引起的,这一假设可以在湿实验室中进行研究。这项工作为研究隐窝结构的变形奠定了基础,这种隐窝结构的变形可能由于表现出突变表型的细胞的增殖而发生,而这在体内或体外都是不可能的。

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