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使用基于主体的计算范式模拟外源性钙对角质形成细胞和HaCaT细胞增殖与分化的影响。

Modeling the effect of exogenous calcium on keratinocyte and HaCat cell proliferation and differentiation using an agent-based computational paradigm.

作者信息

Walker Dawn, Sun Tao, MacNeil Sheila, Smallwood Rod

机构信息

Department of Computer Science, Kroto Research Institute, North Campus, University of Sheffield, Broad Lane, Sheffield, United Kingdom.

出版信息

Tissue Eng. 2006 Aug;12(8):2301-9. doi: 10.1089/ten.2006.12.2301.

Abstract

In this study we sought to develop a computational modeling paradigm in order to describe the influence of calcium on normal and transformed keratinocyte proliferation and differentiation. Keratinocytes and HaCat cells were grown in monolayer cultures with low and physiologic calcium concentrations, and levels of proliferation and involucrin expression were assessed. Both types of cells grew as monolayers under a low-calcium environment, and stratified in media with physiologic levels of calcium. However, keratinocytes were more proliferative in low rather than physiologic levels of calcium, whereas the opposite was true for HaCat cells. Normal keratinocytes differentiated as calcium levels increased. HaCat cells showed little differentiation at any calcium concentration. However, while the computer simulation could be modified to describe the effect of calcium on the growth of normal keratinocytes, our findings did not support the hypothesis that simply "turning off" the ability of HaCat cells to differentiate would account for the growth characteristics of these transformed cells. This demonstrates the application of computational modeling to hypothesis testing in biological systems.

摘要

在本研究中,我们试图开发一种计算建模范式,以描述钙对正常和转化角质形成细胞增殖与分化的影响。角质形成细胞和HaCat细胞在低钙和生理钙浓度的单层培养物中生长,并评估增殖水平和内披蛋白表达。两种类型的细胞在低钙环境下均以单层形式生长,并在生理钙水平的培养基中分层。然而,角质形成细胞在低钙水平而非生理钙水平下增殖更多,而HaCat细胞则相反。随着钙水平的升高,正常角质形成细胞发生分化。HaCat细胞在任何钙浓度下均几乎不发生分化。然而,虽然可以修改计算机模拟以描述钙对正常角质形成细胞生长的影响,但我们的研究结果并不支持这样的假设,即简单地“关闭”HaCat细胞的分化能力就能解释这些转化细胞的生长特性。这证明了计算建模在生物系统假设检验中的应用。

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