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Disruption of a Quorum Sensing mechanism triggers tumorigenesis: a simple discrete model corroborated by experiments in mammary cancer stem cells

机译:仲裁感应机制的破坏会触发肿瘤发生:在乳腺癌干细胞中的实验证实了一个简单的离散模型

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Background The balance between self-renewal and differentiation of stem cells is expected to be tightly controlled in order to maintain tissue homeostasis throughout life, also in the face of environmental hazards. Theory, predicting that homeostasis is maintained by a negative feedback on stem cell proliferation, implies a Quorum Sensing mechanism in higher vertebrates. Results Application of this theory to a cellular automata model of stem cell development in disrupted environments shows a sharply dichotomous growth dynamics: maturation within 50-400 cell cycles, or immortalization. This dichotomy is mainly driven by intercellular communication, low intensity of which causes perpetual proliferation. Another driving force is the cells' kinetic parameters. Reduced tissue life span of differentiated cells results in uncontrolled proliferation. Model's analysis, showing that under the Quorum Sensing control, stem cell fraction within a steady state population is fixed, is corroborated by experiments in breast carcinoma cells. Experimental results show that the plating densities of CD44+ cells and of CD44+/24lo/ESA+ cells do not affect stem cell fraction near confluence. Conclusions This study suggests that stem cell immortalization may be triggered by reduced intercellular communication, rather than exclusively result from somatic evolution, and implies that stem cell proliferation can be attenuated by signal manipulation, or enhanced by cytotoxics targeted to differentiated cells. In vivo verification and identification of the Quorum Sensing mediating molecules will pave the way to a higher level control of stem cell proliferation in cancer and in tissue engineering. Reviewers This article was reviewed by Glenn Webb and Marek Kimmel.
机译:背景技术面对环境危害,人们希望严格控制干细胞自我更新和分化之间的平衡,以在整个生命中维持组织的体内平衡。理论上,通过对干细胞增殖的负反馈来维持体内稳态,暗示了高等脊椎动物中的群体感应机制。结果将该理论应用于在破坏环境中的干细胞发育的细胞自动机模型中,显示出明显的二分增长动态:在50-400个细胞周期内成熟或永生化。这种二分法主要是由细胞间通讯驱动的,这种通讯的强度低会引起永久性增殖。另一个驱动力是细胞的动力学参数。分化细胞的组织寿命缩短导致不受控制的增殖。该模型的分析表明,在群体感应控制下,稳态群体中的干细胞比例是固定的,在乳腺癌细胞中的实验证实了这一点。实验结果表明,CD44 +细胞和CD44 + / 24lo / ESA +细胞的铺板密度不会影响汇合处的干细胞级分。结论这项研究表明干细胞永生化可能是由减少的细胞间通讯触发的,而不是仅由体细胞进化引起的,并且暗示干细胞的增殖可以通过信号操纵来减弱,或者通过针对分化细胞的细胞毒性来增强。群体感应介导分子的体内验证和鉴定将为癌症和组织工程中干细胞增殖的更高水平控制铺平道路。审阅者本文由Glenn Webb和Marek Kimmel审阅。

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