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Set point regulation of astrocyte intracellular Ca2+ signalling

机译:星形胶质细胞细胞内Ca 2 + 信号传导的设定点调节

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Neurodegenerative diseases are the current centre of attention in medicine due to their increased physiological and psychological burden on the ageing society and in the other hand the lack of efficient treatment to them. In parallel, nanotechnology opens possibilities to study neurodegeneration in the molecular level and uncover cellular properties at the nanoscale that possibly allow disease control using novel system biology methods. The communication between neurons and astrocytes explains how a failure in their communication impact neuronal activity, and how the intracellular Ca2+ signalling of astrocytes can interfere in the synaptic quality. This paper presents a theoretical investigation of a feedforward and feedback control technique to regulate the quantity of IP3 that determines the concentration of Ca2+ emitted from intracellular signalling. The analysis of the control model showed that the quantity of Ca2+ signalling can be stabilised at a desired level. A potential application is to facilitate the Ca2+ concentration around this desired level to maintain cellular homoeostasis for longer periods of time, which can lead to a technology for preventing neurodegenerative diseases. The proposed approach can result in novel solutions for both nanobiology and nanomedicine development, where synthetic biology can be used to program the control functionality into the cells. Other ways of implementing such technology are also explored, including nanoparticles, implantable devices and molecular communications.
机译:神经退行性疾病是目前医学中的注意中心,因为他们增加了老龄化社会的生理和心理负担,另一方面缺乏对他们有效的疗程。同时,纳米技术开启了在分子水平中研究神经变性的可能性,并在纳米级上发现植物特性,可能使用新的系统生物学方法允许疾病控制。神经元和星形胶质细胞之间的沟通解释了它们的通信影响神经元活动的失败,以及如何在突触质量中干扰星形胶质细胞的信号传导。本文介绍了对前馈和反馈控制技术的理论研究,以调节确定从细胞内信号传导的Ca 2 + 浓度的IP3的量。对照模型的分析表明,Ca 2 + / sup>信号传导的量可以在所需水平下稳定。潜在的应用是促进围绕该所需水平的Ca 2 + / sup>浓度,以保持细胞同性化的时间较长时间,这可能导致防止神经变性疾病的技术。该方法可以导致纳米生物学和纳米医生发育的新型解决方案,其中合成生物学可用于将控制功能编程到细胞中。还探讨了实施此类技术的其他方式,包括纳米粒子,可植入装置和分子通信。

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