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葡萄糖向大脑的转运:一种系统模型。

Glucose transport to the brain: a systems model.

作者信息

Qutub Amina A, Hunt C Anthony

机构信息

Joint Graduate Group in Bioengineering, University of California, Berkeley and San Francisco, USA.

出版信息

Brain Res Brain Res Rev. 2005 Nov;49(3):595-617. doi: 10.1016/j.brainresrev.2005.03.002. Epub 2005 Apr 20.

Abstract

Glucose transport to the brain involves sophisticated interactions of solutes, transporters, enzymes, and cell signaling processes, within an intricate spatial architecture. The dynamics of the transport are influenced by the adaptive nature of the blood-brain barrier (BBB), the semi-impermeable membranes of brain capillaries. As both the gate and the gatekeeper between blood-borne nutrients and brain tissue, the BBB helps govern brain homeostasis. Glucose in the blood must cross the BBB's luminal and abluminal membranes to reach neural tissue. A robust representation of the glucose transport mechanism can highlight a target for brain therapeutic intervention, help characterize mechanisms behind several disease phenotypes, or suggest a new delivery route for drugs. The challenge for researchers is understanding the relationships between influential physiological variables in vivo, and using that knowledge to predict how alterations or interventions affect glucose transport. This paper reviews factors influencing glucose transport and approaches to representing blood-to-brain glucose transport including in vitro, in vivo, and kinetic models. Applications for different models are highlighted, while their limitations in answering arising questions about the human in vivo BBB lead to a discussion of an alternate approach. A developing complex systems simulation is introduced, initiating a single platform to represent the dynamics of glucose transport across the adapting human blood-brain barrier.

摘要

葡萄糖向大脑的转运涉及溶质、转运体、酶和细胞信号传导过程在复杂空间结构内的复杂相互作用。转运的动态过程受血脑屏障(BBB)(脑毛细血管的半透膜)适应性的影响。作为血源性营养物质与脑组织之间的大门和守门人,血脑屏障有助于维持大脑的内环境稳定。血液中的葡萄糖必须穿过血脑屏障的管腔膜和管腔外膜才能到达神经组织。对葡萄糖转运机制的深入了解可以突出脑治疗干预的靶点,有助于阐明几种疾病表型背后的机制,或提示一种新的药物递送途径。研究人员面临的挑战是了解体内有影响的生理变量之间的关系,并利用这些知识预测改变或干预如何影响葡萄糖转运。本文综述了影响葡萄糖转运的因素以及表示血脑葡萄糖转运的方法,包括体外、体内和动力学模型。重点介绍了不同模型的应用,同时它们在回答有关人体血脑屏障的新出现问题时的局限性引发了对另一种方法的讨论。介绍了一种正在发展的复杂系统模拟,它启动了一个单一平台来表示葡萄糖在适应性人体血脑屏障中的转运动态。

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