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动态自分泌胰岛素信号传递是否可能?一个数学模型预测人胰岛细胞内细胞外单体胰岛素的皮摩尔浓度。

Is dynamic autocrine insulin signaling possible? A mathematical model predicts picomolar concentrations of extracellular monomeric insulin within human pancreatic islets.

机构信息

Department of Mathematics, University of Louisville, Louisville, Kentucky, United States of America.

出版信息

PLoS One. 2013 Jun 14;8(6):e64860. doi: 10.1371/journal.pone.0064860. Print 2013.

Abstract

Insulin signaling is essential for β-cell survival and proliferation in vivo. Insulin also has potent mitogenic and anti-apoptotic actions on cultured β-cells, with maximum effect in the high picomolar range and diminishing effect at high nanomolar doses. In order to understand whether these effects of insulin are constitutive or can be subjected to physiological modulation, it is essential to estimate the extracellular concentration of monomeric insulin within an intact islet. Unfortunately, the in vivo concentration of insulin monomers within the islet cannot be measured directly with current technology. Here, we present the first mathematical model designed to estimate the levels of monomeric insulin within the islet extracellular space. Insulin is released as insoluble crystals that exhibit a delayed dissociation into hexamers, dimers, and eventually monomers, which only then can act as signaling ligands. The rates at which different forms of insulin dissolve in vivo have been estimated from studies of peripheral insulin injection sites. We used this and other information to formulate a mathematical model to estimate the local insulin concentration within a single islet as a function of glucose. Model parameters were estimated from existing literature. Components of the model were validated using experimental data, if available. Model analysis predicted that the majority of monomeric insulin in the islet is that which has been returned from the periphery, and the concentration of intra-islet monomeric insulin varies from ~50-300 pM when glucose is in the physiological range. Thus, our results suggest that the local concentration of monomeric insulin within the islet is in the picomolar 'sweet spot' range of insulin doses that activate the insulin receptor and have the most potent effects on β-cells in vitro. Together with experimental data, these estimations support the concept that autocrine/paracrine insulin signalling within the islet is dynamic, rather than constitutive and saturated.

摘要

胰岛素信号对于体内β细胞的存活和增殖至关重要。胰岛素对培养的β细胞也具有强烈的有丝分裂和抗凋亡作用,最大效应在皮摩尔范围内,而在高纳摩尔剂量时效应减弱。为了了解胰岛素的这些作用是组成性的还是可以受到生理调节的,必须估计完整胰岛内单体胰岛素的细胞外浓度。不幸的是,目前的技术无法直接测量胰岛内胰岛素单体的体内浓度。在这里,我们提出了第一个旨在估计胰岛细胞外空间中单体胰岛素水平的数学模型。胰岛素以不溶性晶体的形式释放,这些晶体表现出延迟解离为六聚体、二聚体,最终是单体,只有这样才能作为信号配体发挥作用。不同形式的胰岛素在体内溶解的速度是通过对周围胰岛素注射部位的研究来估计的。我们利用这一信息和其他信息来制定一个数学模型,以葡萄糖为函数来估计单个胰岛内的局部胰岛素浓度。模型参数是根据现有文献估计的。如果有实验数据,模型的组成部分将使用实验数据进行验证。模型分析预测,胰岛内的大部分单体胰岛素是从周围返回的,当葡萄糖处于生理范围内时,胰岛内单体胰岛素的浓度从~50-300 pM 不等。因此,我们的结果表明,胰岛内单体胰岛素的局部浓度处于激活胰岛素受体并对体外β细胞产生最强烈作用的胰岛素剂量的皮摩尔“甜蜜点”范围内。这些估计值与实验数据一起支持了这样一种概念,即在胰岛内,自分泌/旁分泌胰岛素信号是动态的,而不是组成性的和饱和的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ac3/3682990/2f0b954ed36e/pone.0064860.g001.jpg

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