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体内钙动力学的生理学观点:一个非线性自组织系统的调节

A physiological view of in vivo calcium dynamics: the regulation of a nonlinear self-organized system.

作者信息

Staub J F, Tracqui P, Lausson S, Milhaud G, Perault-Staub A M

机构信息

Centre National de la Recherche Scientifique UA163, Faculté de Médecine Saint-Antoine, Paris, France.

出版信息

Bone. 1989;10(2):77-86. doi: 10.1016/8756-3282(89)90002-1.

Abstract

Our aim is neither to re-evaluate the term homeostasis, nor to summarize the conventional concepts in the field of calcium metabolism and its regulation, nor even to comment on their advantages and their limitations (excellent recent reviews have been published). This paper is rather a position article and references to the current literature will be made only if they contribute to a better understanding of our proposals; in contrast, emphasis will be placed on a literature which has, until now, remained unfamiliar to the field of calcium metabolism. The text is organized around three related features which are largely dictated by the characteristics of our recently published compartmental self-oscillatory model for rat calcium metabolism: (a) The circadian behavior associated with calcium dynamics in vivo may be viewed as a "key" temporal behavior for investigating the spatiotemporal organization of calcium metabolism in the normal rat. Within the bone, a large part of this circadian behavior should stem from the physico-chemical properties of the transformations of calcium-phosphate associations at the extracellular fluid (ECF)/mature bone interface; (b) an important part of the maintenance of a nearly constant plasma calcium concentration (homeostasis) results from interaction between nonlinear oscillators belonging to both calcium metabolism and calcium-regulating hormones. This implies that: firstly, calcium metabolism, like any biological system, is a complex dynamic system which has evolved over a long period and whose metabolic components--gut, kidney, bone--are organized as dynamic entities, adapted to periodic relationships with the external environment. The intrinsic nature of the circadian behavior of bone calcium efflux proposed here is a sufficient demonstration of this. Secondly, the existence of rhythmic variations in the main calcium regulating hormones, parathyroid hormone (PTH), calcitonin (CT) and vitamin D (VitD), are in agreement with this argument. As developed below, fascinating properties emerge from interaction between oscillators (hormones and target organs) which provide a new perspective on calcium regulation; and (c) one of the striking properties of the kind of nonlinear dynamic system required for this representation of calcium metabolism is that periodicity is only one of many temporal expressions. Thus, qualitative diversity in the temporal expression of calcium metabolism can be expected with varying experimental situations and different modes of temporal regulation of calcium metabolism might be physiologically effective, depending on the species studied.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们的目的既不是重新评估“稳态”这一术语,也不是总结钙代谢及其调节领域的传统概念,甚至不是评论它们的优点和局限性(最近已发表了优秀的综述)。本文更像是一篇立场文章,仅在有助于更好理解我们的提议时才会引用当前文献;相反,将重点放在迄今为止钙代谢领域尚不熟悉的文献上。本文围绕三个相关特征展开,这在很大程度上是由我们最近发表的大鼠钙代谢的房室自振荡模型的特征所决定的:(a) 与体内钙动态相关的昼夜节律行为可被视为研究正常大鼠钙代谢时空组织的“关键”时间行为。在骨骼中,这种昼夜节律行为的很大一部分应源于细胞外液(ECF)/成熟骨界面处钙磷结合转化的物理化学性质;(b) 维持几乎恒定的血浆钙浓度(稳态)的一个重要部分是钙代谢和钙调节激素中非线性振荡器之间相互作用的结果。这意味着:首先,钙代谢与任何生物系统一样,是一个复杂的动态系统,它在很长一段时间内进化而来,其代谢成分——肠道、肾脏、骨骼——被组织成动态实体,适应与外部环境的周期性关系。这里提出的骨钙外流昼夜节律行为的内在本质充分证明了这一点。其次,主要钙调节激素甲状旁腺激素(PTH)、降钙素(CT)和维生素D(VitD)存在节律性变化,这与该论点一致。如下所述,振荡器(激素和靶器官)之间的相互作用产生了引人入胜的特性,为钙调节提供了新的视角;(c) 这种钙代谢表征所需的非线性动态系统的一个显著特性是,周期性只是众多时间表达之一。因此,根据不同的实验情况,预计钙代谢时间表达会有质的多样性,并且根据所研究的物种,不同的钙代谢时间调节模式可能在生理上是有效的。(摘要截断于400字)

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