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On the role of the central nervous system in regulating the mineralisation of inner-ear otoliths of fish

机译:关于中枢神经系统在调节鱼内耳耳石矿化中的作用

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摘要

Stato- or otoliths are calcified structures in the organ of balance and equilibrium of vertebrates, the inner car, where they enhance its sensitivity to gravity. The compact otoliths of fish are composed of the calcium carbonate polymorph aragonite and a small fraction of organic molecules. The latter form a protein skeleton which determines the morphology of an otolith as well as its crystal lattice structure. This short review addresses findings according to which the brain obviously plays a prominent role in regulating the mineralisation of fish otoliths and depends on the gravity vector. Overall, otolith mineralisation has thus been identified to be a unique, neuronally guided biomineralisation process. The following is a hypothetical model for regulation of calcification by efferent vestibular neurons: (1) release of calcium at tight junctions in the macular epithelia, (2) macular carbonic anhydrase activity (which in turn is responsible for carbonate deposition), (3) chemical composition of matrix proteins. The rationale and evidence that support this model are discussed.
机译:脊柱石或耳石是脊椎动物(内部车)的平衡器官中的钙化结构,在那里它们增强了其对重力的敏感性。鱼的致密耳石由碳酸钙多晶型文石和一小部分有机分子组成。后者形成蛋白质骨架,该骨架决定耳石的形态及其晶格结构。这篇简短的评论针对的发现表明,大脑显然在调节鱼耳石的矿化中起着重要作用,并取决于重力矢量。总体而言,耳石矿化已被确定为独特的,神经元指导的生物矿化过程。以下是一个假设模型,用于调节传出的前庭神经元的钙化:(1)在黄斑上皮的紧密连接处释放钙,(2)黄斑碳酸酐酶活性(进而负责碳酸盐沉积),(3)基质蛋白的化学组成。讨论了支持该模型的原理和证据。

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