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MODELLING THE ION CHANNEL BEHAVIOUR OF ARTICULAR CHONDROCYTES

机译:建模关节软骨的离子通道行为

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All cells have a membrane potential; this voltage difference arises from the different intracellular and extracellular ion concentrations. In excitable tissue the cell membranes contain ion channels which control the movement of ions and hence control the cell's membrane potential. Extensive measurements of the electrophysiology of excitable cells has allowed considerable understanding of the ion channels. The Hodgkin-Huxley model was developed from measurements on a squid nerve axon, and it quantifies the changes in membrane conductance due to the opening and closing of specific ion channels. This model has been very successful in describing the electrical behaviour of neurons. Ion channels also exist in non-excitable tissue cells. Patch clamp experiments have demonstrated that ion channels in chondrocytes influence cell's membrane potential; controls the influx of Ca~(2+) and may regulate cell proliferation. The objective of this research was to develop a model of ion channel behaviour for connective tissue cells based on the Hodgkin-Huxley model, and to apply this model to reported patch clamp measurements of articular chondrocytes.
机译:所有细胞都具有膜电位。该电压差是由于细胞内和细胞外离子浓度不同而引起的。在可激发的组织中,细胞膜包含离子通道,这些离子通道控制离子的运动,从而控制细胞的膜电位。对可兴奋细胞的电生理学的广泛测量已使人们对离子通道有了相当的了解。 Hodgkin-Huxley模型是根据鱿鱼神经轴突的测量结果开发的,它可以量化由于特定离子通道打开和关闭而引起的膜电导的变化。该模型在描述神经元的电行为方面非常成功。离子通道也存在于非兴奋性组织细胞中。膜片钳实验已经证明,软骨细胞中的离子通道会影响细胞的膜电位。控制Ca〜(2+)的流入并可能调节细胞增殖。这项研究的目的是建立一个基于Hodgkin-Huxley模型的结缔组织细胞离子通道行为模型,并将该模型应用于已报道的关节软骨细胞膜片钳测量。

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