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Experiments and mechanochemical modeling of smooth muscle contraction: significance of filament overlap.

机译:平滑肌收缩的实验和力学化学建模:细丝重叠的意义。

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摘要

The main function of smooth muscle is to maintain/regulate the size of different hollow organs through contraction and relaxation. The magnitude of the active force during contraction is dependent on the number of attached cross-bridges, which can be linked to the overlap between the thin and thick filaments. The relevance of filament overlap and the active cross-bridges in smooth muscle is investigated through a mechanical model founded on Hill's three-element model. The mechanical model describes a sarcomere-equivalent contractile unit supported by structural observations with a distinct filament overlap and a realistic framework for the filament sliding behavior based on force-velocity experiments. The mechanical model is coupled to the four-state latch-model by Hai and Murphy to capture the electromechanical activation from intracellular calcium concentration to load-bearing cross-bridges. The model is fitted to isometric experiments performed on the pig carotid media and on isotonic quick-release experiments found in the literature. The proposed coupled mechanochemical model with the description of the filament overlap, which has a significant influence on the results, is able to predict isometric experimental data performed at different muscle lengths. The relevance of the filament overlap and the load-bearing cross-bridges is investigated through the model by simulating additional scenarios that has been documented in the literature.
机译:平滑肌的主要功能是通过收缩和松弛来维持/调节不同中空器官的大小。收缩过程中的作用力大小​​取决于所连接的跨桥的数量,该数量可以与细丝和粗丝之间的重叠联系在一起。通过建立在希尔三要素模型上的力学模型,研究了平滑肌中细丝重叠和活动过桥的相关性。力学模型描述了一个肌节等效收缩单元,该结构单元受结构观察的支持,具有明显的细丝重叠和基于力-速度实验的细丝滑动行为的现实框架。机械模型由Hai和Murphy耦合到四态闩锁模型,以捕获从细胞内钙浓度到承重跨桥的机电激活。该模型适合在猪颈动脉介质上进行的等轴测实验以及文献中发现的等张速释实验。所提出的耦合机械化学模型与细丝重叠的描述对结果有重大影响,该模型能够预测在不同肌肉长度下执行的等轴实验数据。通过模拟文献中已记录的其他方案,通过模型研究了灯丝重叠和承重跨桥的相关性。

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