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An adaptation of astronomical image processing enables characterization and functional 3D mapping of individual sites of excitation-contraction coupling in rat cardiac muscle

机译:天文图像处理的改编可对大鼠心肌中的激励-收缩耦合的各个部位进行表征和功能性3D映射

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摘要

In beating cardiomyocytes, synchronized localized Ca2+ transients from thousands of active excitation-contraction coupling sites (ECC couplons) comprising plasma and sarcoplasmic reticulum membrane calcium channels are important determinants of the heart's performance. Nevertheless, our knowledge about the properties of ECC couplons is limited by the lack of appropriate experimental and analysis strategies. We designed CaCLEAN to untangle the fundamental characteristics of ECC couplons by combining the astronomer's CLEAN algorithm with known properties of calcium diffusion. CaCLEAN empowers the investigation of fundamental properties of ECC couplons in beating cardiomyocytes without pharmacological interventions. Upon examining individual ECC couplons at the nanoscopic level, we reveal their roles in the negative amplitude-frequency relationship and in β-adrenergic stimulation, including decreasing and increasing firing reliability, respectively. CaCLEAN combined with 3D confocal imaging of beating cardiomyocytes provides a functional 3D map of active ECC couplons (on average, 17,000 per myocyte). CaCLEAN will further enlighten the ECC-couplon-remodelling processes that underlie cardiac diseases.
机译:在跳动的心肌细胞中,来自数千个包括血浆和肌质网膜钙通道的活动性兴奋-收缩偶联位点(ECC偶联)的同步局部Ca 2 + 瞬变是决定心脏性能的重要因素。但是,由于缺乏适当的实验和分析策略,我们对ECC偶联剂性能的了解受到限制。通过将天文学家的CLEAN算法与已知的钙扩散特性相结合,我们设计了CaCLEAN,以理清ECC联结的基本特征。 CaCLEAN可以在无需药理干预的情况下研究ECC偶联剂在跳动心肌细胞中的基本特性。通过在纳米级别检查单个ECC偶联剂,我们揭示了它们在负振幅-频率关系和β-肾上腺素刺激中的作用,分别包括降低和提高发射可靠性。 CaCLEAN与跳动的心肌细胞的3D共聚焦成像相结合,可提供活性ECC偶联子的功能性3D图(平均每个心肌细胞17,000个)。 CaCLEAN将进一步启发构成心脏疾病的ECC-couplon重塑过程。

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