Guo Rui, Li Sheng-bing, Zhao Li-na, Zhao Yun-sheng, Lu Wei, Yuan Pei, Deng Ping, Liao Fei
Unit of Biochemical Pharmacology and Protein Biotechnology, Chongqing Key Laboratory of Biochemistry and Molecular Pharmacology, College of Pharmaceutical Sciences, Chongqing Medical University, Chongqing 400016, China.
J Zhejiang Univ Sci B. 2007 Dec;8(12):867-74. doi: 10.1631/jzus.2007.B0867.
There was a slow-relaxing tail of skeletal muscles in vitro upon the inhibition of Ca(2+)-pump by cyclopiazonic acid (CPA). Herein, a new linearly-combined bi-exponential model to resolve this slow-relaxing tail from the fast-relaxing phase was investigated for kinetic analysis of the isometric relaxation process of Bufo gastrocnemius in vitro, in comparison to the single exponential model and the classical bi-exponential model. During repetitive stimulations at a 2-s interval by square pulses of a 2-ms duration at 12 V direct currency (DC), the isometric tension of Bufo gastrocnemius was recorded at 100 Hz. The relaxation curve with tensions falling from 90% of the peak to the 15th datum before next stimulation was analyzed by three exponential models using a program in MATLAB 6.5. Both the goodness of fit and the distribution of the residuals for the best fitting supported the comparable validity of this new bi-exponential model for kinetic analysis of the relaxation process of the control muscles. After CPA treatment, however, this new bi-exponential model showed an obvious statistical superiority for kinetic analysis of the muscle relaxation process, and it gave the estimated rest tension consistent to that by experimentation, whereas both the classical bi-exponential model and the single exponential model gave biased rest tensions. Moreover, after the treatment of muscles by CPA, both the single exponential model and the classical bi-exponential model yielded lowered relaxation rates, nevertheless, this new bi-exponential model had relaxation rates of negligible changes except much higher rest tensions. These results suggest that this novel linearly-combined bi-exponential model is desirable for kinetic analysis of the relaxation process of muscles with altered Ca(2+)-pumping activity.
在用环匹阿尼酸(CPA)抑制钙泵后,体外骨骼肌出现了缓慢松弛的尾部。本文研究了一种新的线性组合双指数模型,用于从快速松弛阶段解析这种缓慢松弛的尾部,以便对蟾蜍离体腓肠肌等长松弛过程进行动力学分析,并与单指数模型和经典双指数模型进行比较。在以12V直流电(DC)施加持续时间为2ms的方波脉冲,以2秒间隔进行重复刺激期间,以100Hz记录蟾蜍腓肠肌的等长张力。使用MATLAB 6.5中的程序,通过三种指数模型分析了张力从峰值的90%下降到下次刺激前第15个数据点的松弛曲线。最佳拟合的拟合优度和残差分布均支持这种新的双指数模型在对照肌肉松弛过程动力学分析中的可比有效性。然而,在CPA处理后,这种新的双指数模型在肌肉松弛过程的动力学分析中显示出明显的统计学优势,并且它给出的估计静息张力与实验结果一致,而经典双指数模型和单指数模型给出的静息张力都有偏差。此外,在肌肉用CPA处理后,单指数模型和经典双指数模型的松弛率均降低,然而,这种新的双指数模型除了静息张力高得多外,松弛率变化可忽略不计。这些结果表明,这种新型线性组合双指数模型适用于对钙泵活性改变的肌肉松弛过程进行动力学分析。