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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Calibration of the calcium dissociation constant of Rhod(2)in the perfused mouse heart using manganese quenching.
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Calibration of the calcium dissociation constant of Rhod(2)in the perfused mouse heart using manganese quenching.

机译:使用锰淬灭法对灌注小鼠心脏中Rhod(2)的钙解离常数进行校准。

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摘要

Both theoretical and experimental results are presented for in vivo calibration of the dissociation constant K(Ca)(d)of the calcium-sensitive fluorescent dye Rhod(2)in the perfused mouse heart, using manganese quenching of fluorescence transients. An analytical model is derived, based on the biochemical equilibrium of manganese competition with calcium for Rhod(2)binding. Expressing the differential of the changes between systole and diastole in fluorescence transient (delta Delta F(sys-dia)). delta DeltaF(sys-dia)in a beating heart as a function of the perfusate manganese concentration [Mn(2+)](p)allows correlation of the measured differential transient changes delta Delta F(sys-dia)with the calcium dissociation constant K(Ca)(d)of Rhod(2)and the calcium concentration in the heart. Numerical modeling indicates that the K(Ca)(d)predominantly affects the asymptotic slope of the delta Delta F(sys-dia)versus [Mn(2+)](p)curve at certain manganese concentrations, which suggests that the K(Ca)(d)can be inversely calculated by partially fitting the delta Delta F(sys-dia)distribution as a function of the perfusate manganese concentration. The feasibility of this approach is confirmed by quenching of calcium transients by manganese infusion into isolated perfused beating mouse hearts. The resulting calculated dissociation constant K(Ca)(d)of Rhod(2)is 720nM. Using the same approach, we are able to also estimate intracellular calcium concentrations of 700nM at peak systole and 300nM in diastole. This is in good agreement with values obtained by calibration of fluorescence values with a calcium saturation tetanization procedure in the same perfused mouse heart model. Copyright 2001 Harcourt Publishers Ltd.
机译:提出了理论上和实验上的结果,用于通过荧光瞬态的锰淬灭对钙敏感的荧光染料Rhod(2)在灌注的小鼠心脏中的解离常数K(Ca)(d)进行体内校准。基于锰与钙竞争Rhod(2)结合的生化平衡,得出了一个分析模型。在荧光瞬态中表达收缩压和舒张压之间变化的差异(ΔDelta F(sys-dia))。心脏跳动中的Delta DeltaF(sys-dia)与灌洗液锰浓度[Mn(2 +)](p)的关系,可将测得的差分瞬变变化量Delta Delta F(sys-dia)与钙解离常数相关联Rhod(2)的K(Ca)(d)和心脏中的钙浓度。数值模拟表明,在某些锰浓度下,K(Ca)(d)主要影响δDelta F(sys-dia)与[Mn(2 +)](p)曲线的渐近斜率。 Ca)(d)可通过部分拟合随灌洗液锰浓度变化的Delta Delta F(sys-dia)分布来反算。通过将锰注入分离的灌注的跳动小鼠心脏中的钙瞬变淬灭,可以证实这种方法的可行性。所得的Rhod(2)的计算解离常数K(Ca)(d)为720nM。使用相同的方法,我们还能够估算出收缩期峰值时细胞内钙浓度为700nM,舒张期细胞内钙浓度为300nM。这与在相同的灌注小鼠心脏模型中通过钙饱和tetanization程序校准荧光值所获得的值非常吻合。版权所有2001 Harcourt Publishers Ltd.。

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