Sheldon Claire, Cheng Y May, Church John
Department of Physiology, University of British Columbia, 2177 Wesbrook Mall, Vancouver, B.C. V6T 1Z3, Canada.
Pflugers Arch. 2004 Dec;449(3):307-18. doi: 10.1007/s00424-004-1344-8.
We report a method for the concurrent measurement of intracellular [Na+] ([Na+ ]i) and pH (pHi) in cells co-loaded with SBFI, a Na+-sensitive fluorophore, and either carboxy SNARF-1 or SNARF-5F, H+-sensitive fluorophores. With the optical filters specified, fluorescence emissions from SBFI and either SNARF derivative were sufficiently distinct to allow the accurate measurement of [Na+]i and pHi in rat hippocampal neurons. Neither the Na+ sensitivity of SBFI nor the pH sensitivities of carboxy SNARF-1 or SNARF-5F was affected by the presence of a SNARF derivative or SBFI, respectively. In addition, the calibration parameters obtained in neurons single-loaded with SBFI, carboxy SNARF-1 or SNARF-5F were not significantly influenced by the presence of a second fluorophore. In contrast to the established weak sensitivity of SBFI for protons, both SNARF derivatives appeared essentially insensitive to changes in [Na+]i. The utility of the technique was demonstrated in neurons co-loaded with SBFI and SNARF-5F, which was found to have a lower p Ka in situ than carboxy SNARF-1. There were no significant differences in the changes in [Na+]i and pHi observed in response either to intracellular acid loads imposed by the NH4+ prepulse technique or to transient periods of anoxia in neurons single-loaded with SBFI or SNARF-5F or co-loaded with both probes. The findings support the feasibility of using SBFI in conjunction with either carboxy SNARF-1 or SNARF-5F to concurrently and accurately measure [Na+]i and pHi.
我们报告了一种用于同时测量共加载有SBFI(一种钠敏感荧光团)和羧基SNARF-1或SNARF-5F(氢离子敏感荧光团)的细胞内[Na⁺]([Na⁺]i)和pH(pHi)的方法。使用指定的光学滤光片,SBFI与任何一种SNARF衍生物的荧光发射足够不同,从而能够准确测量大鼠海马神经元中的[Na⁺]i和pHi。SBFI对钠的敏感性以及羧基SNARF-1或SNARF-5F对pH的敏感性分别不受SNARF衍生物或SBFI存在的影响。此外,在单加载有SBFI、羧基SNARF-1或SNARF-5F的神经元中获得的校准参数,也不会受到第二种荧光团存在的显著影响。与已确定的SBFI对质子的弱敏感性相反,两种SNARF衍生物对[Na⁺]i的变化基本不敏感。该技术的实用性在共加载有SBFI和SNARF-5F的神经元中得到了证明,发现其原位pKa低于羧基SNARF-1。在单加载有SBFI或SNARF-5F或同时加载两种探针的神经元中,无论是对由NH₄⁺预脉冲技术施加的细胞内酸负荷,还是对短暂缺氧期,所观察到的[Na⁺]i和pHi的变化均无显著差异。这些发现支持了将SBFI与羧基SNARF-1或SNARF-5F结合使用以同时准确测量[Na⁺]i和pHi的可行性。