Civan M M, Lin L E, Peterson-Yantorno K, Taylor J, Deutsch C
Am J Physiol. 1984 Nov;247(5 Pt 1):C506-10. doi: 10.1152/ajpcell.1984.247.5.C506.
Intracellular pH (pHc) has been determined in frog skin by applying two different methods of pH measurement, 19F and 31P nuclear magnetic resonance (NMR) analysis, to the same tissues. Results from both NMR approaches confirm an observation by Lin, Shporer, and Civan [Am. J. Physiol. 248 (Cell Physiol. 17): 1985] that acidification of the extracellular medium reverses the sign of the pH gradient present under baseline conditions. The fluorinated probe, alpha-(difluoromethyl)-alanine methyl ester, was introduced into the epithelial cells by preincubating skins for 4.7-10.4 h at room temperature in Ringer solutions containing 1 mM ester. The free amino acid was subsequently released by intracellular esterase activity, thus providing a high enough probe concentration for NMR analysis to be practicable. From measurements of short-circuit current and transepithelial resistance under base-line and experimental conditions and the appearance of phosphocreatine (PCr) in the 31P spectrum of preloaded tissues, the fluorinated probe appears to be nontoxic to frog skin. Measurement of the chemical shift of methylphosphonate relative to PCr permitted calculation of extracellular pH. Estimation of the intracellular pH was performed both by measurement of the chemical shift of inorganic phosphate (Pi) relative to PCr and by measurement of the central peak spacing of the 19F spectrum. From four direct comparisons of the two techniques in two experiments, the difference in the estimated pH was only 0.03 +/- 0.07 pH units, supporting the concept that 31P-NMR analysis is a valid method of measuring pH in this tissue.
通过对青蛙皮肤应用两种不同的pH测量方法——19F和31P核磁共振(NMR)分析,来测定细胞内pH(pHc)。两种NMR方法的结果均证实了Lin、Shporer和Civan [《美国生理学杂志》248(细胞生理学17):1985] 的观察结果,即细胞外介质的酸化会逆转基线条件下存在的pH梯度的正负。将氟化探针α-(二氟甲基)-丙氨酸甲酯通过在含有1 mM酯的林格氏溶液中于室温下将皮肤预孵育4.7 - 10.4小时引入上皮细胞。随后,游离氨基酸通过细胞内酯酶活性释放出来,从而为可行的NMR分析提供了足够高的探针浓度。从基线和实验条件下短路电流和跨上皮电阻的测量以及预加载组织的31P谱中磷酸肌酸(PCr)的出现情况来看,氟化探针似乎对青蛙皮肤无毒。通过测量甲基膦酸酯相对于PCr的化学位移来计算细胞外pH。通过测量无机磷酸盐(Pi)相对于PCr的化学位移以及测量19F谱的中心峰间距来进行细胞内pH的估计。在两个实验中对这两种技术进行的四次直接比较中,估计的pH差异仅为0.03±0.07 pH单位,支持了31P - NMR分析是测量该组织中pH的有效方法这一概念。