Mohrman D E, Heller L J
Department of Physiology, University of Minnesota, Duluth 55812.
Am J Physiol. 1990 Sep;259(3 Pt 2):H772-83. doi: 10.1152/ajpheart.1990.259.3.H772.
Transcapillary adenosine transport was studied in isolated guinea pig and rat hearts perfused with a colloid-free solution. High-performance liquid chromatography techniques were used to measure adenosine concentration of venous and interstitial (epicardial surface) fluid during steady-state perfusion with various concentrations of adenosine. A mathematical model was used to analyze these data to obtain estimates of the following parameters of transcapillary adenosine transport: PSg, permeability-surface area product for adenosine movement through interendothelial cell channels; PSecl, permeability-surface area product for adenosine movement through the luminal plasma membrane of endothelial cells; and Gec, clearance rate constant for endothelial cell metabolism and/or sequestration of adenosine. In both guinea pig and rat hearts, PSg was estimated to be less than or equal to 3 ml.min-1.g-1. Estimates of PSecl and Gec of guinea pig hearts (7.2 +/- 0.4 and 230 +/- 157 ml.min-1.g-1) were significantly less than those of rat hearts (66 +/- 11 and 2,490 +/- 1,360 ml.min-1.g-1). That PSecl is greater than PSg in both species indicates that endothelial cells represent an important pathway for transcapillary adenosine transport. That Gec is much greater than PSecl in both species implies that endothelial cells act as a sink for adenosine from surrounding areas. Our results indicate that endothelium is a stronger sink for adenosine in rat hearts than in guinea pig hearts. Inosine infusion (10(-4)M) had little effect on the estimated PSecl and Gec in guinea pig hearts but reduced these parameters several-fold in rat hearts, suggesting that different transport mechanisms for adenosine exist in endothelia of guinea pig and rat hearts.
在灌注无胶体溶液的豚鼠和大鼠离体心脏中研究了跨毛细血管的腺苷转运。使用高效液相色谱技术在不同浓度腺苷的稳态灌注过程中测量静脉和间质(心外膜表面)液中的腺苷浓度。使用数学模型分析这些数据,以获得跨毛细血管腺苷转运的以下参数估计值:PSg,腺苷通过内皮细胞间通道移动的通透表面积乘积;PSecl,腺苷通过内皮细胞腔面膜移动的通透表面积乘积;以及Gec,内皮细胞代谢和/或腺苷隔离的清除率常数。在豚鼠和大鼠心脏中,PSg估计小于或等于3 ml·min⁻¹·g⁻¹。豚鼠心脏的PSecl和Gec估计值(7.2±0.4和230±157 ml·min⁻¹·g⁻¹)明显低于大鼠心脏(66±11和2490±1360 ml·min⁻¹·g⁻¹)。在两个物种中PSecl均大于PSg,这表明内皮细胞是跨毛细血管腺苷转运的重要途径。在两个物种中Gec均远大于PSecl,这意味着内皮细胞充当周围区域腺苷的汇。我们的结果表明,与豚鼠心脏相比,内皮在大鼠心脏中是更强的腺苷汇。肌苷输注(10⁻⁴M)对豚鼠心脏中估计的PSecl和Gec影响很小,但在大鼠心脏中使这些参数降低了几倍,这表明豚鼠和大鼠心脏内皮中存在不同的腺苷转运机制。