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豚鼠心脏的跨毛细血管腺苷转运与间质腺苷浓度

Transcapillary adenosine transport and interstitial adenosine concentration in guinea pig hearts.

作者信息

Wangler R D, Gorman M W, Wang C Y, DeWitt D F, Chan I S, Bassingthwaighte J B, Sparks H V

机构信息

Department of Physiology, Michigan State University, East Lansing 48824.

出版信息

Am J Physiol. 1989 Jul;257(1 Pt 2):H89-106. doi: 10.1152/ajpheart.1989.257.1.H89.

Abstract

We used the multiple-indicator-dilution technique to observe the capillary transport of adenosine in isolated Krebs-Henseleit-perfused guinea pig hearts. Tracer concentrations of radiolabeled albumin, sucrose, and adenosine were injected into the coronary inflow; outflow samples were collected for 10-25 s and analyzed by high-performance liquid chromatography (HPLC) and by gamma- and beta-counting. The albumin data define the intravascular transport characteristics; the sucrose data define permeation through interendothelial clefts and dilution in interstitial fluid (ISF). Parameters calculated from adenosine data include permeability-surface area products for endothelial cell uptake at the luminal and abluminal membranes and intraendothelial metabolism. We found that in situ endothelial cells avidly take up and metabolize adenosine. Tracer adenosine in the capillary lumen is twice as likely to enter an endothelial cell as it is to permeate the clefts. There was no adenosine in the arterial perfusate. Under control conditions, the steady-state venous adenosine concentration was 3.6 +/- 0.8 nM, which from the flow and the parameters estimated from the tracer data gave a calculated ISF concentration of 6.8 +/- 1.5 nM. During dipyridamole infusion (10 microM) at constant pressure, the cell permeabilities went essentially to zero, whereas the venous adenosine concentration increased to 44.0 +/- 12.6 nM, giving an estimated ISF concentration of 191 +/- 53 nM. With constant flow perfusion, venous concentration during dipyridamole infusion was 30.9 +/- 6.3 nM, and estimated ISF concentration was 88 +/- 20 mM. We conclude that in this preparation, at rest, the ISF adenosine concentration is about twice the venous concentration and the ISF adenosine concentration increases with dipyridamole administration.

摘要

我们采用多指示剂稀释技术,观察了腺苷在离体Krebs-Henseleit灌注豚鼠心脏中的毛细血管转运情况。将放射性标记的白蛋白、蔗糖和腺苷的示踪剂浓度注入冠状动脉流入端;收集流出样本10 - 25秒,并通过高效液相色谱(HPLC)以及γ和β计数进行分析。白蛋白数据定义了血管内转运特征;蔗糖数据定义了通过内皮细胞间裂隙的渗透以及间质液(ISF)中的稀释情况。从腺苷数据计算得出的参数包括内皮细胞在管腔膜和管腔外膜摄取以及内皮内代谢的通透表面积乘积。我们发现原位内皮细胞能大量摄取并代谢腺苷。毛细血管腔内的示踪腺苷进入内皮细胞的可能性是渗透过裂隙的两倍。动脉灌注液中没有腺苷。在对照条件下,稳态静脉腺苷浓度为3.6±0.8 nM,根据流量以及从示踪数据估算的参数计算得出的ISF浓度为6.8±1.5 nM。在恒压下输注双嘧达莫(10 μM)期间,细胞通透性基本降为零,而静脉腺苷浓度升至44.0±12.6 nM,估算的ISF浓度为191±53 nM。在恒流灌注时,输注双嘧达莫期间的静脉浓度为30.9±6.3 nM,估算的ISF浓度为88±20 mM。我们得出结论,在此制剂中,静息时ISF腺苷浓度约为静脉浓度的两倍,且ISF腺苷浓度随双嘧达莫给药而增加。

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