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小鼠心脏腺苷代谢的特点。

Features of adenosine metabolism of mouse heart.

机构信息

Department of Physiology, Medical Faculty of Carl Gustav Carus, TU Dresden, Fetscherstrasse 74, 01307, Dresden, Germany,

出版信息

Purinergic Signal. 2006 Nov;2(4):663-8. doi: 10.1007/s11302-006-9013-3. Epub 2006 Jul 21.

Abstract

Adenosine metabolism and transport were evaluated in the isolated perfused mouse heart and compared with the well-established model of isolated perfused guinea pig heart. Coronary venous release of adenosine under well-oxygenated conditions in the mouse exceeds that in the guinea pig threefold when related to tissue mass. Total myocardial adenosine production rate under this condition was approximately 2 nmol/min per gramme and similar in both species. Coronary resistance vessels of mice are highly sensitive to exogenous adenosine, and the threshold for adenosine-induced vasodilation is approximately 30 nmol/l. Adenosine membrane transport was largely insensitive to nitrobenzyl-thioinosine (NBTI) in mouse heart, which is in contrast to guinea pig and several other species. This indicates the dominance of NBTI-insensitive transporters in mouse heart. For future studies, the assessment of cytosolic and extracellular adenosine metabolism and its relationship with coronary flow will require the use of more effective membrane transport blockers.

摘要

腺苷代谢和转运在分离的灌流小鼠心脏中进行了评估,并与已建立的分离的灌流豚鼠心脏模型进行了比较。当与组织质量相关时,在小鼠中,在充分氧合条件下冠状静脉中腺苷的释放超过豚鼠的三倍。在此条件下,总心肌腺苷生成率约为 2 nmol/min/克,两种物种相似。小鼠的冠状阻力血管对外源性腺苷高度敏感,腺苷诱导的血管舒张的阈值约为 30 nmol/l。在小鼠心脏中,腺苷膜转运对硝基苄基硫代次黄嘌呤(NBTI)的敏感性不大,这与豚鼠和其他几种物种不同。这表明在小鼠心脏中存在 NBTI 不敏感转运体的优势。对于未来的研究,评估细胞溶质和细胞外腺苷代谢及其与冠状血流的关系将需要使用更有效的膜转运抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e09/2096662/656be46cb2b1/11302_2006_Article_9013_Fig1.jpg

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