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核苷转运抑制剂及腺嘌呤/核糖供应对心肌细胞中ATP浓度及腺苷生成的影响。

Effects of nucleoside transport inhibitors and adenine/ribose supply on ATP concentration and adenosine production in cardiac myocytes.

作者信息

Kalsi K K, Smolenski R T, Yacoub M H

机构信息

Heart Science Centre, National Heart and Lung Institute at Harefield Hospital, Middlesex, UK.

出版信息

Mol Cell Biochem. 1998 Mar;180(1-2):193-9.

PMID:9546646
Abstract

Adenosine plays an important role in protection of the heart before, during and after ischemia. Nucleoside transport inhibitors (NTI) increase adenosine concentration without inducing ischemia by preventing its uptake and metabolism in cardiac cells. However, prolonged effects of nucleoside transport inhibitors on adenosine and nucleotide metabolism and its combined effect with nucleotide precursors has not been established in cardiomyocytes. The aim of this study was to investigate the effect of two nucleoside transport inhibitors, dipyridamole (DIPY) and nitrobenzylthioinosine (NBTI) alone or combined with adenine and ribose on adenosine production and ATP content in cardiomyocytes. Rat cardiomyocytes were isolated using collagenase perfusion technique. Isolated cell suspensions were incubated for up to 480 min with different substrates and inhibitors as follows: (1) control; (2) 100 microM adenine and 2.5 mM ribose; (3) 10 microM DIPY; (4) 1 microM NBTI; (5) DIPY, adenine and ribose and (6) NBTI, adenine and ribose. Five microM EHNA (erythro-9(2-hydroxy-3-nonyl)adenine, an inhibitor of adenosine deaminase) was added to all incubations. After incubation, extracts of myocyte suspension were analysed by HPLC for adenine nucleotides and metabolite concentrations. ATP content decreased in cardiomyocytes after 8 h of incubation with DIPY, while no change was observed with NBTI or without inhibitors. Adenosine concentration increased with both DIPY and NBTI. In the presence of adenine and ribose an elevation in ATP concentration was observed, but no significant change in adenosine content. In the presence of DIPY or NBTI together with adenine and ribose, an enhancement in cardiomyocyte ATP concentration was observed together with an increase in adenosine content. This increase in adenosine production was especially prominent with DIPY. In conclusion, dipyridamole causes a decrease in ATP concentration in isolated cardiomyocytes by mechanisms other than nucleoside transport inhibition. Addition of adenine/ribose with dipyridamole prevents the depletion of ATP. Combination of adenine/ribose with nucleoside transport inhibitors may also further enhance adenosine concentration and thus, could be more effective as pharmacological agents for treatment.

摘要

腺苷在心肌缺血前、缺血期间及缺血后对心脏的保护中发挥着重要作用。核苷转运抑制剂(NTI)通过阻止腺苷在心肌细胞中的摄取和代谢来提高其浓度,而不会引发缺血。然而,核苷转运抑制剂对腺苷和核苷酸代谢的长期影响及其与核苷酸前体的联合作用在心肌细胞中尚未得到证实。本研究的目的是探究两种核苷转运抑制剂双嘧达莫(DIPY)和硝基苄硫基肌苷(NBTI)单独使用或与腺嘌呤和核糖联合使用对心肌细胞中腺苷生成和ATP含量的影响。采用胶原酶灌注技术分离大鼠心肌细胞。将分离的细胞悬液与不同的底物和抑制剂孵育长达480分钟,具体如下:(1)对照组;(2)100微摩尔腺嘌呤和2.5毫摩尔核糖;(3)10微摩尔双嘧达莫;(4)1微摩尔硝基苄硫基肌苷;(5)双嘧达莫、腺嘌呤和核糖;(6)硝基苄硫基肌苷、腺嘌呤和核糖。在所有孵育体系中均加入5微摩尔EHNA(erythro-9(2-羟基-3-壬基)腺嘌呤,一种腺苷脱氨酶抑制剂)。孵育后,通过高效液相色谱法分析心肌细胞悬液提取物中的腺嘌呤核苷酸和代谢物浓度。与双嘧达莫孵育8小时后,心肌细胞中的ATP含量降低,而与硝基苄硫基肌苷孵育或无抑制剂孵育时未观察到变化。双嘧达莫和硝基苄硫基肌苷均可使腺苷浓度升高。在存在腺嘌呤和核糖的情况下,观察到ATP浓度升高,但腺苷含量无显著变化。在双嘧达莫或硝基苄硫基肌苷与腺嘌呤和核糖共同存在时,观察到心肌细胞ATP浓度升高,同时腺苷含量增加。双嘧达莫使腺苷生成的增加尤为显著。总之,双嘧达莫通过核苷转运抑制以外的机制导致分离的心肌细胞中ATP浓度降低。双嘧达莫与腺嘌呤/核糖联合使用可防止ATP的消耗。腺嘌呤/核糖与核苷转运抑制剂联合使用还可能进一步提高腺苷浓度,因此,作为治疗药物可能更有效。

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