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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Purine metabolism in response to hypoxic conditions associated with breath-hold diving and exercise in erythrocytes and plasma from bottlenose dolphins (Tursiops truncatus)
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Purine metabolism in response to hypoxic conditions associated with breath-hold diving and exercise in erythrocytes and plasma from bottlenose dolphins (Tursiops truncatus)

机译:嘌呤代谢是对低氧条件的响应,低氧条件与屏气潜水和宽吻海豚的红血球和血浆中的运动有关(Tursiops truncatus)

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In mammalian tissues under hypoxic conditions, ATP degradation results in accumulation of purine metabolites. During exercise, muscle energetic demand increases and oxygen consumption can exceed its supply. During breath-hold diving, oxygen supply is reduced and, although oxygen utilization is regulated by bradycardia (low heart rate) and peripheral vasoconstriction, tissues with low blood flow (ischemia) may become hypoxic. The goal of this study was to evaluate potential differences in the circulating levels of purine metabolism components between diving and exercise in bottlenose dolphins (Tursiops truncatus). Blood samples were taken from captive dolphins following a swimming routine (n = 8) and after a 2 min dive (n = 8). Activity of enzymes involved in purine metabolism (hypoxanthine guanine phosphoribosyl transferase (HGPRT), inosine monophosphate deshydrogenase (IMPDH), xanthine oxidase (XO), purine nucleoside phosphorylase (PNP)), and purine metabolite (hypoxanthine (HX), xanthine (X), uric acid (UA), inosine monophosphate (IMP), inosine, nicotinamide adenine dinucleotide (NAD(+)), adenosine, adenosine monophosphate (AMP), adenosine diphosphate (ADP), ATP, guanosine diphosphate (GDP), guanosine triphosphate (GTP)) concentrations were quantified in erythrocyte and plasma samples. Enzymatic activity and purine metabolite concentrations involved in purine synthesis and degradation, were not significantly different between diving and exercise. Plasma adenosine concentration was higher after diving than exercise (p = 0.03); this may be related to dive-induced ischemia. In erythrocytes, HGPRT activity was higher after diving than exercise (p = 0.007), suggesting an increased capacity for purine recycling and ATP synthesis from IMP in ischemic tissues of bottlenose dolphins during diving. Purine recycling and physiological adaptations may maintain the ATP concentrations in bottlenose dolphins after diving and exercise. (c) 2015 Elsevier Inc. All rights reserved.
机译:在低氧条件下的哺乳动物组织中,ATP降解导致嘌呤代谢产物积聚。运动期间,肌肉能量需求增加,氧气消耗可能超过其供应量。在屏气潜水期间,氧气供应减少,尽管氧气的使用受到心动过缓(低心率)和周围血管收缩的调节,但血流量低(缺血)的组织可能会变得缺氧。这项研究的目的是评估宽吻海豚(Tursiops truncatus)在潜水和锻炼之间嘌呤代谢成分循环水平的潜在差异。游泳常规(n = 8)和潜水2分钟(n = 8)后,从圈养海豚中采集血样。嘌呤代谢相关酶的活性(次黄嘌呤鸟嘌呤磷酸核糖基转移酶(HGPRT),肌苷单磷酸脱氢酶(IMPDH),黄嘌呤氧化酶(XO),嘌呤核苷磷酸化酶(PNP))和嘌呤代谢物(次黄嘌呤(HX),黄嘌呤(X) ,尿酸(UA),肌苷一磷酸(IMP),肌苷,烟酰胺腺嘌呤二核苷酸(NAD(+)),腺苷,腺苷单磷酸(AMP),腺苷二磷酸(ADP),ATP,鸟苷二磷酸(GDP),鸟苷三磷酸( GTP))浓度在红细胞和血浆样品中定量。在潜水和锻炼之间,参与嘌呤合成和降解的酶活性和嘌呤代谢产物浓度没有显着差异。潜水后血浆腺苷浓度高于运动(p = 0.03);这可能与潜水引起的缺血有关。在红细胞中,潜水后的HGPRT活性高于运动(p = 0.007),这表明潜水期间宽吻海豚缺血组织中嘌呤再循环和IMP合成ATP的能力增强。潜水和运动后,嘌呤的再循环和生理适应性可以维持宽吻海豚体内的ATP浓度。 (c)2015 Elsevier Inc.保留所有权利。

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