Plasma-accessible carbonic anhydrase at the tissue of a teleost fish may greatly enhance oxygen delivery: in vitro evidence in rainbow trout, Oncorhynchus mykiss.

IF 2.6 2区 生物学 Q2 BIOLOGY Journal of Experimental Biology Pub Date : 2011-07-15 DOI:10.1242/jeb.054049
Jodie L Rummer, Colin J Brauner
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引用次数: 56

Abstract

During a generalized acidosis in rainbow trout, catecholamines are released into the blood, activating red blood cell (RBC) Na(+)/H(+) exchange (βNHE), thus protecting RBC intracellular pH (pH(i)) and subsequent O(2) binding at the gill. Because of the presence of a Root effect (a reduction in oxygen carrying capacity of the blood with a reduction in pH), the latter could otherwise be impaired. However, plasma-accessible carbonic anhydrase (CA) at the tissues (and absence at the gills) may result in selective short-circuiting of RBC βNHE pH regulation. This would acidify the RBCs and greatly enhance O(2) delivery by exploitation of the combined Bohr-Root effect, a mechanism not previously proposed. As proof-of-principle, an in vitro closed system was developed to continuously monitor extracellular pH (pH(e)) and O(2) tension (P(O(2))) of rainbow trout blood. In this closed system, adding CA to acidified, adrenergically stimulated RBCs short-circuited βNHE pH regulation, resulting in an increase in P(O(2)) by >30 mmHg, depending on the starting Hb-O(2) saturation and degree of initial acidification. Interestingly, in the absence of adrenergic stimulation, addition of CA still elevated P(O(2)), albeit to a lesser extent, a response that was absent during general NHE inhibition. If plasma-accessible CA-mediated short-circuiting is operational in vivo, the combined Bohr-Root effect system unique to teleost fishes could markedly enhance tissue O(2) delivery far in excess of that in vertebrates possessing a Bohr effect alone and may lead to insights about the early evolution of the Root effect.

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硬骨鱼组织中血浆可及的碳酸酐酶可能大大增强氧的输送:虹鳟的体外证据。
在虹鳟鱼全身性酸中毒期间,儿茶酚胺被释放到血液中,激活红细胞(RBC) Na(+)/H(+)交换(βNHE),从而保护红细胞细胞内pH(pH(i))和随后在鳃处的O(2)结合。由于根效应(血液携氧能力降低,pH值降低)的存在,后者可能会受到损害。然而,组织中血浆可及的碳酸酐酶(CA)(以及鳃处的缺失)可能导致红细胞βNHE pH调节的选择性短路。这将使红细胞酸化,并通过利用玻尔-根效应(一种以前未提出的机制)大大增强O(2)的输送。作为原理证明,我们开发了一种体外封闭系统来连续监测虹鳟鱼血液的细胞外pH(pH(e))和O(2)张力(P(O(2))。在这个封闭系统中,将CA加入酸化的、肾上腺素能刺激的红细胞中,使βNHE pH调节短路,导致P(O(2))增加>30 mmHg,这取决于开始的Hb-O(2)饱和度和初始酸化程度。有趣的是,在没有肾上腺素能刺激的情况下,添加CA仍然会使P(O(2))升高,尽管程度较轻,这种反应在一般的NHE抑制中是不存在的。如果血浆可达ca介导的短路在体内是可操作的,那么硬骨鱼特有的玻尔-根效应联合系统可以显著增强组织O(2)的传递,远远超过单独具有玻尔效应的脊椎动物,这可能会导致对根效应早期进化的见解。
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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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