Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada
Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada.
J Appl Physiol (1985). 2017 Oct 1;123(4):935-941. doi: 10.1152/japplphysiol.00114.2017. Epub 2017 Jul 13.
Teleosts comprise 95% of fish species, almost one-half of all vertebrate species, and represent one of the most successful adaptive radiation events among vertebrates. This is thought to be in part because of their unique oxygen (O) transport system. In salmonids, recent in vitro and in vivo studies indicate that hemoglobin-oxygen (Hb-O) unloading to tissues may be doubled or even tripled under some conditions without changes in perfusion. This is accomplished through the short circuiting of red blood cell (RBC) pH regulation, resulting in a large arterial-venous pH difference within the RBC and induced reduction in Hb-O affinity. This system has three prerequisites: ) highly pH-sensitive hemoglobin, ) rapid RBC pH regulation, and ) a heterogeneous distribution of plasma-accessible CA in the cardiovascular system (presence in the tissues and absence at the gills). Although data are limited, these attributes may be general characteristics of teleosts. Although this system is not likely operational to the same degree in other vertebrates, some of these prerequisites do exist, and the generation and elimination of pH disequilibrium states at the RBC will likely enhance Hb-O unloading to some degree. In human disease states, there are conditions that may partly satisfy those for enhanced Hb-O unloading, tentatively an avenue for future work that may improve treatment efficacy.
硬骨鱼类包含了 95%的鱼类物种,几乎占所有脊椎动物物种的一半,是脊椎动物中最成功的适应辐射事件之一。这被认为部分是由于它们独特的氧气(O)运输系统。在鲑鱼科鱼类中,最近的体外和体内研究表明,在不改变灌注的情况下,血红蛋白-氧(Hb-O)向组织的卸载在某些条件下可能增加一倍甚至三倍。这是通过缩短红细胞(RBC)pH 调节的短路来实现的,导致 RBC 内动脉-静脉 pH 差异很大,并诱导 Hb-O 亲和力降低。该系统有三个前提条件:) 高度 pH 敏感的血红蛋白,) 快速 RBC pH 调节,和) 心血管系统中血浆可及 CA 的异质分布(存在于组织中,不存在于鳃中)。尽管数据有限,但这些属性可能是硬骨鱼类的一般特征。尽管该系统在其他脊椎动物中不太可能以相同的程度运作,但其中一些前提条件确实存在,并且 RBC 中 pH 失衡状态的产生和消除可能在某种程度上增强 Hb-O 的卸载。在人类疾病状态下,存在可能部分满足增强 Hb-O 卸载条件的情况,这可能是未来工作的一个途径,以提高治疗效果。