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红细胞储存及氧合血红蛋白亲和力变化对心脏功能的影响。

Effect of erythrocyte storage and oxyhemoglobin affinity changes on cardiac function.

作者信息

Apstein C S, Dennis R C, Briggs L, Vogel W M, Frazer J, Valeri C R

出版信息

Am J Physiol. 1985 Apr;248(4 Pt 2):H508-15. doi: 10.1152/ajpheart.1985.248.4.H508.

Abstract

Storage of blood can depress erythrocyte 2,3-diphosphoglycerate (DPG) levels and thereby increase oxyhemoglobin affinity and potentially decrease capillary-to-tissue oxygen transport. We measured myocardial function and metabolism in isolated rabbit hearts with fixed coronary flow under basal conditions and during isoproterenol stress at 37 and 30 degrees C, comparing high and low oxyhemoglobin affinity (OHA) erythrocytes. The high OHA state resulted from standard storage conditions, which caused depressed values of DPG and P50 (the oxygen tension at which hemoglobin is 50% saturated). The low OHA erythrocytes were initially stored and then underwent biochemical treatment to restore the DPG and P50 values to normal. The low OHA cells released more oxygen, and myocardial oxygen consumption and contractile function were increased relative to the high OHA cells during both the basal and stress states at both 37 and 30 degrees C. These observations may be relevant for patients with limited coronary flow when such patients receive large transfusions of stored blood.

摘要

血液储存会降低红细胞2,3 - 二磷酸甘油酸(DPG)水平,从而增加氧合血红蛋白亲和力,并可能减少毛细血管到组织的氧转运。我们在基础条件下以及在37摄氏度和30摄氏度的异丙肾上腺素应激期间,对冠状动脉血流固定的离体兔心的心肌功能和代谢进行了测量,比较了高氧合血红蛋白亲和力(OHA)和低氧合血红蛋白亲和力的红细胞。高OHA状态是由标准储存条件导致的,该条件使DPG和P50(血红蛋白饱和度为50%时的氧张力)值降低。低OHA红细胞先进行储存,然后经过生化处理将DPG和P50值恢复正常。在37摄氏度和30摄氏度的基础状态和应激状态下,低OHA细胞释放更多氧气,相对于高OHA细胞,心肌氧消耗和收缩功能均增加。这些观察结果可能与冠状动脉血流受限的患者在接受大量储存血液输血时有关。

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