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长期寒冷和浸没对锦龟血液氧运输的影响。

Effect of chronic cold and submergence on blood oxygen transport in the turtle, Chrysemys picta.

作者信息

Maginniss L A, Tapper S S, Miller L S

出版信息

Respir Physiol. 1983 Jul;53(1):15-29. doi: 10.1016/0034-5687(83)90013-0.

Abstract

Whole blood oxygen equilibrium curves (O2EC's) and related hematologic properties are reported for the turtle Chrysemys picta exposed to two experimental conditions. Summer turtles were maintained at 24 degrees C with free access to air; winter turtles were submerged for 4-12 wk in N2-bubbled water at 3 degrees C. Half-saturation Po2's at 3 degrees C for blood from summer and winter animals were 4.1 and 4.5 Torr, respectively. At 24 degrees C, summer and winter P50's were 20.2 and 22.7 Torr, respectively. The winter turtle P50 values were lower than predicted since prolonged submergence effected a severe metabolic acidosis; blood pH's for winter turtles were 0.65 pH unit lower than for summer animals at both temperatures. Cold submergence also had a profound influence on O2EC shape. Winter turtle curves exhibited high O2 affinity below P50 while they were distinctly right-shifted above 50% S. Winter animals also exhibited reduced CO2-Bohr coefficients (delta log Po2/delta pH) at 3 and 24 degrees C. Prolonged submergence did not affect the animal's isohemoglobin profile (demonstrated by isoelectric focusing) or [metHb]. The [ATP] and [DPG] in winter turtle red cells, however, decreased significantly; the ratio of organic phosphate ([ATP] + [DPG]) to Hb tetramer fell from 1.4 in summer animals to 0.5 in winter turtles. These findings suggest that the effect of chronic cold and prolonged submergence on turtle O2EC position and shape may result from reduction in RBC organic phosphates. Furthermore, these observed changes in blood oxygen transport may facilitate O2 loading during winter submergence via extrapulmonary gas exchange.

摘要

报告了暴露于两种实验条件下的锦龟的全血氧平衡曲线(O2EC)及相关血液学特性。夏季的龟饲养在24摄氏度,可自由接触空气;冬季的龟在3摄氏度的氮气鼓泡水中浸泡4至12周。夏季和冬季动物血液在3摄氏度时的半饱和氧分压分别为4.1和4.5托。在24摄氏度时,夏季和冬季的P50分别为20.2和22.7托。冬季龟的P50值低于预期,因为长时间浸泡导致严重的代谢性酸中毒;在两个温度下,冬季龟的血液pH值均比夏季动物低0.65个pH单位。低温浸泡对O2EC形状也有深远影响。冬季龟的曲线在P50以下表现出高氧亲和力,而在饱和度高于50%时明显右移。冬季动物在3摄氏度和24摄氏度时的二氧化碳-波尔系数(δlog Po2/δpH)也降低。长时间浸泡不影响动物的异血红蛋白谱(通过等电聚焦证明)或[高铁血红蛋白]。然而,冬季龟红细胞中的[ATP]和[DPG]显著降低;有机磷酸盐([ATP]+[DPG])与血红蛋白四聚体的比率从夏季动物的1.4降至冬季龟的0.5。这些发现表明,长期寒冷和长时间浸泡对龟O2EC位置和形状的影响可能是由于红细胞有机磷酸盐减少所致。此外,观察到的血液氧运输变化可能通过肺外气体交换促进冬季浸泡期间的氧加载。

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