Yamaguchi K, Mori M, Kawai A, Yokoyama T
Department of Medicine, School of Medicine, Keio University, Tokyo, Japan.
Adv Exp Med Biol. 1988;222:299-307. doi: 10.1007/978-1-4615-9510-6_35.
In an attempt to estimate the influences of CO on the CO2 Bohr effect and the 2,3-diphosphoglycerate (DPG) effect linked to the reversible binding of O2 to the hemoglobin molecule (Hb), O2 dissociation curves of human blood in the presence of CO were investigated at 37 degrees C over a DPG concentration ranging from 2.2 to 4.3 mmol/(1RBC) and a pH range of 7.2 to 7.6. The sample with a low DPG concentration was made by incubating whole blood for 6 hrs, whereas the saturation of Hb with CO, SCO in the sample was adjusted by anaerobically mixing completely carboxygenated blood with that free of O2 and CO so as to give the final SCO at either 0, 10, 15, 20, 40 or 50%. The blood samples thus prepared were diluted at 1:100 in isotonic buffer solution and were equilibrated with gas mixtures containing O2 ranging from 1 to 9% and CO2 from 4 to 9%. The SO2 and SCO values of diluted red cell suspensions were examined by means of a dual-wavelength spectrophotometric method based on the isosbestic points for reduced Hb, HbO2 and HbCO. The extinction difference at 562.7 and 578.0 nm was monitored as a measure of SO2, while that at 570.1 and 584.6 nm was recorded for determining SCO. Fitting the experimental results by the Hill equation, the coefficients describing allosteric interaction induced by CO2 hydration and by DPG in the presence of both O2 and CO were calculated for the total saturation, ST defined as the sum of SO2 and SCO, ranging from 20 to 90%.(ABSTRACT TRUNCATED AT 250 WORDS)
为了评估一氧化碳(CO)对与氧气(O₂)可逆结合到血红蛋白分子(Hb)相关的二氧化碳玻尔效应和2,3 - 二磷酸甘油酸(DPG)效应的影响,在37℃下,研究了在DPG浓度范围为2.2至4.3 mmol/(1RBC)以及pH范围为7.2至7.6时,存在CO情况下人体血液的O₂解离曲线。低DPG浓度的样本通过将全血孵育6小时制备,而样本中Hb与CO的饱和度SCO通过将完全氧合的血液与不含O₂和CO的血液厌氧混合来调节,以使最终SCO为0、10、15、20、40或50%。如此制备的血液样本在等渗缓冲溶液中按1:100稀释,并用含有1%至9% O₂和4%至9% CO₂的气体混合物平衡。稀释的红细胞悬液的SO₂和SCO值通过基于还原Hb、HbO₂和HbCO等吸收点的双波长分光光度法进行检测。监测562.7和578.0 nm处的吸光度差值作为SO₂的度量,而记录570.1和584.6 nm处的吸光度差值用于确定SCO。通过希尔方程拟合实验结果,计算了在O₂和CO同时存在时,由CO₂水合作用和DPG诱导的变构相互作用的系数,用于总饱和度ST(定义为SO₂和SCO之和)范围为20%至90%的情况。(摘要截断于250字)