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目的和方法 :以SD大鼠递增负荷力竭性跑台运动为运动性疲劳模型 ,分别测定运动后即刻骨路肌线粒体 :①呼吸链复合体Ⅱ Ⅲ电子传递与质子泵出比值 (H /2e) ;②以琥珀酸 (S)为底物的呼吸控制 :态 3呼吸速率(R3 )、态 4呼及速率 (R4 )、呼吸控制比 (RCR)和磷 /氧比 (P/O) ;②H ATPase合成活力 ,探讨疲劳性运动中线粒体氧化磷酸化功能改变的机理。结果 :力竭性运动后以S为底物的线粒体R4升高 2 1.10 % (P <0 .0 5 ) ;呼吸链复合体Ⅱ Ⅲ的总、净H 2e分别降低 8.5 3和 19.5 1% (均P <0 .0 5 )。底物的RCR和P/O呈显著降低 (均P <0 .0 5 ) ,而底物的R3则有所增加 (P >0 .0 5 ) ,H ATPase合成活力降低 16.68% (P <0 .0 5 )。结论 :线粒体质子漏增加 ,呼吸链电子传递与质子泵出偶联程度下降 ,氧化磷酸化脱偶联导致无效氧耗增多 ,可能是运动性疲劳状态下线粒体氧利用率下降的重要机制。  相似文献   
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研究了Ca^2 及脂质体膜脂成分对艾氏腹水癌细胞质膜质子跨膜转运驱动的脂质体融合中的作用。结果 表明Ca^2 促进质子跨膜转运驱动的质子跨膜转运驱动艾氏腹水癌细胞与脂质体间的融合,膜融合程度与膜表面电荷密度的相关曲线显示,在下述条件膜融合与膜表面电荷密度呈正相关:(1)介质Ca^2 浓度小于6mmol/L,脂质体磷脂组成为PE:PC:CL=6:2:2;(2)介质Ca^2 浓度为6mmol/L,脂质体鳞脂组成为PE:PC:CL=6:2:2;(3)无Ca^2 介质,脂质体磷脂组成为PE:CL=8:2;(4)介质Ca^2 浓度10mmol/L,脂质体磷脂组成为PE:CL=8:2。脂质体PE/PC含量对膜融合的影响表明,当PE含量减少PC含量增加时,膜融合程度不断下降,提示影响膜融合的另一因素可能是生物膜结构形成“柄”融合中介体的能力。  相似文献   
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Blood ketone body level and ketone body ratio (acetoacetate/β hydroxybutyrate) are commonly used as clinical diagnostic indices.But there is no systematic study on the variability of these indices in the blood circulation.We investigated the concentration of ketone bodies within different segments of the circulation in fed ad libitum rats, starved rats and alloxan induced diabetic rats.Blood samples were drawn from femoral artery, suprarenal inferior vena cava and hepatic vein of each rat, respectively.The concentrations of acetoacetate and β hydroxybutyrate were measured by enzymatic method.To avoid mixing of the blood streams, appropriate strangulation of the vessels was taken when sampling.The total ketone body level was always the highest in the hepatic vein, secondary in the femoral artery and the lowest in the suprarenal vena cava in rats in different states.But surprisingly, the concentration of acetoacetate was the lowest in the hepatic vein and the highest in the femoral artery.The ketone body levels elevated in both starvation and diabetes, and the ketone body ratios were changed in the circulation.While blood flows through extra hepatic tissues, the total concentration of ketone body is undergoing degression, but the concentration of acetoacetate could be elevated due to the conversion of ketone body in extra hepatic tissues.Therefore, ketone body ratio is changeable in different segments of the blood circulation, including that between hepatic vein and artery.The correlation of ketone body ratio between arterial and hepatic venous blood could be effected by different pathophysiological states, such as starvation and diabetes.The “Redox theory” deserves a further discussion.  相似文献   
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