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Measuring the simultaneous effects of hypoxia and deformation on ATP release from erythrocytes

机译:测量缺氧和变形对红细胞ATP释放的同时影响

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It is known that adenosine triphosphate (ATP) is released from red blood cells (RBCs) due to various forms of stimulation such as deformation, pharmacological stimuli, and hypoxia. To date, these various stimuli have been investigated individually. Here, we have combined a microflow system capable of initiating deformation-induced release of ATP from the RBCs at various levels of hypoxia as measured by percent oxygen saturation in the RBC sample. When values of ATP released from deformation and hypoxia are compared to values of ATP release due to hypoxia alone, the relationship between the two stimuli can be deduced. Measurement of RBC-derived ATP with the well-known chemiluminescence assay employing luciferin/luciferase indicates that RBCs deoxygenated for 4 min released 1.84 +/- 0.075 mu M ATP. The largest decrease in oxygen saturation was found to be between 0 s (66.3% O-2 saturation) and 15 s (22.3% O-2 saturation). RBCs deoxygenated to a 22.3% O-2 saturation released 0.374 +/- 0.011 mu M ATP when pumped through the microflow system. This value is an increase from 0.281 +/- 0.007 mu M ATP in the presence of flow alone. The ATP release after exposure to hypoxia at 22.3% O-2 saturation was 0.381 +/- 0.014 mu M ATP, a value statistically equivalent to that of hypoxia and flow combined. These data suggest that, at an oxygen saturation point of around 25.0% or above, deformation contributes to ATP release from the RBC; however, beyond this saturation point, the ATP release is largely due to hypoxia.
机译:已知由于各种形式的刺激,例如变形,药理刺激和缺氧,三磷酸腺苷(ATP)从红细胞(RBC)中释放出来。迄今为止,已经单独研究了这些各种刺激。在这里,我们结合了一种微流系统,该系统能够在低氧的各种水平下,从红细胞中引发变形诱导的ATP释放,如通过RBC样品中的氧饱和百分比来衡量。将变形和缺氧释放的ATP值与仅因缺氧引起的ATP释放值进行比较时,可以推断出两种刺激之间的关系。使用荧光素/荧光素酶的众所周知的化学发光测定法测量RBC衍生的ATP,表明脱氧4分钟的RBC释放了1.84 +/- 0.075μM ATP。发现氧饱和度的最大降低在0 s(O-2饱和度为66.3%)和15 s(O-2饱和度为22.3%)之间。当通过微流系统泵送时,脱氧至22.3%O-2饱和度的RBC释放0.374 +/- 0.011μM ATP。仅在存在流动的情况下,该值从0.281 +/- 0.007μM ATP增加。 O-2饱和度为22.3%的低氧暴露后,ATP的释放为0.381 +/- 0.014μMATP,该值在统计学上等同于低氧和流量的总和。这些数据表明,在氧饱和点约为25.0%或更高时,变形有助于RBC中的ATP释放。但是,超过此饱和点,ATP释放主要是由于缺氧。

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