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首页> 外文期刊>Platelets >Shear stress-induced pH increase in plasma is mediated by a decrease in P(CO(2)): the increase in pH enhances shear stress-induced P-selectin expression in platelets.
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Shear stress-induced pH increase in plasma is mediated by a decrease in P(CO(2)): the increase in pH enhances shear stress-induced P-selectin expression in platelets.

机译:P(CO(2))的减少介导了血浆中的剪应力诱导的pH值的增加:pH值的增加增强了血小板中剪应力诱导的P-选择素的表达。

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摘要

To investigate shear stress-induced platelet activation, the cone-plate viscometer or the Couette rotational viscometer has been widely used. In a previous report, it was shown that shearing platelet-rich plasma using a Couette rotational viscometer could lead to an increase in pH by CO(2) release. However, any clear mechanism has not been provided. In this study, we examined whether shearing cell free plasma only using a cone-plate viscometer can also induce pH increase and studied the underlying mechanism of shear-induced pH increase by directly measuring total CO(2) (T(CO(2))) and CO(2) tension (P(CO(2))). When human plasma was sheared using a cone-plate viscometer, the pH of the human plasma increased time- and shear rate-dependently. Although T(CO(2)) of human plasma was not affected, P(CO(2)) was decreased by shearing, indicating that the decreased P(CO(2)) is associated with a pH increase of plasma. In addition, the pH of bicarbonate-containing suspension buffer was also shown to be increased byshearing; suggesting that the platelet studies using suspension buffers containing bicarbonate could be affected similarly. The effects of pH changes on shear stress-induced platelet activation were also investigated in the same in vitro systems. While shear stress-induced platelet aggregation was not affected by the pH changes, P-selectin expression was significantly increased in accordance with the pH increase. In conclusion, shear stress using a cone-plate viscometer induces pH increase in plasma or bicarbonate-containing suspension buffer through a P(CO(2)) decrease and the pH changes alone can contribute to platelet activation by enhancing shear stress-induced P-selectin expression.
机译:为了研究剪切应力引起的血小板活化,锥板粘度计或Couette旋转粘度计已被广泛使用。在以前的报告中,表明使用Couette旋转粘度计剪切富含血小板的血浆可能会导致CO(2)释放而导致pH值增加。但是,尚未提供任何明确的机制。在这项研究中,我们研究了仅使用锥板粘度计是否剪切无细胞血浆也能引起pH升高,并通过直接测量总CO(2)(T(CO(2))来研究剪切诱导pH升高的潜在机理。 )和CO(2)张力(P(CO(2)))。当使用锥板粘度计剪切人血浆时,人血浆的pH依赖于时间和剪切速率而增加。尽管人血浆的T(CO(2))不受影响,但P(CO(2))的剪切力降低了,表明P(CO(2))的降低与血浆pH的升高有关。此外,剪切也显示了含碳酸氢盐的悬浮液的pH值增加。提示使用含碳酸氢盐的悬浮液进行的血小板研究可能会受到类似的影响。在相同的体外系统中,还研究了pH变化对切应力诱导的血小板活化的影响。尽管剪切应力诱导的血小板凝集不受pH变化的影响,但P-选择素的表达却随pH的增加而显着增加。总之,使用锥板粘度计的剪切应力会通过P(CO(2))的降低引起血浆或含碳酸氢盐的悬浮液的pH升高,而单独的pH值变化可通过增强剪切应力诱导的P-来促进血小板活化选择素表达。

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