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Suppressing postcollection lysophosphatidic acid metabolism improves the precision of plasma LPA quantification

机译:抑制后髓鞘磷脂酸代谢提高了血浆LPA量化的精度

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摘要

Lysophosphatidic acid (LPA) is a potent signaling lipid, and state-dependent alterations in plasma LPA make it a promising diagnostic marker for various diseases. However, plasma LPA concentrations vary widely among reports, even under normal conditions. These variations can be attributed, at least in part, to the artificial metabolism of LPA after blood collection. Here, we aimed to develop an optimized plasma preparation method that reflects the concentration of LPA in the circulating blood. The main features of the devised method were suppression of both LPA production and degradation after blood collection by keeping whole blood samples at low temperature followed by the addition of an autotaxin inhibitor to plasma samples. Using this devised method, the LPA level did not change for 30 min after blood collection. Also, human and mouse LPA levels were found to be much lower than those previously reported, ranging from 40 to 50 nM with minimal variation across the individual. Finally, the increased accuracy made it possible to detect circadian rhythms in the levels of certain LPA species in mouse plasma. These results demonstrate the usefulness of the devised plasma preparation method to determine accurate plasma LPA concentrations.
机译:溶血磷脂酸(LPA)是一种有效的信号脂质,血浆LPA中的状态依赖性改变使其成为各种疾病的有望的诊断标志物。然而,即使在正常条件下,血浆LPA浓度也在报告中随着报道而变化。这些变化至少部分地归因于血液收集后LPA的人工代谢。在这里,我们旨在开发优化的等离子体制备方法,反映循环血液中LPA的浓度。设计方法的主要特征是抑制血液收集后的LPA生产和降解,通过将全血样品保持在低温下,然后加入自耦酶抑制剂对等离子体样品。使用这种设计的方法,LPA级别在血液收集后没有改变30分钟。此外,发现人和小鼠LPA水平远低于先前报道的那些,范围为40至50nm,在整个中的最小变化。最后,提高的准确性使得可以检测小鼠血浆中某些LPA种类水平的昼夜节律。这些结果表明了设计的血浆制备方法确定精确的血浆LPA浓度的有用性。

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